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  • regression/Fluid/funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_heatStorage.layer[5].T/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_heatStorage.layer[5].T/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_heatStorage.layer[5].T/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_hea.Q_flow/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_hea.Q_flow/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_hea.Q_flow/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_hea.Q_flow/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_hea.Q_flow/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_THeaOut.T/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_THeaOut.T/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_THeaOut.T/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_THeaOut.T/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_THeaOut.T/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.m_flow/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.m_flow/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.m_flow/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.m_flow/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.m_flow/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_senTemSup.T/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_senTemSup.T/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_senTemSup.T/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_senTemSup.T/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_senTemSup.T/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmSet/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmSet/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmSet/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmSet/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmSet/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[1].T/errors.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[1].T/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[1].T/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[1].T/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[1].T/test.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpMea/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpMea/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpMea/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpMea/reference.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpMea/test.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger.mat_senEff.y/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger.mat_senEff.y/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger.mat_senEff.y/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger.mat_senEff.y/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger.mat_senEff.y/test.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[3].T/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[3].T/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[3].T/lowerBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[3].T/reference.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[3].T/test.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_V_flow_exp.showNumber/errors.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_V_flow_exp.showNumber/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_V_flow_exp.showNumber/lowerBound.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_V_flow_exp.showNumber/reference.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_V_flow_exp.showNumber/test.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/errors.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/upperBound.csv

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  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/lowerBound.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/reference.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/test.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_TSet.y/errors.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_TSet.y/upperBound.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_TSet.y/lowerBound.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_TSet.y/reference.csv

  • +
  • regression/Fluid/funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_TSet.y/test.csv

  • diff --git a/docs/1520_newHPModels/naming_violations.txt b/docs/1520_newHPModels/naming_violations.txt index afd277d8a9..a824db2802 100644 --- a/docs/1520_newHPModels/naming_violations.txt +++ b/docs/1520_newHPModels/naming_violations.txt @@ -1,6 +1,22 @@ +AixLib/Controls/HeatPump/Examples/PartialHeatPumpController.mo +1: Name 'T_meas' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_meas. Affected line: Modelica.Blocks.Sources.Sine T_meas( f=1/3600, amplitude=6, offset=310) "Generates the measured temperature" annotation (Placement(transformation(extent={{-100,20},{-80,40}}))); + +2: Name 'T_set' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_set. Affected line: Modelica.Blocks.Sources.Constant T_set(k=310) "Provides the temperature set point" annotation (Placement(transformation(extent={{-100,-40},{-80,-20}}))); + +3: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: replaceable BaseClasses.PartialTSetToNSet hPController constrainedby BaseClasses.PartialTSetToNSet( final use_secHeaGen=false, use_heaLim=false, T_heaLim=293.15, movAveTime=300) annotation (Placement(transformation(extent={{-20,-20}, {20,20}})), __Dymola_choicesAllMatching=true); + +4: Name 'T_oda' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_oda. Affected line: Modelica.Blocks.Sources.Constant T_oda(k=273.15) "Provides the temperature set point" annotation (Placement(transformation(extent={{-100,-80},{-80,-60}}))); + + +AixLib/Controls/HeatPump/TwoPointControlledHP.mo +1: Name 'bandwidth' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: bandwidth. Affected line: parameter Real bandwidth "Bandwith of hysteresis of controller"; + +2: Name 'onOffController' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Controller. Affected line: Modelica.Blocks.Logical.OnOffController onOffController(final bandwidth=bandwidth, final pre_y_start=false) "Hysteresis controller for set temperature" annotation (Placement(transformation(extent={{-60,20},{-40,40}}))); + + AixLib/Obsolete/YearIndependent/FastHVAC/Components/Chiller/Chiller.mo 1: Name 'Medium_eva' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium_eva. Affected line: parameter AixLib.Obsolete.YearIndependent.FastHVAC.Media.BaseClasses.MediumSimple Medium_eva=AixLib.Obsolete.YearIndependent.FastHVAC.Media.WaterSimple() "Medium at source side" annotation (Dialog(tab="Evaporator"), choicesAllMatching=true); @@ -87,258 +103,264 @@ AixLib/Obsolete/YearIndependent/FastHVAC/Components/Chiller/Chiller.mo 42: Missing documentation, Name 'VCon_final' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Con_final. Affected line: parameter Modelica.Units.SI.Volume VCon_final=if use_autoCalc then autoCalc_VCon else VCon; -AixLib/Controls/HeatPump/Examples/PartialHeatPumpController.mo -1: Name 'T_meas' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_meas. Affected line: Modelica.Blocks.Sources.Sine T_meas( f=1/3600, amplitude=6, offset=310) "Generates the measured temperature" annotation (Placement(transformation(extent={{-100,20},{-80,40}}))); +AixLib/Obsolete/Year2024/Fluid/HeatPumps/HeatPump.mo +1: Name 'PerDataMainHP' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Data, Main. Affected line: replaceable model PerDataMainHP = AixLib.Obsolete.Year2024.DataBase.HeatPump.PerformanceData.BaseClasses.PartialPerformanceData "Performance data of a heat pump in main operation mode" annotation (choicesAllMatching=true); -2: Name 'T_set' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_set. Affected line: Modelica.Blocks.Sources.Constant T_set(k=310) "Provides the temperature set point" annotation (Placement(transformation(extent={{-100,-40},{-80,-20}}))); +2: Name 'PerDataRevHP' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Data. Affected line: replaceable model PerDataRevHP = AixLib.Obsolete.Year2024.DataBase.Chiller.PerformanceData.BaseClasses.PartialPerformanceData "Performance data of a heat pump in reversible operation mode" annotation (Dialog(enable=use_rev),choicesAllMatching=true); -3: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: replaceable BaseClasses.PartialTSetToNSet hPController constrainedby BaseClasses.PartialTSetToNSet( final use_secHeaGen=false, use_heaLim=false, T_heaLim=293.15, movAveTime=300) annotation (Placement(transformation(extent={{-20,-20}, {20,20}})), __Dymola_choicesAllMatching=true); -4: Name 'T_oda' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_oda. Affected line: Modelica.Blocks.Sources.Constant T_oda(k=273.15) "Provides the temperature set point" annotation (Placement(transformation(extent={{-100,-80},{-80,-60}}))); +AixLib/Controls/HeatPump/BaseClasses/PartialTSetToNSet.mo +1: Name 'T_heaLim' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_hea. Affected line: parameter Modelica.Units.SI.Temperature T_heaLim=293.15 "Heating limit temperature. If the filtered outdoor air temperature surpasses this threshold, the device will be shut down" annotation(Dialog(group= "Heating limit temperature", enable=use_heaLim)); +2: Name 'swiNullHP' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Null. Affected line: Modelica.Blocks.Logical.Switch swiNullHP "If HP is off, zero is passed" annotation (Placement(transformation(extent={{60,-20},{80,0}}))); -AixLib/Fluid/HeatPumps/ModularReversible/Examples/TableData3D_OneRoomRadiator.mo -1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Modular heaPum( redeclare package MediumCon = MediumWat, redeclare package MediumEva = MediumWat, use_rev=false, allowDifferentDeviceIdentifiers=true, dTCon_nominal=8, use_conCap=false, dTEva_nominal=5, use_evaCap=false, QHea_flow_nominal=Q_flow_nominal, use_intSafCtr=true, redeclare model RefrigerantCycleHeatPumpHeating = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.TableData3D ( extrapMethod=SDF.Types.ExtrapolationMethod.Hold, redeclare AixLib.Fluid.HeatPumps.ModularReversible.Data.TableDataSDF.TableData3D.VZH088AG datTab), TConHea_nominal=TRadSup_nominal, dpCon_nominal(displayUnit="kPa") = 40000, TEvaHea_nominal=sou.T, dpEva_nominal(displayUnit="kPa") = 40000, energyDynamics=Modelica.Fluid.Types.Dynamics.FixedInitial, redeclare AixLib.Fluid.HeatPumps.ModularReversible.Controls.Safety.Data.Wuellhorst2021 safCtrPar, TConCoo_nominal=273.15, TEvaCoo_nominal=273.15) "Large scale water to water heat pump" annotation (Placement(transformation(extent={{20,-160},{0,-140}}))); +3: Missing documentation. Affected line: AixLib.Fluid.HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus sigBusHP annotation (Placement(transformation(extent={{-124,-46},{-90,-16}}))); +4: Name 'swiNullsecHeaGen' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Nullsec. Affected line: AixLib.Utilities.Logical.SmoothSwitch swiNullsecHeaGen if use_secHeaGen "If second heater is off, zero is passed" annotation (Placement( transformation( extent={{10,-10},{-10,10}}, rotation=90, origin={0,-70}))); -AixLib/Controls/HeatPump/TwoPointControlledHP.mo -1: Name 'bandwidth' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: bandwidth. Affected line: parameter Real bandwidth "Bandwith of hysteresis of controller"; +5: Missing documentation, Name 'lessThreshold' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: less, Threshold. Affected line: Modelica.Blocks.Logical.LessThreshold lessThreshold(final threshold= T_heaLim) if use_heaLim annotation (Placement(transformation(extent={{-60,-40},{-40,-20}}))); -2: Name 'onOffController' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Controller. Affected line: Modelica.Blocks.Logical.OnOffController onOffController(final bandwidth=bandwidth, final pre_y_start=false) "Hysteresis controller for set temperature" annotation (Placement(transformation(extent={{-60,20},{-40,40}}))); +6: Missing documentation, Name 'booleanConstant' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Constant. Affected line: Modelica.Blocks.Sources.BooleanConstant booleanConstant(final k=true) if not use_heaLim annotation (Placement(transformation(extent={{-60,-80},{-40,-60}}))); -AixLib/Fluid/HeatPumps/ModularReversible/Data/TableDataSDF/Generic.mo -1: Name 'filename' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: filename. Affected line: parameter String filename "File name of sdf table data" annotation (Dialog(loadSelector(filter="SDF Files (*.sdf);;All Files (*.*)", caption="Select SDF file"))); +AixLib/Obsolete/Year2019/Fluid/HeatPumps/Examples/HeatPumpDetailed.mo +1: Missing documentation, Name 'Medium_sin' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium_sin. Affected line: replaceable package Medium_sin = AixLib.Media.Water constrainedby Modelica.Media.Interfaces.PartialMedium annotation (choicesAllMatching=true); -2: Name 'datasetPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dataset. Affected line: parameter String datasetPEle "Dataset name for electrical power" annotation (Dialog(group="Electrical Power")); +2: Missing documentation, Name 'Medium_sou' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium_sou. Affected line: replaceable package Medium_sou = AixLib.Media.Air constrainedby Modelica.Media.Interfaces.PartialMedium annotation (choicesAllMatching=true); -3: Name 'dataUnitPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: data, Unit. Affected line: parameter String dataUnitPEle "Data unit for electrical power" annotation (Dialog(group="Electrical Power")); +3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: .AixLib.Obsolete.Year2019.Fluid.HeatPumps.HeatPumpDetailed heatPump( P_eleOutput=true, capCalcType=2, CorrFlowCo=false, CorrFlowEv=false, dataTable=DataBase.HeatPump.EN255.Vitocal350BWH113(), PT1_cycle=true, timeConstantCycle=1, mFlow_conNominal=1, mFlow_evaNominal=1, T_evaIn(transferHeat=true, TAmb=291.15), T_evaOut(transferHeat=true, TAmb=291.15), T_conIn(transferHeat=true, TAmb=273.15), T_conOut(transferHeat=true, TAmb=273.15), redeclare package Medium_con = Medium_sin, redeclare package Medium_eva = Medium_sou) "Detailed heat pump mainly based on manufacturing data" annotation (Placement(transformation(extent={{-16,14},{14,-6}}))); -4: Name 'scaleUnitsPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: scale, Units. Affected line: parameter String scaleUnitsPEle[nDim] "Scale units for electrical power" annotation (Dialog(group="Electrical Power")); +4: Name 'sourceSideMassFlowSource' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: source, Side, Mass, Source. Affected line: AixLib.Fluid.Sources.MassFlowSource_T sourceSideMassFlowSource( use_T_in=true, m_flow=1, redeclare package Medium = Medium_sou, nPorts=1, T=275.15) "Ideal mass flow source at the inlet of the source side" annotation (Placement(transformation(extent={{-54,-80},{-34,-60}}))); +5: Name 'sourceSideFixedBoundary' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: source, Side, Fixed, Boundary. Affected line: AixLib.Fluid.Sources.Boundary_pT sourceSideFixedBoundary(redeclare package Medium = Medium_sou, nPorts=1) "Fixed boundary at the outlet of the source side" annotation (Placement( transformation( extent={{-10,10},{10,-10}}, rotation=0, origin={-80,36}))); -AixLib/Fluid/HeatPumps/ModularReversible/Examples/VCLibAirToWater_OneRoomRadiator.mo -1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Modular heaPum( redeclare package MediumCon = MediumWat, redeclare package MediumEva = MediumAir, use_rev=false, allowDifferentDeviceIdentifiers=true, dTCon_nominal=8, use_conCap=false, dTEva_nominal=3, use_evaCap=false, QHea_flow_nominal=Q_flow_nominal, use_intSafCtr=true, redeclare model RefrigerantCycleHeatPumpHeating = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.TableData3D ( redeclare AixLib.Fluid.HeatPumps.ModularReversible.Data.TableDataSDF.TableData3D.VCLibPy.VCLibVaporInjectionPhaseSeparatorR410A datTab), TConHea_nominal=TRadSup_nominal, dpCon_nominal(displayUnit="Pa") = 2000, TEvaHea_nominal=sou.T, dpEva_nominal(displayUnit="Pa") = 200, energyDynamics=Modelica.Fluid.Types.Dynamics.FixedInitial, redeclare AixLib.Fluid.HeatPumps.ModularReversible.Controls.Safety.Data.Wuellhorst2021 safCtrPar, TConCoo_nominal=273.15, TEvaCoo_nominal=273.15) "Large scale water to water heat pump" annotation (Placement(transformation(extent={{20,-160},{0,-140}}))); +6: Name 'TsuSourceRamp' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Source, Ramp. Affected line: Modelica.Blocks.Sources.Ramp TsuSourceRamp( duration=1000, startTime=1000, height=25, offset=278) "Ramp signal for the temperature input of the source side's ideal mass flow source" annotation (Placement(transformation(extent={{-94,-84},{-74,-64}}))); +7: Missing documentation. Affected line: Modelica.Blocks.Logical.Hysteresis hys( pre_y_start=true, uLow=273.15 + 30, uHigh=273.15 + 40) annotation (Placement(transformation(extent={{64,50},{44,70}}))); -AixLib/Fluid/HeatPumps/ModularReversible/Data/TableData3D/Generic.mo -1: Name 'filename' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: filename. Affected line: parameter String filename "File name of sdf table data" annotation (Dialog(loadSelector(filter="SDF Files (*.sdf);;All Files (*.*)", caption="Select SDF file"))); +8: Missing documentation, Name 'sine' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sine. Affected line: Modelica.Blocks.Sources.Sine sine( f=1/3600, amplitude=3000, offset=3000) annotation (Placement(transformation(extent={{76,26},{84,34}}))); -2: Name 'datasetPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dataset. Affected line: parameter String datasetPEle "Dataset name for electrical power" annotation (Dialog(group="Electrical Power")); +9: Missing documentation. Affected line: Modelica.Blocks.Sources.Constant nIn(k=100) annotation (Placement( transformation( extent={{4,-4},{-4,4}}, rotation=90, origin={50,34}))); -3: Name 'dataUnitPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: data, Unit. Affected line: parameter String dataUnitPEle "Data unit for electrical power" annotation (Dialog(group="Electrical Power")); +10: Name 'heatFlowRateCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Rate. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow heatFlowRateCon "Heat flow rate of the condenser" annotation (Placement(transformation( extent={{-6,6},{6,-6}}, rotation=270, origin={94,6}))); -4: Name 'scaleUnitsPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: scale, Units. Affected line: parameter String scaleUnitsPEle[nDim] "Scale units for electrical power" annotation (Dialog(group="Electrical Power")); +11: Missing documentation. Affected line: Modelica.Blocks.Math.Gain gain(k=-1) annotation (Placement(transformation( extent={{-4,-4},{4,4}}, rotation=270, origin={96,22}))); +12: Name 'sinkSideFixedBoundary' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sink, Side, Fixed, Boundary. Affected line: AixLib.Fluid.Sources.Boundary_pT sinkSideFixedBoundary(redeclare package Medium = Medium_sin, nPorts=1) "Fixed boundary at the outlet of the sink side" annotation (Placement( transformation( extent={{10,-10},{-10,10}}, rotation=0, origin={88,-64}))); -AixLib/Fluid/HeatPumps/ModularReversible/Data/TableDataSDF/GenericHeatPump.mo -1: Name 'datasetQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dataset. Affected line: parameter String datasetQCon_flow "Dataset name for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); -2: Name 'dataUnitQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: data, Unit. Affected line: parameter String dataUnitQCon_flow "Data unit for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); +AixLib/Obsolete/YearIndependent/FastHVAC/Examples/Chiller/Chiller.mo +1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sensors.TemperatureSensor temperatureSensor annotation (Placement(transformation(extent={{52,-38},{66,-52}})));FastHVAC.Components.Pumps.FluidSource fluidSource(medium= FastHVAC.Media.WaterSimple()) "Fluidsource for sink" annotation (Placement(transformation(extent={{-50,-44},{-30,-24}}))); -3: Name 'scaleUnitsQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: scale, Units. Affected line: parameter String scaleUnitsQCon_flow[nDim] "Scale units for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); +2: Documentation too short, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.Chiller.Chiller chiller( use_revChi=true, redeclare model PerDataMainChi = AixLib.Obsolete.Year2024.DataBase.Chiller.PerformanceData.LookUpTable2D ( dataTable=AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511.Vitocal200AWO201()), redeclare model PerDataRevChi = AixLib.Obsolete.Year2024.DataBase.HeatPump.PerformanceData.LookUpTable2D ( smoothness=Modelica.Blocks.Types.Smoothness.LinearSegments, dataTable= AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511.Vitocal200AWO201()), Q_useNominal=0, use_autoCalc=false, refIneFre_constant=1, Medium_con=Media.WaterSimple(), Medium_eva=Media.WaterSimple(), mFlow_conNominal=0.5, VCon=0.04, deltaM_con=0.1, use_ConCap=false, CCon=100, GCon=5, mFlow_evaNominal=0.5, VEva=0.4, deltaM_eva=0.1, use_EvaCap=false, CEva=100, GEva=5, allowFlowReversalEva=true, TCon_start(displayUnit="K"), TEva_start(displayUnit="K"), TAmbCon_nominal=273.15, TAmbEva_nominal=288.15) annotation (Placement(transformation( extent={{-13,-16},{13,16}}, rotation=90, origin={3,-2}))); +3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sinks.Vessel vessel_ev "vessel for open evaporator circuit" annotation (Placement( transformation( extent={{-11,-9},{11,9}}, rotation=180, origin={-35,57}))); -AixLib/Fluid/HeatPumps/ModularReversible/Data/TableData3D/GenericHeatPump.mo -1: Name 'datasetQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dataset. Affected line: parameter String datasetQCon_flow "Dataset name for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); +4: Name 'dotm_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_sink. Affected line: Modelica.Blocks.Sources.Constant dotm_sink(k=1) "Sink mass flow signal" annotation (Placement(transformation(extent={{-98,-82},{-78,-62}}))); -2: Name 'dataUnitQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: data, Unit. Affected line: parameter String dataUnitQCon_flow "Data unit for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); +5: Name 'dotm_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_source. Affected line: Modelica.Blocks.Sources.Constant dotm_source(k=0.106) "source mass flow signal" annotation (Placement(transformation( extent={{-5,5},{5,-5}}, rotation=180, origin={73,77}))); -3: Name 'scaleUnitsQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: scale, Units. Affected line: parameter String scaleUnitsQCon_flow[nDim] "Scale units for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); +6: Name 'T_amb_internal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_amb. Affected line: Modelica.Blocks.Sources.Constant T_amb_internal(k=291.15) "Constant internal ambient temeprature" annotation (Placement(transformation(extent={{-7,-7},{7,7}}, rotation=-90, origin={3,33}))); +7: Name 'TsuSinkRamp' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Sink, Ramp. Affected line: Modelica.Blocks.Sources.Ramp TsuSinkRamp( duration=1000, startTime=1000, height=25, offset=278) "Ramp signal for the temperature input of the sink side's ideal mass flow source" annotation (Placement(transformation(extent={{-96,-34},{-76,-14}}))); -AixLib/Obsolete/YearIndependent/FastHVAC/Examples/HeatGenerators/HeatPump/HeatPump.mo -1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sensors.TemperatureSensor temperatureSensor annotation (Placement(transformation(extent={{48,-70},{66,-52}})));FastHVAC.Components.Pumps.FluidSource fluidSource(medium= FastHVAC.Media.WaterSimple()) "Fluidsource for source" annotation (Placement(transformation(extent={{-50,-44},{-30,-24}}))); +8: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: BaseClasses.WorkingFluid Room(m_fluid=5*1000, T0=293.15) "Volume" annotation ( Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={90,-26}))); -2: Documentation too short, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.HeatGenerators.HeatPump.HeatPump heatPump( refIneFre_constant=1, Medium_con=Media.WaterSimple(), Medium_eva=Media.WaterSimple(), mFlow_conNominal=0.5, VCon=0.4, deltaM_con=0.1, use_ConCap=false, CCon=100, GCon=5, mFlow_evaNominal=0.5, VEva=0.04, deltaM_eva=0.1, use_EvaCap=false, CEva=100, GEva=5, allowFlowReversalEva=true, use_revHP=true, TCon_start(displayUnit="K"), TEva_start(displayUnit="K"), redeclare model PerDataHea = AixLib.Obsolete.Year2024.DataBase.HeatPump.PerformanceData.LookUpTable2D ( dataTable=AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511.Vitocal200AWO201()), redeclare model PerDataChi = AixLib.Obsolete.Year2024.DataBase.Chiller.PerformanceData.LookUpTable2D ( dataTable=AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511.Vitocal200AWO201()), Q_useNominal=0, use_autoCalc=false, TAmbCon_nominal=288.15) annotation (Placement(transformation( extent={{-13,-16},{13,16}}, rotation=-90, origin={3,-2}))); +9: Name 'heatFlowRateCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Rate. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow heatFlowRateCon "Heat flow rate of the condenser" annotation (Placement(transformation( extent={{-6,6},{6,-6}}, rotation=270, origin={52,-18}))); -3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sinks.Vessel vessel_ev "vessel for open evaporator circuit" annotation (Placement( transformation( extent={{-11,-9},{11,9}}, rotation=180, origin={-35,57}))); +10: Name 'sine' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sine. Affected line: Modelica.Blocks.Sources.Sine sine( f=1/3600, amplitude=500, phase=3.1415926535898, offset=500) "hourly sine " annotation (Placement(transformation(extent={{66,8},{58,16}}))); -4: Name 'dotm_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_source. Affected line: Modelica.Blocks.Sources.Constant dotm_source(k=1) "Source mass flow signal" annotation (Placement(transformation(extent={{-98,-82},{-78,-62}}))); +11: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.Pumps.Pump pump "source pump" annotation (Placement(transformation( extent={{10,-10},{-10,10}}, rotation=0, origin={36,20}))); -5: Name 'dotm_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_sink. Affected line: Modelica.Blocks.Sources.Constant dotm_sink(k=0.106) "sink mass flow signal" annotation (Placement( transformation( extent={{-4,-4},{4,4}}, rotation=270, origin={36,38}))); +12: Missing documentation, Name 'booleanToReal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Real. Affected line: Modelica.Blocks.Math.BooleanToReal booleanToReal annotation (Placement(transformation(extent={{7,-7},{-7,7}}, rotation=270, origin={-3,-53}))); -6: Name 'T_amb_internal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_amb. Affected line: Modelica.Blocks.Sources.Constant T_amb_internal(k=291.15) "Constant internal ambient temeprature" annotation (Placement(transformation(extent={{7,-7},{-7,7}}, rotation=-90, origin={3,-35}))); +13: Missing documentation, Name 'hysCooling' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Cooling. Affected line: Modelica.Blocks.Logical.Hysteresis hysCooling( pre_y_start=false, uHigh=273.15 + 17, uLow=273.15 + 14) annotation (Placement(transformation(extent={{46,-98},{34,-86}}))); -7: Name 'booleanToReal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Real. Affected line: Modelica.Blocks.Math.BooleanToReal booleanToReal "on off control " annotation (Placement(transformation(extent={{4,4},{-4,-4}}, rotation=90, origin={6,40}))); +14: Missing documentation, Name 'booleanStep' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Step. Affected line: Modelica.Blocks.Sources.BooleanStep booleanStep( startValue=true, startTime=15000) annotation (Placement(transformation(extent={{8,-8},{-8,8}}, rotation=0, origin={32,-54}))); -8: Name 'TsuSourceRamp' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Source, Ramp. Affected line: Modelica.Blocks.Sources.Ramp TsuSourceRamp( duration=1000, startTime=1000, height=25, offset=278) "Ramp signal for the temperature input of the source side's ideal mass flow source" annotation (Placement(transformation(extent={{-96,-34},{-76,-14}}))); +15: Missing documentation, Name 'hysHeating' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Logical.Hysteresis hysHeating( pre_y_start=true, uLow=273.15 + 25, uHigh=273.15 + 30) annotation (Placement(transformation(extent={{46,-82},{34,-70}}))); -9: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: BaseClasses.WorkingFluid Room(m_fluid=5*1000, T0=293.15) "Volume" annotation ( Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={90,-26}))); +16: Missing documentation, Name 'logicalSwitch' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: logical, Switch. Affected line: Modelica.Blocks.Logical.LogicalSwitch logicalSwitch annotation (Placement(transformation(extent={{10,-78},{0,-88}}))); -10: Name 'heatFlowRateCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Rate. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow heatFlowRateCon "Heat flow rate of the condenser" annotation (Placement(transformation( extent={{-6,6},{6,-6}}, rotation=270, origin={52,-18}))); -11: Name 'sine' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sine. Affected line: Modelica.Blocks.Sources.Sine sine( f=1/3600, amplitude=3000, offset=3000) "hourly sine " annotation (Placement(transformation(extent={{66,8},{58,16}}))); +AixLib/Obsolete/Year2019/Fluid/HeatPumps/HeatPumpSimple.mo +1: Missing documentation, Name 'Medium' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium. Affected line: replaceable package Medium = Modelica.Media.Water.ConstantPropertyLiquidWater constrainedby Modelica.Media.Interfaces.PartialMedium; -12: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.Pumps.Pump pump "sink pump" annotation (Placement(transformation( extent={{10,-10},{-10,10}}, rotation=0, origin={36,20}))); +2: Name 'port_a_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_a_source. Affected line: Modelica.Fluid.Interfaces.FluidPort_a port_a_source(redeclare package Medium = Medium) "Heat pump inlet on the source side" annotation(Placement(transformation(extent = {{-100, 60}, {-80, 80}}))); -13: Missing documentation, Name 'booleanStep' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Step. Affected line: Modelica.Blocks.Sources.BooleanStep booleanStep(startTime=10000, startValue=true) annotation (Placement(transformation(extent={{-6,-6},{6,6}}, rotation=270, origin={0,78}))); +3: Name 'port_b_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_b_source. Affected line: Modelica.Fluid.Interfaces.FluidPort_b port_b_source(redeclare package Medium = Medium) "Heat pump outlet on the source side" annotation(Placement(transformation(extent = {{-100, -80}, {-80, -60}}))); -14: Missing documentation, Name 'hysHeating' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Logical.Hysteresis hysHeating( pre_y_start=true, uLow=273.15 + 30, uHigh=273.15 + 35) annotation (Placement(transformation(extent={{66,58},{56,68}}))); +4: Name 'port_a_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_a_sink. Affected line: Modelica.Fluid.Interfaces.FluidPort_a port_a_sink(redeclare package Medium = Medium) "Heat pump inlet on the sink side" annotation(Placement(transformation(extent = {{80, -80}, {100, -60}}))); -15: Missing documentation, Name 'logicalSwitch' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: logical, Switch. Affected line: Modelica.Blocks.Logical.LogicalSwitch logicalSwitch annotation (Placement(transformation(extent={{26,50},{16,60}}))); +5: Name 'port_b_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_b_sink. Affected line: Modelica.Fluid.Interfaces.FluidPort_b port_b_sink(redeclare package Medium = Medium) "Heat pump outlet on the sink side" annotation(Placement(transformation(extent = {{80, 60}, {100, 80}}))); -16: Missing documentation, Name 'hysCooling' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Cooling. Affected line: Modelica.Blocks.Logical.Hysteresis hysCooling( pre_y_start=false, uLow=273.15 + 15, uHigh=273.15 + 19) annotation (Placement(transformation(extent={{58,42},{48,52}}))); +6: Name 'volumeEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: volume, Evaporator. Affected line: AixLib.Fluid.MixingVolumes.MixingVolume volumeEvaporator( V=VolumeEvaporator, nPorts=2, redeclare package Medium = Medium, m_flow_nominal=0.01) "Water volume of the evaporator on the source side" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=270, origin={-70,-60}))); +7: Name 'volumeCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: volume, Condenser. Affected line: AixLib.Fluid.MixingVolumes.MixingVolume volumeCondenser( V=VolumeCondenser, nPorts=2, redeclare package Medium = Medium, m_flow_nominal=0.01) "Water volume of the condenser on the sink side" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={70,-30}))); -AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpBase.mo -1: Name 'm_flow_nominal_layer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: m_flow_nominal_layer. Affected line: parameter Modelica.Units.SI.MassFlowRate m_flow_nominal_layer=0.5 "Nominal mass flow rate in layers of storages"; +8: Name 'temperatureSinkOut' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: temperature, Sink. Affected line: AixLib.Fluid.Sensors.TemperatureTwoPort temperatureSinkOut(redeclare package Medium = Medium, m_flow_nominal=0.01) "Temperature sensor at outlet on the sink side" annotation (Placement( transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={80,50}))); -2: Name 'm_flow_nominal_HE' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: m_flow_nominal_. Affected line: parameter Modelica.Units.SI.MassFlowRate m_flow_nominal_HE=0.5 "Nominal mass flow rate of heat exchanger layers of storages"; +9: Name 'temperatureSourceIn' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: temperature, Source. Affected line: AixLib.Fluid.Sensors.TemperatureTwoPort temperatureSourceIn(redeclare package Medium = Medium, m_flow_nominal=0.01) "Temperature sensor at inlet on the source side" annotation (Placement( transformation( extent={{-10,-10},{10,10}}, rotation=270, origin={-80,36}))); -3: Name 'T_start_cold' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_start_cold. Affected line: parameter Modelica.Units.SI.Temperature T_start_cold=300 "Initial temperature of cold components"; +10: Name 'HeatFlowCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heat, Condenser. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow HeatFlowCondenser "Heat flow on the sink side" annotation(Placement(transformation(extent={{-4,-4}, {4,4}}, origin={48,-40}))); -4: Name 'T_start_hot' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_start_hot. Affected line: parameter Modelica.Units.SI.Temperature T_start_hot=300 "Initial temperature of warm components"; +11: Name 'HeatFlowEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heat, Evaporator. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow HeatFlowEvaporator "Heat flow on the source side" annotation(Placement(transformation(extent={{4,-4},{ -4,4}}, origin={-46,-50}))); -5: Missing documentation, Name 'PeakLoadDeviceModel' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Peak, Load, Device, Model. Affected line: replaceable model PeakLoadDeviceModel = AixLib.Fluid.Interfaces.PartialTwoPortTransport constrainedby AixLib.Fluid.Interfaces.PartialTwoPortTransport(redeclare package Medium=Medium) annotation(choicesAllMatching=true); +12: Name 'PowerTable' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Power, Table. Affected line: Modelica.Blocks.Tables.CombiTable2Ds PowerTable(table=tablePower) "Calculates electric power based on temperature in source and sink" annotation (Placement(transformation(extent={{-52,20},{-32,40}}))); -6: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: PeakLoadDeviceModel peaLoaDev annotation (Placement(transformation(extent={{108,-56},{120,-44}})));Storage.StorageDetailed coldStorage( redeclare package Medium = Medium, energyDynamics=energyDynamics, redeclare package MediumHC1 = Medium, redeclare package MediumHC2 = Medium, m1_flow_nominal=m_flow_nominal_layer, m2_flow_nominal=m_flow_nominal_layer, mHC1_flow_nominal=m_flow_nominal_HE, useHeatingCoil2=false, useHeatingRod=false, redeclare DataBase.Storage.Generic_New_2000l data( hTank=1.5, hUpperPortDemand=1.45, hUpperPortSupply=1.45, hHC1Up=1.45, dTank=1, sIns=0.2, lambdaIns=0.075, hTS2=1.45), n=5, hConIn=100, hConOut=10, hConHC1=500, upToDownHC1=false) "Storage tank for buffering cold demand" annotation (Placement(transformation(extent={{24,-14}, {52,20}})));FixedResistances.PressureDrop resistanceColdStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dp_nominal=15000) "Resistance in evaporator circuit" annotation (Placement(transformation( extent={{-6,-7},{6,7}}, rotation=180, origin={-34,38}))); +13: Name 'HeatFlowCondenserTable' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heat, Condenser, Table. Affected line: Modelica.Blocks.Tables.CombiTable2Ds HeatFlowCondenserTable(table= tableHeatFlowCondenser) "Calculates heat flow based on temperature in source and sink" annotation (Placement(transformation(extent={{-52,-12},{-32,8}}))); -7: Name 'geothFieldSource' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: geoth, Field, Source. Affected line: AixLib.Fluid.Sources.Boundary_pT geothFieldSource( redeclare package Medium = Medium, nPorts=1, T=284.15) "Source representing geothermal field" annotation (Placement(transformation(extent={{-158,-60},{-146,-48}}))); +14: Name 'SwitchHeatFlowCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Switch, Heat, Condenser. Affected line: Modelica.Blocks.Logical.Switch SwitchHeatFlowCondenser "Switch to deactivate heat flow when off" annotation(Placement(transformation(extent = {{14, -20}, {34, 0}}))); -8: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FixedResistances.PressureDrop resistanceGeothermalSource( redeclare package Medium = Medium, m_flow_nominal=0.5, dp_nominal=15000) "Resistance in geothermal field circuit" annotation (Placement(transformation( extent={{-6,-7},{6,7}}, rotation=0, origin={-70,-54})));FixedResistances.PressureDrop resistanceColdConsumerFlow( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in cold consumer flow line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=0, origin={87,-20})));Actuators.Valves.TwoWayQuickOpening valveHeatSink( redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting geothermal field to the condenser of the heat pump" annotation (Placement(transformation(extent={{-36,-61},{-24,-47}})));Actuators.Valves.TwoWayQuickOpening valveHeatSource(redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting geothermal field to the evaporator of the heat pump" annotation (Placement( transformation( extent={{-6,-7},{6,7}}, rotation=90, origin={-60,1}))); +15: Name 'constZero2' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Zero. Affected line: Modelica.Blocks.Sources.Constant constZero2(k = 0) "Zero heat flow, when heat pump off" annotation(Placement(transformation(extent = {{-26, -28}, {-6, -8}}))); -9: Name 'heatStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Storage. Affected line: AixLib.Fluid.Storage.StorageDetailed heatStorage( redeclare package Medium = Medium, energyDynamics=energyDynamics, redeclare package MediumHC1 = Medium, redeclare package MediumHC2 = Medium, m1_flow_nominal=m_flow_nominal_layer, m2_flow_nominal=m_flow_nominal_layer, mHC1_flow_nominal=m_flow_nominal_HE, useHeatingCoil2=false, useHeatingRod=false, redeclare DataBase.Storage.Generic_New_2000l data( hTank=1.5, hUpperPortDemand=1.45, hUpperPortSupply=1.45, hHC1Up=1.45, dTank=1, sIns=0.2, lambdaIns=0.075, hTS2=1.45), n=5, hConIn=100, hConOut=10, hConHC1=500) "Storage tank for buffering heat demand" annotation (Placement(transformation(extent={{24,-96},{52,-62}}))); +16: Name 'SwitchPower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Switch, Power. Affected line: Modelica.Blocks.Logical.Switch SwitchPower "Switch to deactivate Power when off" annotation(Placement(transformation(extent = {{14, 12}, {34, 32}}))); -10: Name 'resistanceHeatStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Heat, Storage. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceHeatStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dp_nominal=15000) "Resistance in condenser circuit" annotation (Placement(transformation( extent={{-6,-7},{6,7}}, rotation=90, origin={-18,-78}))); +17: Name 'constZero1' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Zero. Affected line: Modelica.Blocks.Sources.Constant constZero1(k = 0) "Zero power, when heat pump off" annotation(Placement(transformation(extent = {{-26, 4}, {-6, 24}}))); -11: Name 'geothField_sink1' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: geoth, Field_sink. Affected line: AixLib.Fluid.Sources.Boundary_pT geothField_sink1(redeclare package Medium = Medium, nPorts=2) "One of two sinks representing geothermal field" annotation (Placement(transformation(extent={{-158,20},{-146,32}}))); +18: Name 'feedbackHeatFlowEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: feedback, Heat, Evaporator. Affected line: Modelica.Blocks.Math.Feedback feedbackHeatFlowEvaporator "Calculates evaporator heat flow with total energy balance" annotation(Placement(transformation(extent = {{10, -60}, {-10, -40}}))); -12: Name 'resistanceHeatConsumerFlow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Heat, Consumer. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceHeatConsumerFlow( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in heat consumer flow line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=0, origin={87,-50}))); +19: Name 'Power' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Power. Affected line: Modelica.Blocks.Interfaces.RealOutput Power "Connector of Real output signal" annotation(Placement(transformation(extent = {{-10, -10}, {10, 10}}, rotation = 270, origin = {0, -90}))); -13: Name 'valveColdStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: valve, Cold, Storage. Affected line: AixLib.Fluid.Actuators.Valves.TwoWayQuickOpening valveColdStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting cold storage to the evaporator of the heat pump" annotation (Placement( transformation( extent={{-6,7},{6,-7}}, rotation=180, origin={-52,38}))); +20: Name 'VolumeEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Volume, Evaporator. Affected line: parameter Modelica.Units.SI.Volume VolumeEvaporator=0.01 "Volume im m3"; -14: Name 'valveHeatStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: valve, Heat, Storage. Affected line: AixLib.Fluid.Actuators.Valves.TwoWayQuickOpening valveHeatStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting heat storage to the condenser of the heat pump" annotation (Placement( transformation( extent={{-6,-7},{6,7}}, rotation=90, origin={-18,-63}))); +21: Name 'VolumeCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Volume, Condenser. Affected line: parameter Modelica.Units.SI.Volume VolumeCondenser=0.01 "Volume im m3"; -15: Name 'pumpColdConsumer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Cold, Consumer. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpColdConsumer( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from storage tank to cold consumers" annotation (Placement(transformation(extent={{58,-27},{72,-13}}))); +22: Name 'tablePower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: table, Power. Affected line: parameter Real tablePower[:, :] = fill(0.0, 0, 2) "Table matrix (grid u1 = first column, grid u2 = first row; e.g., table=[0,0;0,1])"; -16: Name 'pumpHeatConsumer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Heat, Consumer. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpHeatConsumer( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_hot) "Pump moving fluid from storage tank to heat consumers" annotation (Placement(transformation(extent={{58,-57},{72,-43}}))); +23: Name 'tableHeatFlowCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: table, Heat, Condenser. Affected line: parameter Real tableHeatFlowCondenser[:, :] = fill(0.0, 0, 2) "Table matrix (grid u1 = first column, grid u2 = first row; e.g., table=[0,0;0,1])"; -17: Name 'resistanceColdConsumerReturn' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Cold, Consumer, Return. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceColdConsumerReturn( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in cold consumer return line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=180, origin={87,32}))); +24: Missing documentation. Affected line: Modelica.Blocks.Math.Gain gain(k=-1) annotation(Placement(transformation(extent = {{-18, -60}, {-38, -40}}))); -18: Name 'resistanceHeatConsumerReturn' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Heat, Consumer, Return. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceHeatConsumerReturn( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in heat consumer return line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=180, origin={87,-106}))); -19: Name 'pumpCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Condenser. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpCondenser( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from storage tank to condenser of heat pump" annotation (Placement(transformation( extent={{-7,7},{7,-7}}, rotation=180, origin={-1,-98}))); +AixLib/Fluid/HeatPumps/ModularReversible/Data/TableDataSDF/TableData3D/VCLibPy/Generic.mo +1: Name 'flowsheet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: flowsheet. Affected line: parameter String flowsheet "Name of the flowsheet"; -20: Name 'pumpEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Evaporator. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpEvaporator( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from storage tank to evaporator of heat pump" annotation (Placement(transformation( extent={{-7,7},{7,-7}}, rotation=180, origin={7,36}))); +2: Name 'refrigerant' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: refrigerant. Affected line: parameter String refrigerant "Name of the fluid"; -21: Name 'pumpGeothermalSource' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Geothermal, Source. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpGeothermalSource( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from geothermal source into system" annotation ( Placement(transformation( extent={{-7,-7},{7,7}}, rotation=0, origin={-89,-54}))); -22: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus heatPumpControlBus annotation (Placement(transformation(extent={{-21,60},{20,98}}))); +AixLib/Fluid/HeatPumps/ModularReversible/Examples/VCLibAirToWater_OneRoomRadiator.mo +1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Modular heaPum( redeclare package MediumCon = MediumWat, redeclare package MediumEva = MediumAir, use_rev=false, allowDifferentDeviceIdentifiers=true, dTCon_nominal=8, use_conCap=false, dTEva_nominal=3, use_evaCap=false, QHea_flow_nominal=Q_flow_nominal, use_intSafCtr=true, redeclare model RefrigerantCycleHeatPumpHeating = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.TableData3D ( redeclare AixLib.Fluid.HeatPumps.ModularReversible.Data.TableDataSDF.TableData3D.VCLibPy.VCLibVaporInjectionPhaseSeparatorR410A datTab), TConHea_nominal=TRadSup_nominal, dpCon_nominal(displayUnit="Pa") = 2000, TEvaHea_nominal=sou.T, dpEva_nominal(displayUnit="Pa") = 200, energyDynamics=Modelica.Fluid.Types.Dynamics.FixedInitial, redeclare AixLib.Fluid.HeatPumps.ModularReversible.Controls.Safety.Data.Wuellhorst2021 safCtrPar, TConCoo_nominal=273.15, TEvaCoo_nominal=273.15) "Large scale water to water heat pump" annotation (Placement(transformation(extent={{20,-160},{0,-140}}))); -23: Missing documentation, Name 'heatPump' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Pump. Affected line: AixLib.Fluid.HeatPumps.ModularReversible.Modular heatPump( redeclare package MediumCon = Medium, redeclare package MediumEva = Medium, use_rev=false, tauCon=0.005*heatPump.rhoCon/heatPump.mCon_flow_nominal, dTCon_nominal=0, tauEva=0.005*heatPump.rhoEva/heatPump.mEva_flow_nominal, dpCon_nominal=0, use_conCap=false, CCon=0, GConOut=0, GConIns=0, dTEva_nominal=0, dpEva_nominal=0, use_evaCap=false, CEva=0, GEvaOut=0, GEvaIns=0, use_intSafCtr=false, energyDynamics=energyDynamics, QHea_flow_nominal=12740, redeclare model RefrigerantCycleHeatPumpHeating = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.TableData2D ( redeclare AixLib.Fluid.HeatPumps.ModularReversible.Data.TableData2D.EN255.Vitocal350BWH110 datTab), redeclare model RefrigerantCycleHeatPumpCooling = AixLib.Fluid.Chillers.ModularReversible.RefrigerantCycle.BaseClasses.NoCooling, mCon_flow_nominal=0.5, mEva_flow_nominal=0.5, TConHea_nominal=318.15, TEvaHea_nominal=273.15, TConCoo_nominal=273.15, TEvaCoo_nominal=273.15, use_busConOnl=true) annotation ( Placement(transformation( extent={{-10,10},{10,-10}}, rotation=90, origin={-30,10}))); +AixLib/Controls/HeatPump/DefrostControl.mo +1: Name 'deltaIceFac' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: delta. Affected line: parameter Real deltaIceFac = 0.1 "Bandwitdth for hystereses. If the icing factor is based on the duration of defrost, this value is necessary to avoid state-events."; -AixLib/Controls/HeatPump/HPControl.mo -1: Missing documentation, Name 'HeatingCurveFunction' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating, Curve, Function. Affected line: replaceable function HeatingCurveFunction = SetPoints.Functions.HeatingCurveFunction constrainedby SetPoints.Functions.PartialBaseFct annotation (Dialog(group="Heating Curve - Data", enable = not use_tableData),choicesAllMatching=true); +2: Missing documentation. Affected line: Modelica.Blocks.Interfaces.BooleanInput hea annotation (Placement(transformation(extent={{-132,-36},{-100,-4}}))); -2: Name 'heatingCurveRecord' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heating, Curve, Record. Affected line: parameter AixLib.DataBase.Boiler.DayNightMode.HeatingCurvesDayNightBaseDataDefinition heatingCurveRecord= AixLib.DataBase.Boiler.DayNightMode.HeatingCurves_Vitotronic_Day25_Night10() "Record with information about heating curve data" annotation (Dialog(group="Heating Curve - Data", enable = use_tableData),choicesAllMatching=true); +3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Utilities.Logical.SmoothSwitch swiErr "If an error occurs, the value of the conZero block will be used(0)" annotation (Placement(transformation(extent={{58,2},{78,22}}))); -3: Name 'declination' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: declination. Affected line: parameter Real declination=2 "Declination of curve" annotation (Dialog(group="Heating Curve - Data", enable = use_tableData)); +4: Missing documentation. Affected line: Modelica.Blocks.Interfaces.BooleanOutput heaOut annotation (Placement(transformation(extent={{100,-30},{120,-10}}))); -4: Name 'day_hour' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: day_hour. Affected line: parameter Real day_hour=6 "Hour of day at which day mode is enabled" annotation (Dialog(group="Heating Curve - Night mode")); +5: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Fluid.HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus sigBus annotation (Placement(transformation(extent={{-120,-76},{-92,-48}}))); -5: Name 'night_hour' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: night_hour. Affected line: parameter Real night_hour=22 "Hour of day at which night mode is enabled" annotation (Dialog(group="Heating Curve - Night mode")); +6: Name 'logicalSwitch' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: logical, Switch. Affected line: Modelica.Blocks.Logical.LogicalSwitch logicalSwitch "If a chiller is used to defrost, mode will be false" annotation (Placement(transformation(extent={{58,-42},{78,-22}}))); -6: Name 'weekly' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: weekly. Affected line: parameter Boolean weekly=true "Switch between a daily or weekly trigger approach" annotation(Dialog(tab="Anti Legionella",descriptionLabel=true), choices(choice=true "Weekly", choice=false "Daily", radioButtons=true)); +7: Name 'conTrueUseChi' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: True. Affected line: Modelica.Blocks.Sources.BooleanConstant conTrueUseChi(final k=false) "Set mode to false to simulate the defrost cycle" annotation (Placement(transformation(extent={{20,-80},{40,-60}}))); -7: Name 'trigWeekDay' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: trig, Week. Affected line: parameter Integer trigWeekDay "Day of the week at which control is triggered" annotation (Dialog(tab="Anti Legionella", enable=use_antLeg and weekly)); -8: Name 'trigHour' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: trig, Hour. Affected line: parameter Integer trigHour=3 "Hour of the day at which control is triggered" annotation (Dialog(tab="Anti Legionella", enable=use_antLeg)); +AixLib/Fluid/Examples/GeothermalHeatPump/GeothermalHeatPump.mo +1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Sources.Boundary_pT coldConsumerFlow(redeclare package Medium = Medium, nPorts=1) annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,-20})));Sources.Boundary_pT heatConsumerFlow(redeclare package Medium = Medium, nPorts=1) "Sink representing heat consumer" annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,-50})));Sources.Boundary_pT heatConsumerReturn(redeclare package Medium = Medium, nPorts=1, T=303.15) "Source representing heat consumer" annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,-106})));Sources.Boundary_pT coldConsumerReturn(redeclare package Medium = Medium, nPorts=1, T=287.15) "Source representing cold consumer" annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,32}))); -9: Missing documentation, Name 'antiLegionella' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: anti, Legionella. Affected line: AixLib.Controls.HeatPump.AntiLegionella antiLegionella( final TLegMin=TLegMin, minTimeAntLeg=minTimeAntLeg, trigWeekDay=trigWeekDay, trigHour=trigHour, yearRef=2017, final zerTim=zerTim) if use_antLeg annotation (Placement(transformation(extent={{-26,-14},{14,26}}))); +2: Name 'pressureDifference' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pressure, Difference. Affected line: Modelica.Blocks.Sources.Constant pressureDifference(k=60000) "Pressure difference used for all pumps" annotation ( Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,6}))); -10: Missing documentation. Affected line: AixLib.Fluid.HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus sigBusHP annotation (Placement(transformation(extent={{-116,-72},{-88,-44}}))); +3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Controls.HeatPump.TwoPointControlledHP twoPointControlledHP( use_secHeaGen=false, use_heaLim=false, T_heaLim=293.15, movAveTime=300, bandwidth=2) "Controls the temperature in the heat storage by switching the heat pump on or off" annotation (Placement(transformation(extent={{-80,60},{-60,80}}))); -11: Name 'T_oda' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_oda. Affected line: Modelica.Blocks.Interfaces.RealInput T_oda "Outdoor air temperature" annotation (Placement(transformation(extent={{-128,-14},{-100,14}}), iconTransformation(extent={{-140,-26},{-100,14}}))); +4: Name 'TStorageSet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Storage. Affected line: Modelica.Blocks.Sources.Constant TStorageSet(k=273.15 + 45) "Set point of upper heat storage temperature" annotation (Placement(transformation(extent={{-120,70},{-110,80}}))); -12: Missing documentation, Name 'y_sou' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: y_sou. Affected line: Modelica.Blocks.Interfaces.RealOutput y_sou annotation (Placement(transformation(extent={{14,-14},{-14,14}}, rotation=90, origin={-60,-114}))); +5: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Control.geothermalFieldController geothermalFieldControllerCold( temperature_low=273.15 + 8, temperature_high=273.15 + 10) "Controls the heat exchange with the geothermal field and the heat storage" annotation (Placement(transformation(extent={{-102,28},{-86,44}})));Control.geothermalFieldController geothermalFieldControllerHeat( temperature_low=308.15, temperature_high=313.15) "Controls the heat exchange with the geothermal field and the heat storage" annotation (Placement(transformation(extent={{-100,-34},{-84,-18}}))); -13: Missing documentation, Name 'y_sin' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: y_sin. Affected line: Modelica.Blocks.Interfaces.RealOutput y_sin annotation (Placement(transformation( extent={{14,-14},{-14,14}}, rotation=90, origin={60,-114}))); +6: Name 'mode' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: mode. Affected line: Modelica.Blocks.Sources.BooleanConstant mode "Dummy signal for unit mode, true: heat pump, false: chiller" annotation (Placement(transformation(extent={{-56,56},{-44,68}}))); -14: Name 'constHeating1' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Sources.Constant constHeating1(final k=1) "If you want to include chilling, please insert control blocks first" annotation (Placement(transformation(extent={{10,-10},{-10,10}}, rotation=90, origin={-12,-72}))); -15: Missing documentation, Name 'heatCurve' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Curve. Affected line: AixLib.Controls.SetPoints.HeatingCurve heatCurve( final TOffset=0, final use_dynTRoom=false, final zerTim=zerTim, final day_hour=day_hour, final night_hour=night_hour, final heatingCurveRecord=heatingCurveRecord, final declination=declination, redeclare function HeatingCurveFunction = HeatingCurveFunction, use_tableData=use_tableData, final TRoom_nominal=293.15) annotation (Placement(transformation(extent={{-74,10},{-54,30}}))); +AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpBase.mo +1: Name 'm_flow_nominal_layer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: m_flow_nominal_layer. Affected line: parameter Modelica.Units.SI.MassFlowRate m_flow_nominal_layer=0.5 "Nominal mass flow rate in layers of storages"; -16: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: TSetToNSet ConvTSetToNSet annotation (Placement(transformation(extent={{44,-8},{76,26}}))); +2: Name 'm_flow_nominal_HE' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: m_flow_nominal_. Affected line: parameter Modelica.Units.SI.MassFlowRate m_flow_nominal_HE=0.5 "Nominal mass flow rate of heat exchanger layers of storages"; -17: Name 'realPasThrAntLeg' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: real. Affected line: Modelica.Blocks.Routing.RealPassThrough realPasThrAntLeg if not use_antLeg "No Anti Legionella" annotation ( choicesAllMatching=true, Placement( transformation(extent={{-10,38},{6,54}}))); +3: Name 'T_start_cold' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_start_cold. Affected line: parameter Modelica.Units.SI.Temperature T_start_cold=300 "Initial temperature of cold components"; -18: Name 'constHeating' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Sources.BooleanConstant constHeating(final k=true) "If you want to include chilling, please insert control blocks first" annotation (Placement(transformation(extent={{82,-26},{94,-14}}))); +4: Name 'T_start_hot' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_start_hot. Affected line: parameter Modelica.Units.SI.Temperature T_start_hot=300 "Initial temperature of warm components"; +5: Missing documentation, Name 'PeakLoadDeviceModel' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Peak, Load, Device, Model. Affected line: replaceable model PeakLoadDeviceModel = AixLib.Fluid.Interfaces.PartialTwoPortTransport constrainedby AixLib.Fluid.Interfaces.PartialTwoPortTransport(redeclare package Medium=Medium) annotation(choicesAllMatching=true); -AixLib/Fluid/HeatPumps/ModularReversible/RefrigerantCycle/BaseClasses/PartialTableDataSDF.mo -1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: parameter SDF.Types.InterpolationMethod interpMethod=SDF.Types.InterpolationMethod.Linear "Interpolation method" annotation(Dialog(group="Data handling"));parameter SDF.Types.ExtrapolationMethod extrapMethod=SDF.Types.ExtrapolationMethod.Hold "Extrapolation method" annotation(Dialog(group="Data handling")); +6: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: PeakLoadDeviceModel peaLoaDev annotation (Placement(transformation(extent={{108,-56},{120,-44}})));Storage.StorageDetailed coldStorage( redeclare package Medium = Medium, energyDynamics=energyDynamics, redeclare package MediumHC1 = Medium, redeclare package MediumHC2 = Medium, m1_flow_nominal=m_flow_nominal_layer, m2_flow_nominal=m_flow_nominal_layer, mHC1_flow_nominal=m_flow_nominal_HE, useHeatingCoil2=false, useHeatingRod=false, redeclare DataBase.Storage.Generic_New_2000l data( hTank=1.5, hUpperPortDemand=1.45, hUpperPortSupply=1.45, hHC1Up=1.45, dTank=1, sIns=0.2, lambdaIns=0.075, hTS2=1.45), n=5, hConIn=100, hConOut=10, hConHC1=500, upToDownHC1=false) "Storage tank for buffering cold demand" annotation (Placement(transformation(extent={{24,-14}, {52,20}})));FixedResistances.PressureDrop resistanceColdStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dp_nominal=15000) "Resistance in evaporator circuit" annotation (Placement(transformation( extent={{-6,-7},{6,7}}, rotation=180, origin={-34,38}))); -2: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: SDF.NDTable nDTabQUse_flow( final nin=nDim, final readFromFile=true, final interpMethod=interpMethod, final extrapMethod=extrapMethod) "SDF-Table data for condenser heat flow" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=-90, origin={70,30})));SDF.NDTable nDTabPEle( final nin=nDim, final readFromFile=true, final interpMethod=interpMethod, final extrapMethod=extrapMethod) "SDF table data for electrical power" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=-90, origin={10,30}))); +7: Name 'geothFieldSource' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: geoth, Field, Source. Affected line: AixLib.Fluid.Sources.Boundary_pT geothFieldSource( redeclare package Medium = Medium, nPorts=1, T=284.15) "Source representing geothermal field" annotation (Placement(transformation(extent={{-158,-60},{-146,-48}}))); -3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: RearrangeInputs ordInp(final nDim=nDim) "Possibly change Input order" annotation ( Placement(transformation( extent={{-10,-10},{10,10}}, rotation=0, origin={-40,50}))); +8: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FixedResistances.PressureDrop resistanceGeothermalSource( redeclare package Medium = Medium, m_flow_nominal=0.5, dp_nominal=15000) "Resistance in geothermal field circuit" annotation (Placement(transformation( extent={{-6,-7},{6,7}}, rotation=0, origin={-70,-54})));FixedResistances.PressureDrop resistanceColdConsumerFlow( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in cold consumer flow line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=0, origin={87,-20})));Actuators.Valves.TwoWayQuickOpening valveHeatSink( redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting geothermal field to the condenser of the heat pump" annotation (Placement(transformation(extent={{-36,-61},{-24,-47}})));Actuators.Valves.TwoWayQuickOpening valveHeatSource(redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting geothermal field to the evaporator of the heat pump" annotation (Placement( transformation( extent={{-6,-7},{6,7}}, rotation=90, origin={-60,1}))); -4: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: parameter SDF.Types.ExternalNDTable extTabQUse_flow=SDF.Types.ExternalNDTable( nDTabQUse_flow.nin, SDF.Functions.readTableData( Modelica.Utilities.Files.loadResource(nDTabQUse_flow.filename), nDTabQUse_flow.dataset, nDTabQUse_flow.dataUnit, nDTabQUse_flow.scaleUnits)); +9: Name 'heatStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Storage. Affected line: AixLib.Fluid.Storage.StorageDetailed heatStorage( redeclare package Medium = Medium, energyDynamics=energyDynamics, redeclare package MediumHC1 = Medium, redeclare package MediumHC2 = Medium, m1_flow_nominal=m_flow_nominal_layer, m2_flow_nominal=m_flow_nominal_layer, mHC1_flow_nominal=m_flow_nominal_HE, useHeatingCoil2=false, useHeatingRod=false, redeclare DataBase.Storage.Generic_New_2000l data( hTank=1.5, hUpperPortDemand=1.45, hUpperPortSupply=1.45, hHC1Up=1.45, dTank=1, sIns=0.2, lambdaIns=0.075, hTS2=1.45), n=5, hConIn=100, hConOut=10, hConHC1=500) "Storage tank for buffering heat demand" annotation (Placement(transformation(extent={{24,-96},{52,-62}}))); -5: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: parameter SDF.Types.ExternalNDTable extTabPEle=SDF.Types.ExternalNDTable( nDTabPEle.nin, SDF.Functions.readTableData( Modelica.Utilities.Files.loadResource(nDTabPEle.filename), nDTabPEle.dataset, nDTabPEle.dataUnit, nDTabPEle.scaleUnits)); +10: Name 'resistanceHeatStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Heat, Storage. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceHeatStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dp_nominal=15000) "Resistance in condenser circuit" annotation (Placement(transformation( extent={{-6,-7},{6,7}}, rotation=90, origin={-18,-78}))); -6: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: function evaluate input SDF.Types.ExternalNDTable table;input Real[:] params;input SDF.Types.InterpolationMethod interpMethod;input SDF.Types.ExtrapolationMethod extrapMethod; +11: Name 'geothField_sink1' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: geoth, Field_sink. Affected line: AixLib.Fluid.Sources.Boundary_pT geothField_sink1(redeclare package Medium = Medium, nPorts=2) "One of two sinks representing geothermal field" annotation (Placement(transformation(extent={{-158,20},{-146,32}}))); -7: Missing documentation, Name 'value;' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: value. Affected line: output Real value; +12: Name 'resistanceHeatConsumerFlow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Heat, Consumer. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceHeatConsumerFlow( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in heat consumer flow line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=0, origin={87,-50}))); +13: Name 'valveColdStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: valve, Cold, Storage. Affected line: AixLib.Fluid.Actuators.Valves.TwoWayQuickOpening valveColdStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting cold storage to the evaporator of the heat pump" annotation (Placement( transformation( extent={{-6,7},{6,-7}}, rotation=180, origin={-52,38}))); -AixLib/Obsolete/Year2019/Fluid/HeatPumps/HeatPumpSimple.mo -1: Missing documentation, Name 'Medium' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium. Affected line: replaceable package Medium = Modelica.Media.Water.ConstantPropertyLiquidWater constrainedby Modelica.Media.Interfaces.PartialMedium; +14: Name 'valveHeatStorage' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: valve, Heat, Storage. Affected line: AixLib.Fluid.Actuators.Valves.TwoWayQuickOpening valveHeatStorage( redeclare package Medium = Medium, m_flow_nominal=0.5, dpValve_nominal=5000) "Valve connecting heat storage to the condenser of the heat pump" annotation (Placement( transformation( extent={{-6,-7},{6,7}}, rotation=90, origin={-18,-63}))); -2: Name 'port_a_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_a_source. Affected line: Modelica.Fluid.Interfaces.FluidPort_a port_a_source(redeclare package Medium = Medium) "Heat pump inlet on the source side" annotation(Placement(transformation(extent = {{-100, 60}, {-80, 80}}))); +15: Name 'pumpColdConsumer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Cold, Consumer. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpColdConsumer( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from storage tank to cold consumers" annotation (Placement(transformation(extent={{58,-27},{72,-13}}))); -3: Name 'port_b_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_b_source. Affected line: Modelica.Fluid.Interfaces.FluidPort_b port_b_source(redeclare package Medium = Medium) "Heat pump outlet on the source side" annotation(Placement(transformation(extent = {{-100, -80}, {-80, -60}}))); +16: Name 'pumpHeatConsumer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Heat, Consumer. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpHeatConsumer( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_hot) "Pump moving fluid from storage tank to heat consumers" annotation (Placement(transformation(extent={{58,-57},{72,-43}}))); -4: Name 'port_a_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_a_sink. Affected line: Modelica.Fluid.Interfaces.FluidPort_a port_a_sink(redeclare package Medium = Medium) "Heat pump inlet on the sink side" annotation(Placement(transformation(extent = {{80, -80}, {100, -60}}))); +17: Name 'resistanceColdConsumerReturn' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Cold, Consumer, Return. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceColdConsumerReturn( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in cold consumer return line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=180, origin={87,32}))); -5: Name 'port_b_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: port_b_sink. Affected line: Modelica.Fluid.Interfaces.FluidPort_b port_b_sink(redeclare package Medium = Medium) "Heat pump outlet on the sink side" annotation(Placement(transformation(extent = {{80, 60}, {100, 80}}))); +18: Name 'resistanceHeatConsumerReturn' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: resistance, Heat, Consumer, Return. Affected line: AixLib.Fluid.FixedResistances.PressureDrop resistanceHeatConsumerReturn( redeclare package Medium = Medium, m_flow_nominal=0.2, dp_nominal=10000) "Resistance in heat consumer return line" annotation (Placement(transformation( extent={{-7,-7},{7,7}}, rotation=180, origin={87,-106}))); -6: Name 'volumeEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: volume, Evaporator. Affected line: AixLib.Fluid.MixingVolumes.MixingVolume volumeEvaporator( V=VolumeEvaporator, nPorts=2, redeclare package Medium = Medium, m_flow_nominal=0.01) "Water volume of the evaporator on the source side" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=270, origin={-70,-60}))); +19: Name 'pumpCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Condenser. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpCondenser( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from storage tank to condenser of heat pump" annotation (Placement(transformation( extent={{-7,7},{7,-7}}, rotation=180, origin={-1,-98}))); -7: Name 'volumeCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: volume, Condenser. Affected line: AixLib.Fluid.MixingVolumes.MixingVolume volumeCondenser( V=VolumeCondenser, nPorts=2, redeclare package Medium = Medium, m_flow_nominal=0.01) "Water volume of the condenser on the sink side" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={70,-30}))); +20: Name 'pumpEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Evaporator. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpEvaporator( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from storage tank to evaporator of heat pump" annotation (Placement(transformation( extent={{-7,7},{7,-7}}, rotation=180, origin={7,36}))); -8: Name 'temperatureSinkOut' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: temperature, Sink. Affected line: AixLib.Fluid.Sensors.TemperatureTwoPort temperatureSinkOut(redeclare package Medium = Medium, m_flow_nominal=0.01) "Temperature sensor at outlet on the sink side" annotation (Placement( transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={80,50}))); +21: Name 'pumpGeothermalSource' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pump, Geothermal, Source. Affected line: AixLib.Fluid.Movers.FlowControlled_dp pumpGeothermalSource( energyDynamics=energyDynamics, m_flow_nominal=0.05, redeclare package Medium = Medium, addPowerToMedium=false, T_start=T_start_cold) "Pump moving fluid from geothermal source into system" annotation ( Placement(transformation( extent={{-7,-7},{7,7}}, rotation=0, origin={-89,-54}))); -9: Name 'temperatureSourceIn' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: temperature, Source. Affected line: AixLib.Fluid.Sensors.TemperatureTwoPort temperatureSourceIn(redeclare package Medium = Medium, m_flow_nominal=0.01) "Temperature sensor at inlet on the source side" annotation (Placement( transformation( extent={{-10,-10},{10,10}}, rotation=270, origin={-80,36}))); +22: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus heatPumpControlBus annotation (Placement(transformation(extent={{-21,60},{20,98}}))); -10: Name 'HeatFlowCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heat, Condenser. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow HeatFlowCondenser "Heat flow on the sink side" annotation(Placement(transformation(extent={{-4,-4}, {4,4}}, origin={48,-40}))); +23: Missing documentation, Name 'heatPump' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Pump. Affected line: AixLib.Fluid.HeatPumps.ModularReversible.Modular heatPump( redeclare package MediumCon = Medium, redeclare package MediumEva = Medium, use_rev=false, tauCon=0.005*heatPump.rhoCon/heatPump.mCon_flow_nominal, dTCon_nominal=0, tauEva=0.005*heatPump.rhoEva/heatPump.mEva_flow_nominal, dpCon_nominal=0, use_conCap=false, CCon=0, GConOut=0, GConIns=0, dTEva_nominal=0, dpEva_nominal=0, use_evaCap=false, CEva=0, GEvaOut=0, GEvaIns=0, use_intSafCtr=false, energyDynamics=energyDynamics, QHea_flow_nominal=12740, redeclare model RefrigerantCycleHeatPumpHeating = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.TableData2D ( redeclare AixLib.Fluid.HeatPumps.ModularReversible.Data.TableData2D.EN255.Vitocal350BWH110 datTab), redeclare model RefrigerantCycleHeatPumpCooling = AixLib.Fluid.Chillers.ModularReversible.RefrigerantCycle.BaseClasses.NoCooling, mCon_flow_nominal=0.5, mEva_flow_nominal=0.5, TConHea_nominal=318.15, TEvaHea_nominal=273.15, TConCoo_nominal=273.15, TEvaCoo_nominal=273.15, use_busConOnl=true) annotation ( Placement(transformation( extent={{-10,10},{10,-10}}, rotation=90, origin={-30,10}))); -11: Name 'HeatFlowEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heat, Evaporator. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow HeatFlowEvaporator "Heat flow on the source side" annotation(Placement(transformation(extent={{4,-4},{ -4,4}}, origin={-46,-50}))); -12: Name 'PowerTable' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Power, Table. Affected line: Modelica.Blocks.Tables.CombiTable2Ds PowerTable(table=tablePower) "Calculates electric power based on temperature in source and sink" annotation (Placement(transformation(extent={{-52,20},{-32,40}}))); +AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpControlledBase.mo +1: Name 'getTStorageUpper' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Storage, Upper. Affected line: Modelica.Blocks.Sources.RealExpression getTStorageUpper(y=heatStorage.layer[ heatStorage.n].T) "Gets the temperature of upper heat storage layer" annotation (Placement(transformation(extent={{-160,58},{-140,78}}))); -13: Name 'HeatFlowCondenserTable' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heat, Condenser, Table. Affected line: Modelica.Blocks.Tables.CombiTable2Ds HeatFlowCondenserTable(table= tableHeatFlowCondenser) "Calculates heat flow based on temperature in source and sink" annotation (Placement(transformation(extent={{-52,-12},{-32,8}}))); +2: Name 'getTStorageLower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Storage, Lower. Affected line: Modelica.Blocks.Sources.RealExpression getTStorageLower(y=coldStorage.layer[1].T) "Gets the temperature of lower cold storage layer" annotation (Placement(transformation(extent={{-160,42},{-140,62}}))); -14: Name 'SwitchHeatFlowCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Switch, Heat, Condenser. Affected line: Modelica.Blocks.Logical.Switch SwitchHeatFlowCondenser "Switch to deactivate heat flow when off" annotation(Placement(transformation(extent = {{14, -20}, {34, 0}}))); +3: Name 'coldStorageTemperature' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: cold, Storage, Temperature. Affected line: Modelica.Blocks.Interfaces.RealOutput coldStorageTemperature( final quantity="ThermodynamicTemperature", final unit="K", displayUnit="degC", min=0, start=T_start_cold) "Temperature in the cold storage" annotation ( Placement(transformation( origin={-134,-120}, extent={{10,-10},{-10,10}}, rotation=90), iconTransformation( extent={{10,-10},{-10,10}}, rotation=90, origin={-100,-110}))); -15: Name 'constZero2' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Zero. Affected line: Modelica.Blocks.Sources.Constant constZero2(k = 0) "Zero heat flow, when heat pump off" annotation(Placement(transformation(extent = {{-26, -28}, {-6, -8}}))); +4: Name 'heatStorageTemperature' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Storage, Temperature. Affected line: Modelica.Blocks.Interfaces.RealOutput heatStorageTemperature( final quantity="ThermodynamicTemperature", final unit="K", displayUnit="degC", min=0, start=T_start_hot) "Temperature in the heat storage" annotation (Placement( transformation( origin={-100,-120}, extent={{10,-10},{-10,10}}, rotation=90), iconTransformation( extent={{10,-10},{-10,10}}, rotation=90, origin={-140,-110}))); -16: Name 'SwitchPower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Switch, Power. Affected line: Modelica.Blocks.Logical.Switch SwitchPower "Switch to deactivate Power when off" annotation(Placement(transformation(extent = {{14, 12}, {34, 32}}))); +5: Name 'chemicalEnergyFlowRate' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: chemical, Energy, Rate. Affected line: Modelica.Blocks.Interfaces.RealOutput chemicalEnergyFlowRate(final unit="W") "Flow of primary (chemical) energy into boiler " annotation (Placement( transformation( extent={{-10,10},{10,-10}}, rotation=270, origin={-71.5,-119.5}), iconTransformation(extent={{10,-10},{-10,10}}, rotation=90, origin={-20.5,-109}))); -17: Name 'constZero1' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Zero. Affected line: Modelica.Blocks.Sources.Constant constZero1(k = 0) "Zero power, when heat pump off" annotation(Placement(transformation(extent = {{-26, 4}, {-6, 24}}))); +6: Name 'heatPumpPower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Pump, Power. Affected line: Modelica.Blocks.Interfaces.RealOutput heatPumpPower(final unit="W") "Electrical power of the heat pump" annotation (Placement(transformation( extent={{-10,10},{10,-10}}, rotation=270, origin={-45.5,-119.5}), iconTransformation(extent={{10,-10},{-10,10}}, rotation=90, origin={-60.5,-109}))); -18: Name 'feedbackHeatFlowEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: feedback, Heat, Evaporator. Affected line: Modelica.Blocks.Math.Feedback feedbackHeatFlowEvaporator "Calculates evaporator heat flow with total energy balance" annotation(Placement(transformation(extent = {{10, -60}, {-10, -40}}))); +7: Missing documentation, Name 'system' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: system. Affected line: inner Modelica.Fluid.System system annotation (Placement(transformation(extent={{140,60},{160,80}}))); -19: Name 'Power' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Power. Affected line: Modelica.Blocks.Interfaces.RealOutput Power "Connector of Real output signal" annotation(Placement(transformation(extent = {{-10, -10}, {10, 10}}, rotation = 270, origin = {0, -90}))); -20: Name 'VolumeEvaporator' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Volume, Evaporator. Affected line: parameter Modelica.Units.SI.Volume VolumeEvaporator=0.01 "Volume im m3"; +AixLib/Fluid/HeatPumps/ModularReversible/BaseClasses/PartialReversibleRefrigerantMachine.mo +1: Name 'MediumEva' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium. Affected line: replaceable package MediumEva = Modelica.Media.Interfaces.PartialMedium "Medium on evaporator side" annotation (choicesAllMatching=true); -21: Name 'VolumeCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Volume, Condenser. Affected line: parameter Modelica.Units.SI.Volume VolumeCondenser=0.01 "Volume im m3"; +2: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: replaceable PartialModularRefrigerantCycle refCyc constrainedby PartialModularRefrigerantCycle(final use_rev=use_rev) "Model of the refrigerant cycle" annotation (Placement(transformation( extent={{-18,-18},{18,18}}, rotation=90))); -22: Name 'tablePower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: table, Power. Affected line: parameter Real tablePower[:, :] = fill(0.0, 0, 2) "Table matrix (grid u1 = first column, grid u2 = first row; e.g., table=[0,0;0,1])"; +3: Name 'RefrigerantCycleInertia' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Refrigerant, Cycle, Inertia. Affected line: replaceable model RefrigerantCycleInertia = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.Inertias.NoInertia constrainedby AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.Inertias.BaseClasses.PartialInertia "Inertia between the refrigerant cycle outputs and the heat exchangers." annotation (choicesAllMatching=true, Dialog(group="Inertia")); -23: Name 'tableHeatFlowCondenser' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: table, Heat, Condenser. Affected line: parameter Real tableHeatFlowCondenser[:, :] = fill(0.0, 0, 2) "Table matrix (grid u1 = first column, grid u2 = first row; e.g., table=[0,0;0,1])"; +4: Name 'allowDifferentDeviceIdentifiers' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: allow, Different, Device, Identifiers. Affected line: parameter Boolean allowDifferentDeviceIdentifiers=false "if use_rev=true, device data for cooling and heating need to entered. Set allowDifferentDeviceIdentifiers=true to allow different device identifiers devIde" annotation(Dialog(tab="Advanced", enable=use_rev)); -24: Missing documentation. Affected line: Modelica.Blocks.Math.Gain gain(k=-1) annotation(Placement(transformation(extent = {{-18, -60}, {-38, -40}}))); +5: Name 'GConOut' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GConOut=0 "Outer thermal conductance for condenser heat loss calculations" annotation (Dialog( group="Heat Losses", tab="Condenser", enable=use_conCap)); +6: Name 'GConIns' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GConIns=0 "Inner thermal conductance for condenser heat loss calculations" annotation (Dialog( group="Heat Losses", tab="Condenser", enable=use_conCap)); -AixLib/Fluid/HeatPumps/ModularReversible/Examples/BaseClasses/OneRoomRadiatorHeatPumpControl.mo -1: Name 'swiHeaCooYSet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Y. Affected line: Modelica.Blocks.Logical.Switch swiHeaCooYSet if witCoo "Switch ySet for heating and cooling" annotation (Placement(transformation( extent={{-10,10},{10,-10}}, origin={30,70}, rotation=0))); +7: Name 'GEvaOut' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GEvaOut=0 "Outer thermal conductance for evaporator heat loss calculations" annotation ( Dialog( group="Heat Losses", tab="Evaporator", enable=use_evaCap)); -2: Name 'constYSetZer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Y. Affected line: Modelica.Blocks.Sources.Constant constYSetZer(final k=0) "ySet equals zero" annotation (Placement(transformation(extent={{-10,-10},{10,10}}, rotation=0, origin={30,-18}))); +8: Name 'GEvaIns' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GEvaIns=0 "Inner thermal conductance for evaporator heat loss calculations" annotation ( Dialog( group="Heat Losses", tab="Evaporator", enable=use_evaCap)); -3: Name 'swiYSet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Y. Affected line: Modelica.Blocks.Logical.Switch swiYSet "If no demand, switch heat pump off" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=0, origin={70,50}))); +9: Name 'allowFlowReversalCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: allow, Reversal. Affected line: parameter Boolean allowFlowReversalCon=true "= false to simplify equations, assuming, but not enforcing, no flow reversal" annotation (Dialog(group="Condenser", tab="Assumptions")); + +10: Name 'Q1_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Q1. Affected line: Modelica.Units.SI.HeatFlowRate Q1_flow = QCon_flow "Heat transferred into the medium 1"; + +11: Name 'Q2_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Q2. Affected line: Modelica.Units.SI.HeatFlowRate Q2_flow = QEva_flow "Heat transferred into the medium 2"; + +12: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: RefrigerantCycleInertia refCycIneCon "Inertia model for condenser side" annotation(Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={0,50})));RefrigerantCycleInertia refCycIneEva "Inertia model for evaporator side" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=270, origin={0,-50}))); AixLib/Obsolete/Year2019/Fluid/HeatPumps/HeatPumpDetailed.mo @@ -531,10 +553,94 @@ AixLib/Obsolete/YearIndependent/FastHVAC/Components/HeatGenerators/HeatPump/Heat 42: Missing documentation, Name 'VCon_final' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Con_final. Affected line: parameter Modelica.Units.SI.Volume VCon_final=if use_autoCalc then autoCalc_VCon else VCon; -AixLib/Obsolete/Year2024/Fluid/HeatPumps/HeatPump.mo -1: Name 'PerDataMainHP' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Data, Main. Affected line: replaceable model PerDataMainHP = AixLib.Obsolete.Year2024.DataBase.HeatPump.PerformanceData.BaseClasses.PartialPerformanceData "Performance data of a heat pump in main operation mode" annotation (choicesAllMatching=true); +AixLib/Fluid/HeatPumps/ModularReversible/Data/TableDataSDF/GenericHeatPump.mo +1: Name 'datasetQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dataset. Affected line: parameter String datasetQCon_flow "Dataset name for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); -2: Name 'PerDataRevHP' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Data. Affected line: replaceable model PerDataRevHP = AixLib.Obsolete.Year2024.DataBase.Chiller.PerformanceData.BaseClasses.PartialPerformanceData "Performance data of a heat pump in reversible operation mode" annotation (Dialog(enable=use_rev),choicesAllMatching=true); +2: Name 'dataUnitQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: data, Unit. Affected line: parameter String dataUnitQCon_flow "Data unit for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); + +3: Name 'scaleUnitsQCon_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: scale, Units. Affected line: parameter String scaleUnitsQCon_flow[nDim] "Scale units for useful heat flow rate" annotation (Dialog(group="Condenser heat flow")); + + +AixLib/Fluid/HeatPumps/ModularReversible/Data/TableDataSDF/Generic.mo +1: Name 'filename' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: filename. Affected line: parameter String filename "File name of sdf table data" annotation (Dialog(loadSelector(filter="SDF Files (*.sdf);;All Files (*.*)", caption="Select SDF file"))); + +2: Name 'datasetPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dataset. Affected line: parameter String datasetPEle "Dataset name for electrical power" annotation (Dialog(group="Electrical Power")); + +3: Name 'dataUnitPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: data, Unit. Affected line: parameter String dataUnitPEle "Data unit for electrical power" annotation (Dialog(group="Electrical Power")); + +4: Name 'scaleUnitsPEle' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: scale, Units. Affected line: parameter String scaleUnitsPEle[nDim] "Scale units for electrical power" annotation (Dialog(group="Electrical Power")); + + +AixLib/Controls/HeatPump/HPControl.mo +1: Missing documentation, Name 'HeatingCurveFunction' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating, Curve, Function. Affected line: replaceable function HeatingCurveFunction = SetPoints.Functions.HeatingCurveFunction constrainedby SetPoints.Functions.PartialBaseFct annotation (Dialog(group="Heating Curve - Data", enable = not use_tableData),choicesAllMatching=true); + +2: Name 'heatingCurveRecord' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heating, Curve, Record. Affected line: parameter AixLib.DataBase.Boiler.DayNightMode.HeatingCurvesDayNightBaseDataDefinition heatingCurveRecord= AixLib.DataBase.Boiler.DayNightMode.HeatingCurves_Vitotronic_Day25_Night10() "Record with information about heating curve data" annotation (Dialog(group="Heating Curve - Data", enable = use_tableData),choicesAllMatching=true); + +3: Name 'declination' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: declination. Affected line: parameter Real declination=2 "Declination of curve" annotation (Dialog(group="Heating Curve - Data", enable = use_tableData)); + +4: Name 'day_hour' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: day_hour. Affected line: parameter Real day_hour=6 "Hour of day at which day mode is enabled" annotation (Dialog(group="Heating Curve - Night mode")); + +5: Name 'night_hour' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: night_hour. Affected line: parameter Real night_hour=22 "Hour of day at which night mode is enabled" annotation (Dialog(group="Heating Curve - Night mode")); + +6: Name 'weekly' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: weekly. Affected line: parameter Boolean weekly=true "Switch between a daily or weekly trigger approach" annotation(Dialog(tab="Anti Legionella",descriptionLabel=true), choices(choice=true "Weekly", choice=false "Daily", radioButtons=true)); + +7: Name 'trigWeekDay' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: trig, Week. Affected line: parameter Integer trigWeekDay "Day of the week at which control is triggered" annotation (Dialog(tab="Anti Legionella", enable=use_antLeg and weekly)); + +8: Name 'trigHour' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: trig, Hour. Affected line: parameter Integer trigHour=3 "Hour of the day at which control is triggered" annotation (Dialog(tab="Anti Legionella", enable=use_antLeg)); + +9: Missing documentation, Name 'antiLegionella' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: anti, Legionella. Affected line: AixLib.Controls.HeatPump.AntiLegionella antiLegionella( final TLegMin=TLegMin, minTimeAntLeg=minTimeAntLeg, trigWeekDay=trigWeekDay, trigHour=trigHour, yearRef=2017, final zerTim=zerTim) if use_antLeg annotation (Placement(transformation(extent={{-26,-14},{14,26}}))); + +10: Missing documentation. Affected line: AixLib.Fluid.HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus sigBusHP annotation (Placement(transformation(extent={{-116,-72},{-88,-44}}))); + +11: Name 'T_oda' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_oda. Affected line: Modelica.Blocks.Interfaces.RealInput T_oda "Outdoor air temperature" annotation (Placement(transformation(extent={{-128,-14},{-100,14}}), iconTransformation(extent={{-140,-26},{-100,14}}))); + +12: Missing documentation, Name 'y_sou' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: y_sou. Affected line: Modelica.Blocks.Interfaces.RealOutput y_sou annotation (Placement(transformation(extent={{14,-14},{-14,14}}, rotation=90, origin={-60,-114}))); + +13: Missing documentation, Name 'y_sin' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: y_sin. Affected line: Modelica.Blocks.Interfaces.RealOutput y_sin annotation (Placement(transformation( extent={{14,-14},{-14,14}}, rotation=90, origin={60,-114}))); + +14: Name 'constHeating1' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Sources.Constant constHeating1(final k=1) "If you want to include chilling, please insert control blocks first" annotation (Placement(transformation(extent={{10,-10},{-10,10}}, rotation=90, origin={-12,-72}))); + +15: Missing documentation, Name 'heatCurve' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Curve. Affected line: AixLib.Controls.SetPoints.HeatingCurve heatCurve( final TOffset=0, final use_dynTRoom=false, final zerTim=zerTim, final day_hour=day_hour, final night_hour=night_hour, final heatingCurveRecord=heatingCurveRecord, final declination=declination, redeclare function HeatingCurveFunction = HeatingCurveFunction, use_tableData=use_tableData, final TRoom_nominal=293.15) annotation (Placement(transformation(extent={{-74,10},{-54,30}}))); + +16: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: TSetToNSet ConvTSetToNSet annotation (Placement(transformation(extent={{44,-8},{76,26}}))); + +17: Name 'realPasThrAntLeg' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: real. Affected line: Modelica.Blocks.Routing.RealPassThrough realPasThrAntLeg if not use_antLeg "No Anti Legionella" annotation ( choicesAllMatching=true, Placement( transformation(extent={{-10,38},{6,54}}))); + +18: Name 'constHeating' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Sources.BooleanConstant constHeating(final k=true) "If you want to include chilling, please insert control blocks first" annotation (Placement(transformation(extent={{82,-26},{94,-14}}))); + + +AixLib/Obsolete/YearIndependent/FastHVAC/Examples/HeatGenerators/HeatPump/HeatPump.mo +1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sensors.TemperatureSensor temperatureSensor annotation (Placement(transformation(extent={{48,-70},{66,-52}})));FastHVAC.Components.Pumps.FluidSource fluidSource(medium= FastHVAC.Media.WaterSimple()) "Fluidsource for source" annotation (Placement(transformation(extent={{-50,-44},{-30,-24}}))); + +2: Documentation too short, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.HeatGenerators.HeatPump.HeatPump heatPump( refIneFre_constant=1, Medium_con=Media.WaterSimple(), Medium_eva=Media.WaterSimple(), mFlow_conNominal=0.5, VCon=0.4, deltaM_con=0.1, use_ConCap=false, CCon=100, GCon=5, mFlow_evaNominal=0.5, VEva=0.04, deltaM_eva=0.1, use_EvaCap=false, CEva=100, GEva=5, allowFlowReversalEva=true, use_revHP=true, TCon_start(displayUnit="K"), TEva_start(displayUnit="K"), redeclare model PerDataHea = AixLib.Obsolete.Year2024.DataBase.HeatPump.PerformanceData.LookUpTable2D ( dataTable=AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511.Vitocal200AWO201()), redeclare model PerDataChi = AixLib.Obsolete.Year2024.DataBase.Chiller.PerformanceData.LookUpTable2D ( dataTable=AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511.Vitocal200AWO201()), Q_useNominal=0, use_autoCalc=false, TAmbCon_nominal=288.15) annotation (Placement(transformation( extent={{-13,-16},{13,16}}, rotation=-90, origin={3,-2}))); + +3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sinks.Vessel vessel_ev "vessel for open evaporator circuit" annotation (Placement( transformation( extent={{-11,-9},{11,9}}, rotation=180, origin={-35,57}))); + +4: Name 'dotm_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_source. Affected line: Modelica.Blocks.Sources.Constant dotm_source(k=1) "Source mass flow signal" annotation (Placement(transformation(extent={{-98,-82},{-78,-62}}))); + +5: Name 'dotm_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_sink. Affected line: Modelica.Blocks.Sources.Constant dotm_sink(k=0.106) "sink mass flow signal" annotation (Placement( transformation( extent={{-4,-4},{4,4}}, rotation=270, origin={36,38}))); + +6: Name 'T_amb_internal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_amb. Affected line: Modelica.Blocks.Sources.Constant T_amb_internal(k=291.15) "Constant internal ambient temeprature" annotation (Placement(transformation(extent={{7,-7},{-7,7}}, rotation=-90, origin={3,-35}))); + +7: Name 'booleanToReal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Real. Affected line: Modelica.Blocks.Math.BooleanToReal booleanToReal "on off control " annotation (Placement(transformation(extent={{4,4},{-4,-4}}, rotation=90, origin={6,40}))); + +8: Name 'TsuSourceRamp' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Source, Ramp. Affected line: Modelica.Blocks.Sources.Ramp TsuSourceRamp( duration=1000, startTime=1000, height=25, offset=278) "Ramp signal for the temperature input of the source side's ideal mass flow source" annotation (Placement(transformation(extent={{-96,-34},{-76,-14}}))); + +9: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: BaseClasses.WorkingFluid Room(m_fluid=5*1000, T0=293.15) "Volume" annotation ( Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={90,-26}))); + +10: Name 'heatFlowRateCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Rate. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow heatFlowRateCon "Heat flow rate of the condenser" annotation (Placement(transformation( extent={{-6,6},{6,-6}}, rotation=270, origin={52,-18}))); + +11: Name 'sine' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sine. Affected line: Modelica.Blocks.Sources.Sine sine( f=1/3600, amplitude=3000, offset=3000) "hourly sine " annotation (Placement(transformation(extent={{66,8},{58,16}}))); + +12: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.Pumps.Pump pump "sink pump" annotation (Placement(transformation( extent={{10,-10},{-10,10}}, rotation=0, origin={36,20}))); + +13: Missing documentation, Name 'booleanStep' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Step. Affected line: Modelica.Blocks.Sources.BooleanStep booleanStep(startTime=10000, startValue=true) annotation (Placement(transformation(extent={{-6,-6},{6,6}}, rotation=270, origin={0,78}))); + +14: Missing documentation, Name 'hysHeating' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Logical.Hysteresis hysHeating( pre_y_start=true, uLow=273.15 + 30, uHigh=273.15 + 35) annotation (Placement(transformation(extent={{66,58},{56,68}}))); + +15: Missing documentation, Name 'logicalSwitch' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: logical, Switch. Affected line: Modelica.Blocks.Logical.LogicalSwitch logicalSwitch annotation (Placement(transformation(extent={{26,50},{16,60}}))); + +16: Missing documentation, Name 'hysCooling' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Cooling. Affected line: Modelica.Blocks.Logical.Hysteresis hysCooling( pre_y_start=false, uLow=273.15 + 15, uHigh=273.15 + 19) annotation (Placement(transformation(extent={{58,42},{48,52}}))); AixLib/Obsolete/Year2019/Fluid/HeatPumps/BaseClasses/CycleHP.mo @@ -675,153 +781,29 @@ AixLib/Obsolete/Year2019/Fluid/HeatPumps/BaseClasses/CycleHP.mo 68: Missing documentation, Name 'PIDmaxHeatFlowCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heat. Affected line: Modelica.Blocks.Continuous.LimPID PIDmaxHeatFlowCon( controllerType=Modelica.Blocks.Types.SimpleController.PI, Ti=1, yMax=1, yMin=0, y_start=1) annotation (Placement(transformation(extent={{46,52},{66,72}}))); -AixLib/Obsolete/YearIndependent/FastHVAC/Examples/Chiller/Chiller.mo -1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sensors.TemperatureSensor temperatureSensor annotation (Placement(transformation(extent={{52,-38},{66,-52}})));FastHVAC.Components.Pumps.FluidSource fluidSource(medium= FastHVAC.Media.WaterSimple()) "Fluidsource for sink" annotation (Placement(transformation(extent={{-50,-44},{-30,-24}}))); - -2: Documentation too short, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.Chiller.Chiller chiller( use_revChi=true, redeclare model PerDataMainChi = AixLib.Obsolete.Year2024.DataBase.Chiller.PerformanceData.LookUpTable2D ( dataTable=AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511.Vitocal200AWO201()), redeclare model PerDataRevChi = AixLib.Obsolete.Year2024.DataBase.HeatPump.PerformanceData.LookUpTable2D ( smoothness=Modelica.Blocks.Types.Smoothness.LinearSegments, dataTable= AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511.Vitocal200AWO201()), Q_useNominal=0, use_autoCalc=false, refIneFre_constant=1, Medium_con=Media.WaterSimple(), Medium_eva=Media.WaterSimple(), mFlow_conNominal=0.5, VCon=0.04, deltaM_con=0.1, use_ConCap=false, CCon=100, GCon=5, mFlow_evaNominal=0.5, VEva=0.4, deltaM_eva=0.1, use_EvaCap=false, CEva=100, GEva=5, allowFlowReversalEva=true, TCon_start(displayUnit="K"), TEva_start(displayUnit="K"), TAmbCon_nominal=273.15, TAmbEva_nominal=288.15) annotation (Placement(transformation( extent={{-13,-16},{13,16}}, rotation=90, origin={3,-2}))); - -3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: FastHVAC.Components.Sinks.Vessel vessel_ev "vessel for open evaporator circuit" annotation (Placement( transformation( extent={{-11,-9},{11,9}}, rotation=180, origin={-35,57}))); - -4: Name 'dotm_sink' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_sink. Affected line: Modelica.Blocks.Sources.Constant dotm_sink(k=1) "Sink mass flow signal" annotation (Placement(transformation(extent={{-98,-82},{-78,-62}}))); - -5: Name 'dotm_source' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: dotm_source. Affected line: Modelica.Blocks.Sources.Constant dotm_source(k=0.106) "source mass flow signal" annotation (Placement(transformation( extent={{-5,5},{5,-5}}, rotation=180, origin={73,77}))); - -6: Name 'T_amb_internal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_amb. Affected line: Modelica.Blocks.Sources.Constant T_amb_internal(k=291.15) "Constant internal ambient temeprature" annotation (Placement(transformation(extent={{-7,-7},{7,7}}, rotation=-90, origin={3,33}))); - -7: Name 'TsuSinkRamp' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Sink, Ramp. Affected line: Modelica.Blocks.Sources.Ramp TsuSinkRamp( duration=1000, startTime=1000, height=25, offset=278) "Ramp signal for the temperature input of the sink side's ideal mass flow source" annotation (Placement(transformation(extent={{-96,-34},{-76,-14}}))); - -8: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: BaseClasses.WorkingFluid Room(m_fluid=5*1000, T0=293.15) "Volume" annotation ( Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={90,-26}))); - -9: Name 'heatFlowRateCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Rate. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow heatFlowRateCon "Heat flow rate of the condenser" annotation (Placement(transformation( extent={{-6,6},{6,-6}}, rotation=270, origin={52,-18}))); - -10: Name 'sine' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sine. Affected line: Modelica.Blocks.Sources.Sine sine( f=1/3600, amplitude=500, phase=3.1415926535898, offset=500) "hourly sine " annotation (Placement(transformation(extent={{66,8},{58,16}}))); - -11: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Components.Pumps.Pump pump "source pump" annotation (Placement(transformation( extent={{10,-10},{-10,10}}, rotation=0, origin={36,20}))); - -12: Missing documentation, Name 'booleanToReal' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Real. Affected line: Modelica.Blocks.Math.BooleanToReal booleanToReal annotation (Placement(transformation(extent={{7,-7},{-7,7}}, rotation=270, origin={-3,-53}))); - -13: Missing documentation, Name 'hysCooling' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Cooling. Affected line: Modelica.Blocks.Logical.Hysteresis hysCooling( pre_y_start=false, uHigh=273.15 + 17, uLow=273.15 + 14) annotation (Placement(transformation(extent={{46,-98},{34,-86}}))); - -14: Missing documentation, Name 'booleanStep' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Step. Affected line: Modelica.Blocks.Sources.BooleanStep booleanStep( startValue=true, startTime=15000) annotation (Placement(transformation(extent={{8,-8},{-8,8}}, rotation=0, origin={32,-54}))); - -15: Missing documentation, Name 'hysHeating' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Heating. Affected line: Modelica.Blocks.Logical.Hysteresis hysHeating( pre_y_start=true, uLow=273.15 + 25, uHigh=273.15 + 30) annotation (Placement(transformation(extent={{46,-82},{34,-70}}))); - -16: Missing documentation, Name 'logicalSwitch' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: logical, Switch. Affected line: Modelica.Blocks.Logical.LogicalSwitch logicalSwitch annotation (Placement(transformation(extent={{10,-78},{0,-88}}))); - - -AixLib/Controls/HeatPump/BaseClasses/PartialTSetToNSet.mo -1: Name 'T_heaLim' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: T_hea. Affected line: parameter Modelica.Units.SI.Temperature T_heaLim=293.15 "Heating limit temperature. If the filtered outdoor air temperature surpasses this threshold, the device will be shut down" annotation(Dialog(group= "Heating limit temperature", enable=use_heaLim)); - -2: Name 'swiNullHP' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Null. Affected line: Modelica.Blocks.Logical.Switch swiNullHP "If HP is off, zero is passed" annotation (Placement(transformation(extent={{60,-20},{80,0}}))); - -3: Missing documentation. Affected line: AixLib.Fluid.HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus sigBusHP annotation (Placement(transformation(extent={{-124,-46},{-90,-16}}))); - -4: Name 'swiNullsecHeaGen' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Nullsec. Affected line: AixLib.Utilities.Logical.SmoothSwitch swiNullsecHeaGen if use_secHeaGen "If second heater is off, zero is passed" annotation (Placement( transformation( extent={{10,-10},{-10,10}}, rotation=90, origin={0,-70}))); - -5: Missing documentation, Name 'lessThreshold' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: less, Threshold. Affected line: Modelica.Blocks.Logical.LessThreshold lessThreshold(final threshold= T_heaLim) if use_heaLim annotation (Placement(transformation(extent={{-60,-40},{-40,-20}}))); - -6: Missing documentation, Name 'booleanConstant' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: boolean, Constant. Affected line: Modelica.Blocks.Sources.BooleanConstant booleanConstant(final k=true) if not use_heaLim annotation (Placement(transformation(extent={{-60,-80},{-40,-60}}))); - - -AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpControlledBase.mo -1: Name 'getTStorageUpper' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Storage, Upper. Affected line: Modelica.Blocks.Sources.RealExpression getTStorageUpper(y=heatStorage.layer[ heatStorage.n].T) "Gets the temperature of upper heat storage layer" annotation (Placement(transformation(extent={{-160,58},{-140,78}}))); - -2: Name 'getTStorageLower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Storage, Lower. Affected line: Modelica.Blocks.Sources.RealExpression getTStorageLower(y=coldStorage.layer[1].T) "Gets the temperature of lower cold storage layer" annotation (Placement(transformation(extent={{-160,42},{-140,62}}))); - -3: Name 'coldStorageTemperature' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: cold, Storage, Temperature. Affected line: Modelica.Blocks.Interfaces.RealOutput coldStorageTemperature( final quantity="ThermodynamicTemperature", final unit="K", displayUnit="degC", min=0, start=T_start_cold) "Temperature in the cold storage" annotation ( Placement(transformation( origin={-134,-120}, extent={{10,-10},{-10,10}}, rotation=90), iconTransformation( extent={{10,-10},{-10,10}}, rotation=90, origin={-100,-110}))); - -4: Name 'heatStorageTemperature' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Storage, Temperature. Affected line: Modelica.Blocks.Interfaces.RealOutput heatStorageTemperature( final quantity="ThermodynamicTemperature", final unit="K", displayUnit="degC", min=0, start=T_start_hot) "Temperature in the heat storage" annotation (Placement( transformation( origin={-100,-120}, extent={{10,-10},{-10,10}}, rotation=90), iconTransformation( extent={{10,-10},{-10,10}}, rotation=90, origin={-140,-110}))); - -5: Name 'chemicalEnergyFlowRate' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: chemical, Energy, Rate. Affected line: Modelica.Blocks.Interfaces.RealOutput chemicalEnergyFlowRate(final unit="W") "Flow of primary (chemical) energy into boiler " annotation (Placement( transformation( extent={{-10,10},{10,-10}}, rotation=270, origin={-71.5,-119.5}), iconTransformation(extent={{10,-10},{-10,10}}, rotation=90, origin={-20.5,-109}))); - -6: Name 'heatPumpPower' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Pump, Power. Affected line: Modelica.Blocks.Interfaces.RealOutput heatPumpPower(final unit="W") "Electrical power of the heat pump" annotation (Placement(transformation( extent={{-10,10},{10,-10}}, rotation=270, origin={-45.5,-119.5}), iconTransformation(extent={{10,-10},{-10,10}}, rotation=90, origin={-60.5,-109}))); - -7: Missing documentation, Name 'system' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: system. Affected line: inner Modelica.Fluid.System system annotation (Placement(transformation(extent={{140,60},{160,80}}))); - - -AixLib/Fluid/HeatPumps/ModularReversible/Data/TableDataSDF/TableData3D/VCLibPy/Generic.mo -1: Name 'flowsheet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: flowsheet. Affected line: parameter String flowsheet "Name of the flowsheet"; - -2: Name 'refrigerant' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: refrigerant. Affected line: parameter String refrigerant "Name of the fluid"; - - -AixLib/Controls/HeatPump/DefrostControl.mo -1: Name 'deltaIceFac' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: delta. Affected line: parameter Real deltaIceFac = 0.1 "Bandwitdth for hystereses. If the icing factor is based on the duration of defrost, this value is necessary to avoid state-events."; - -2: Missing documentation. Affected line: Modelica.Blocks.Interfaces.BooleanInput hea annotation (Placement(transformation(extent={{-132,-36},{-100,-4}}))); - -3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Utilities.Logical.SmoothSwitch swiErr "If an error occurs, the value of the conZero block will be used(0)" annotation (Placement(transformation(extent={{58,2},{78,22}}))); - -4: Missing documentation. Affected line: Modelica.Blocks.Interfaces.BooleanOutput heaOut annotation (Placement(transformation(extent={{100,-30},{120,-10}}))); - -5: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Fluid.HeatPumps.ModularReversible.BaseClasses.RefrigerantMachineControlBus sigBus annotation (Placement(transformation(extent={{-120,-76},{-92,-48}}))); - -6: Name 'logicalSwitch' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: logical, Switch. Affected line: Modelica.Blocks.Logical.LogicalSwitch logicalSwitch "If a chiller is used to defrost, mode will be false" annotation (Placement(transformation(extent={{58,-42},{78,-22}}))); - -7: Name 'conTrueUseChi' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: True. Affected line: Modelica.Blocks.Sources.BooleanConstant conTrueUseChi(final k=false) "Set mode to false to simulate the defrost cycle" annotation (Placement(transformation(extent={{20,-80},{40,-60}}))); - - -AixLib/Fluid/HeatPumps/ModularReversible/BaseClasses/PartialReversibleRefrigerantMachine.mo -1: Name 'MediumEva' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium. Affected line: replaceable package MediumEva = Modelica.Media.Interfaces.PartialMedium "Medium on evaporator side" annotation (choicesAllMatching=true); - -2: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: replaceable PartialModularRefrigerantCycle refCyc constrainedby PartialModularRefrigerantCycle(final use_rev=use_rev) "Model of the refrigerant cycle" annotation (Placement(transformation( extent={{-18,-18},{18,18}}, rotation=90))); - -3: Name 'RefrigerantCycleInertia' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Refrigerant, Cycle, Inertia. Affected line: replaceable model RefrigerantCycleInertia = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.Inertias.NoInertia constrainedby AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.Inertias.BaseClasses.PartialInertia "Inertia between the refrigerant cycle outputs and the heat exchangers." annotation (choicesAllMatching=true, Dialog(group="Inertia")); - -4: Name 'allowDifferentDeviceIdentifiers' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: allow, Different, Device, Identifiers. Affected line: parameter Boolean allowDifferentDeviceIdentifiers=false "if use_rev=true, device data for cooling and heating need to entered. Set allowDifferentDeviceIdentifiers=true to allow different device identifiers devIde" annotation(Dialog(tab="Advanced", enable=use_rev)); - -5: Name 'GConOut' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GConOut=0 "Outer thermal conductance for condenser heat loss calculations" annotation (Dialog( group="Heat Losses", tab="Condenser", enable=use_conCap)); - -6: Name 'GConIns' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GConIns=0 "Inner thermal conductance for condenser heat loss calculations" annotation (Dialog( group="Heat Losses", tab="Condenser", enable=use_conCap)); - -7: Name 'GEvaOut' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GEvaOut=0 "Outer thermal conductance for evaporator heat loss calculations" annotation ( Dialog( group="Heat Losses", tab="Evaporator", enable=use_evaCap)); - -8: Name 'GEvaIns' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: G. Affected line: parameter Modelica.Units.SI.ThermalConductance GEvaIns=0 "Inner thermal conductance for evaporator heat loss calculations" annotation ( Dialog( group="Heat Losses", tab="Evaporator", enable=use_evaCap)); - -9: Name 'allowFlowReversalCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: allow, Reversal. Affected line: parameter Boolean allowFlowReversalCon=true "= false to simplify equations, assuming, but not enforcing, no flow reversal" annotation (Dialog(group="Condenser", tab="Assumptions")); - -10: Name 'Q1_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Q1. Affected line: Modelica.Units.SI.HeatFlowRate Q1_flow = QCon_flow "Heat transferred into the medium 1"; - -11: Name 'Q2_flow' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Q2. Affected line: Modelica.Units.SI.HeatFlowRate Q2_flow = QEva_flow "Heat transferred into the medium 2"; - -12: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: RefrigerantCycleInertia refCycIneCon "Inertia model for condenser side" annotation(Placement(transformation( extent={{-10,-10},{10,10}}, rotation=90, origin={0,50})));RefrigerantCycleInertia refCycIneEva "Inertia model for evaporator side" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=270, origin={0,-50}))); - - -AixLib/Fluid/Examples/GeothermalHeatPump/GeothermalHeatPump.mo -1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Sources.Boundary_pT coldConsumerFlow(redeclare package Medium = Medium, nPorts=1) annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,-20})));Sources.Boundary_pT heatConsumerFlow(redeclare package Medium = Medium, nPorts=1) "Sink representing heat consumer" annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,-50})));Sources.Boundary_pT heatConsumerReturn(redeclare package Medium = Medium, nPorts=1, T=303.15) "Source representing heat consumer" annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,-106})));Sources.Boundary_pT coldConsumerReturn(redeclare package Medium = Medium, nPorts=1, T=287.15) "Source representing cold consumer" annotation (Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,32}))); - -2: Name 'pressureDifference' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: pressure, Difference. Affected line: Modelica.Blocks.Sources.Constant pressureDifference(k=60000) "Pressure difference used for all pumps" annotation ( Placement(transformation( extent={{-6,-6},{6,6}}, rotation=180, origin={154,6}))); - -3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Controls.HeatPump.TwoPointControlledHP twoPointControlledHP( use_secHeaGen=false, use_heaLim=false, T_heaLim=293.15, movAveTime=300, bandwidth=2) "Controls the temperature in the heat storage by switching the heat pump on or off" annotation (Placement(transformation(extent={{-80,60},{-60,80}}))); - -4: Name 'TStorageSet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Storage. Affected line: Modelica.Blocks.Sources.Constant TStorageSet(k=273.15 + 45) "Set point of upper heat storage temperature" annotation (Placement(transformation(extent={{-120,70},{-110,80}}))); - -5: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Control.geothermalFieldController geothermalFieldControllerCold( temperature_low=273.15 + 8, temperature_high=273.15 + 10) "Controls the heat exchange with the geothermal field and the heat storage" annotation (Placement(transformation(extent={{-102,28},{-86,44}})));Control.geothermalFieldController geothermalFieldControllerHeat( temperature_low=308.15, temperature_high=313.15) "Controls the heat exchange with the geothermal field and the heat storage" annotation (Placement(transformation(extent={{-100,-34},{-84,-18}}))); - -6: Name 'mode' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: mode. Affected line: Modelica.Blocks.Sources.BooleanConstant mode "Dummy signal for unit mode, true: heat pump, false: chiller" annotation (Placement(transformation(extent={{-56,56},{-44,68}}))); - +AixLib/Fluid/HeatPumps/ModularReversible/Examples/BaseClasses/OneRoomRadiatorHeatPumpControl.mo +1: Name 'swiHeaCooYSet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Y. Affected line: Modelica.Blocks.Logical.Switch swiHeaCooYSet if witCoo "Switch ySet for heating and cooling" annotation (Placement(transformation( extent={{-10,10},{10,-10}}, origin={30,70}, rotation=0))); -AixLib/Obsolete/Year2019/Fluid/HeatPumps/Examples/HeatPumpDetailed.mo -1: Missing documentation, Name 'Medium_sin' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium_sin. Affected line: replaceable package Medium_sin = AixLib.Media.Water constrainedby Modelica.Media.Interfaces.PartialMedium annotation (choicesAllMatching=true); +2: Name 'constYSetZer' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Y. Affected line: Modelica.Blocks.Sources.Constant constYSetZer(final k=0) "ySet equals zero" annotation (Placement(transformation(extent={{-10,-10},{10,10}}, rotation=0, origin={30,-18}))); -2: Missing documentation, Name 'Medium_sou' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Medium_sou. Affected line: replaceable package Medium_sou = AixLib.Media.Air constrainedby Modelica.Media.Interfaces.PartialMedium annotation (choicesAllMatching=true); +3: Name 'swiYSet' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Y. Affected line: Modelica.Blocks.Logical.Switch swiYSet "If no demand, switch heat pump off" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=0, origin={70,50}))); -3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: .AixLib.Obsolete.Year2019.Fluid.HeatPumps.HeatPumpDetailed heatPump( P_eleOutput=true, capCalcType=2, CorrFlowCo=false, CorrFlowEv=false, dataTable=DataBase.HeatPump.EN255.Vitocal350BWH113(), PT1_cycle=true, timeConstantCycle=1, mFlow_conNominal=1, mFlow_evaNominal=1, T_evaIn(transferHeat=true, TAmb=291.15), T_evaOut(transferHeat=true, TAmb=291.15), T_conIn(transferHeat=true, TAmb=273.15), T_conOut(transferHeat=true, TAmb=273.15), redeclare package Medium_con = Medium_sin, redeclare package Medium_eva = Medium_sou) "Detailed heat pump mainly based on manufacturing data" annotation (Placement(transformation(extent={{-16,14},{14,-6}}))); -4: Name 'sourceSideMassFlowSource' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: source, Side, Mass, Source. Affected line: AixLib.Fluid.Sources.MassFlowSource_T sourceSideMassFlowSource( use_T_in=true, m_flow=1, redeclare package Medium = Medium_sou, nPorts=1, T=275.15) "Ideal mass flow source at the inlet of the source side" annotation (Placement(transformation(extent={{-54,-80},{-34,-60}}))); +AixLib/Fluid/HeatPumps/ModularReversible/RefrigerantCycle/BaseClasses/PartialTableDataSDF.mo +1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: parameter SDF.Types.InterpolationMethod interpMethod=SDF.Types.InterpolationMethod.Linear "Interpolation method" annotation(Dialog(group="Data handling"));parameter SDF.Types.ExtrapolationMethod extrapMethod=SDF.Types.ExtrapolationMethod.Hold "Extrapolation method" annotation(Dialog(group="Data handling")); -5: Name 'sourceSideFixedBoundary' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: source, Side, Fixed, Boundary. Affected line: AixLib.Fluid.Sources.Boundary_pT sourceSideFixedBoundary(redeclare package Medium = Medium_sou, nPorts=1) "Fixed boundary at the outlet of the source side" annotation (Placement( transformation( extent={{-10,10},{10,-10}}, rotation=0, origin={-80,36}))); +2: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: SDF.NDTable nDTabQUse_flow( final nin=nDim, final readFromFile=true, final interpMethod=interpMethod, final extrapMethod=extrapMethod) "SDF-Table data for condenser heat flow" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=-90, origin={70,30})));SDF.NDTable nDTabPEle( final nin=nDim, final readFromFile=true, final interpMethod=interpMethod, final extrapMethod=extrapMethod) "SDF table data for electrical power" annotation (Placement(transformation( extent={{-10,-10},{10,10}}, rotation=-90, origin={10,30}))); -6: Name 'TsuSourceRamp' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: Source, Ramp. Affected line: Modelica.Blocks.Sources.Ramp TsuSourceRamp( duration=1000, startTime=1000, height=25, offset=278) "Ramp signal for the temperature input of the source side's ideal mass flow source" annotation (Placement(transformation(extent={{-94,-84},{-74,-64}}))); +3: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: RearrangeInputs ordInp(final nDim=nDim) "Possibly change Input order" annotation ( Placement(transformation( extent={{-10,-10},{10,10}}, rotation=0, origin={-40,50}))); -7: Missing documentation. Affected line: Modelica.Blocks.Logical.Hysteresis hys( pre_y_start=true, uLow=273.15 + 30, uHigh=273.15 + 40) annotation (Placement(transformation(extent={{64,50},{44,70}}))); +4: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: parameter SDF.Types.ExternalNDTable extTabQUse_flow=SDF.Types.ExternalNDTable( nDTabQUse_flow.nin, SDF.Functions.readTableData( Modelica.Utilities.Files.loadResource(nDTabQUse_flow.filename), nDTabQUse_flow.dataset, nDTabQUse_flow.dataUnit, nDTabQUse_flow.scaleUnits)); -8: Missing documentation, Name 'sine' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sine. Affected line: Modelica.Blocks.Sources.Sine sine( f=1/3600, amplitude=3000, offset=3000) annotation (Placement(transformation(extent={{76,26},{84,34}}))); +5: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: parameter SDF.Types.ExternalNDTable extTabPEle=SDF.Types.ExternalNDTable( nDTabPEle.nin, SDF.Functions.readTableData( Modelica.Utilities.Files.loadResource(nDTabPEle.filename), nDTabPEle.dataset, nDTabPEle.dataUnit, nDTabPEle.scaleUnits)); -9: Missing documentation. Affected line: Modelica.Blocks.Sources.Constant nIn(k=100) annotation (Placement( transformation( extent={{4,-4},{-4,4}}, rotation=90, origin={50,34}))); +6: Missing documentation, Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: function evaluate input SDF.Types.ExternalNDTable table;input Real[:] params;input SDF.Types.InterpolationMethod interpMethod;input SDF.Types.ExtrapolationMethod extrapMethod; -10: Name 'heatFlowRateCon' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: heat, Rate. Affected line: Modelica.Thermal.HeatTransfer.Sources.PrescribedHeatFlow heatFlowRateCon "Heat flow rate of the condenser" annotation (Placement(transformation( extent={{-6,6},{6,-6}}, rotation=270, origin={94,6}))); +7: Missing documentation, Name 'value;' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: value. Affected line: output Real value; -11: Missing documentation. Affected line: Modelica.Blocks.Math.Gain gain(k=-1) annotation (Placement(transformation( extent={{-4,-4},{4,4}}, rotation=270, origin={96,22}))); -12: Name 'sinkSideFixedBoundary' contains parts with more/less than 3 characters or which are not part of special cases. Affected parts: sink, Side, Fixed, Boundary. Affected line: AixLib.Fluid.Sources.Boundary_pT sinkSideFixedBoundary(redeclare package Medium = Medium_sin, nPorts=1) "Fixed boundary at the outlet of the sink side" annotation (Placement( transformation( extent={{10,-10},{-10,10}}, rotation=0, origin={88,-64}))); \ No newline at end of file +AixLib/Fluid/HeatPumps/ModularReversible/Examples/TableData3D_OneRoomRadiator.mo +1: Could not extract name from line and check correctness, is your type specification correct (full library path)?. Affected line: Modular heaPum( redeclare package MediumCon = MediumWat, redeclare package MediumEva = MediumWat, use_rev=false, allowDifferentDeviceIdentifiers=true, dTCon_nominal=8, use_conCap=false, dTEva_nominal=5, use_evaCap=false, QHea_flow_nominal=Q_flow_nominal, use_intSafCtr=true, redeclare model RefrigerantCycleHeatPumpHeating = AixLib.Fluid.HeatPumps.ModularReversible.RefrigerantCycle.TableData3D ( extrapMethod=SDF.Types.ExtrapolationMethod.Hold, redeclare AixLib.Fluid.HeatPumps.ModularReversible.Data.TableDataSDF.TableData3D.VZH088AG datTab), TConHea_nominal=TRadSup_nominal, dpCon_nominal(displayUnit="kPa") = 40000, TEvaHea_nominal=sou.T, dpEva_nominal(displayUnit="kPa") = 40000, energyDynamics=Modelica.Fluid.Types.Dynamics.FixedInitial, redeclare AixLib.Fluid.HeatPumps.ModularReversible.Controls.Safety.Data.Wuellhorst2021 safCtrPar, TConCoo_nominal=273.15, TEvaCoo_nominal=273.15) "Large scale water to water heat pump" annotation (Placement(transformation(extent={{20,-160},{0,-140}}))); \ No newline at end of file diff --git a/docs/1520_newHPModels/regression/Airflow/comparison-dymola.log b/docs/1520_newHPModels/regression/Airflow/comparison-dymola.log index 21a8780e15..9a88570b07 100644 --- a/docs/1520_newHPModels/regression/Airflow/comparison-dymola.log +++ b/docs/1520_newHPModels/regression/Airflow/comparison-dymola.log @@ -108,7 +108,7 @@ }, "model": "AixLib.Airflow.WindowVentilation.Examples.VentilationFlowRateSimpleOpening", "simulation": { - "elapsed_time": 0.102, + "elapsed_time": 0.0597, "final_time": 180, "jacobians": 4022, "start_time": 0, @@ -243,7 +243,7 @@ }, "model": "AixLib.Airflow.WindowVentilation.Examples.VentilationFlowRateSashOpening", "simulation": { - "elapsed_time": 0.227, + "elapsed_time": 0.0943, "final_time": 180, "jacobians": 4332, "start_time": 0, @@ -450,7 +450,7 @@ }, "model": "AixLib.Airflow.WindowVentilation.Examples.OpeningArea", "simulation": { - "elapsed_time": 0.00301, + "elapsed_time": 0.00215, "final_time": 60, "jacobians": 64, "start_time": 0, @@ -597,7 +597,7 @@ }, "model": "AixLib.Airflow.AirHandlingUnit.Examples.AHU", "simulation": { - "elapsed_time": 0.134, + "elapsed_time": 0.113, "final_time": 86400, "jacobians": 0, "start_time": 0, diff --git a/docs/1520_newHPModels/regression/Controls/comparison-dymola.log b/docs/1520_newHPModels/regression/Controls/comparison-dymola.log index b607c9122f..5ae6188c8c 100644 --- a/docs/1520_newHPModels/regression/Controls/comparison-dymola.log +++ b/docs/1520_newHPModels/regression/Controls/comparison-dymola.log @@ -72,7 +72,7 @@ }, "model": "AixLib.Controls.SetPoints.Validation.OccupancyScheduleNegativeStartTime", "simulation": { - "elapsed_time": 0.00868201, + "elapsed_time": 0.00609899, "final_time": 207360, "jacobians": 24, "start_time": -112320, diff --git a/docs/1520_newHPModels/regression/Electrical/comparison-dymola.log b/docs/1520_newHPModels/regression/Electrical/comparison-dymola.log index 41bbb34124..2b10524bc0 100644 --- a/docs/1520_newHPModels/regression/Electrical/comparison-dymola.log +++ b/docs/1520_newHPModels/regression/Electrical/comparison-dymola.log @@ -30,7 +30,7 @@ }, "model": "AixLib.Electrical.PVSystem.Validation.ValidationPVSystem", "simulation": { - "elapsed_time": 0.0341, + "elapsed_time": 0.0158, "final_time": 28771200.0, "jacobians": 940, "start_time": 28684800.0, @@ -63,7 +63,7 @@ }, "model": "AixLib.Electrical.PVSystem.Examples.ExamplePVSystem", "simulation": { - "elapsed_time": 0.79, + "elapsed_time": 0.71, "final_time": 31536000.0, "jacobians": 23122, "start_time": 0, diff --git a/docs/1520_newHPModels/regression/Electrical/simulator-dymola.log b/docs/1520_newHPModels/regression/Electrical/simulator-dymola.log index f0bdcfbe4e..86c847f87b 100644 --- a/docs/1520_newHPModels/regression/Electrical/simulator-dymola.log +++ b/docs/1520_newHPModels/regression/Electrical/simulator-dymola.log @@ -5,9 +5,9 @@ rCheck = checkModel("AixLib.Electrical.PVSystem.Validation.ValidationPVSystem"); Check of AixLib.Electrical.PVSystem.Validation.ValidationPVSystem: Warning: The quantity of pVSystem.weaBus.TDryBul is "ThermodynamicTemperature" and the quantity of pVSystem.cellTemperature.T_a is "Temp_C". In connect(pVSystem.weaBus.TDryBul, pVSystem.cellTemperature.T_a); -Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-0-r2mti3m_/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. -Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-0-r2mti3m_/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. -Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-0-r2mti3m_/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. +Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-0-wwxouv0t/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. +Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-0-wwxouv0t/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. +Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-0-wwxouv0t/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. The model has the same number of unknowns and equations: 106 The model has the same number of unknowns and equations: 102+max([size(NISTdata.columns, 1); size(NISTdata.offset, 1)]) @@ -28,9 +28,9 @@ simulateModel("AixLib.Electrical.PVSystem.Validation.ValidationPVSystem", startT Translation of AixLib.Electrical.PVSystem.Validation.ValidationPVSystem: Warning: The quantity of pVSystem.weaBus.TDryBul is "ThermodynamicTemperature" and the quantity of pVSystem.cellTemperature.T_a is "Temp_C". In connect(pVSystem.weaBus.TDryBul, pVSystem.cellTemperature.T_a); -Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-0-r2mti3m_/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. -Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-0-r2mti3m_/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. -Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-0-r2mti3m_/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. +Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-0-wwxouv0t/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. +Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-0-wwxouv0t/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. +Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-0-wwxouv0t/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. The DAE has 106 scalar unknowns and 106 scalar equations. Statistics @@ -71,9 +71,9 @@ rCheck = checkModel("AixLib.Electrical.PVSystem.Examples.ExamplePVSystem"); Check of AixLib.Electrical.PVSystem.Examples.ExamplePVSystem: Warning: The quantity of pVSystem.weaBus.TDryBul is "ThermodynamicTemperature" and the quantity of pVSystem.cellTemperature.T_a is "Temp_C". In connect(pVSystem.weaBus.TDryBul, pVSystem.cellTemperature.T_a); -Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-1-2ka5h3ql/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. -Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-1-2ka5h3ql/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. -Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-1-2ka5h3ql/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. +Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-1-2lkgy60t/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. +Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-1-2lkgy60t/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. +Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-1-2lkgy60t/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. The model has the same number of unknowns and equations: 294 The model could not be deduced to be symbolically well-posed. The model has @@ -100,9 +100,9 @@ simulateModel("AixLib.Electrical.PVSystem.Examples.ExamplePVSystem", stopTime=31 Translation of AixLib.Electrical.PVSystem.Examples.ExamplePVSystem: Warning: The quantity of pVSystem.weaBus.TDryBul is "ThermodynamicTemperature" and the quantity of pVSystem.cellTemperature.T_a is "Temp_C". In connect(pVSystem.weaBus.TDryBul, pVSystem.cellTemperature.T_a); -Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-1-2ka5h3ql/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. -Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-1-2ka5h3ql/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. -Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-1-2ka5h3ql/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. +Found in class AixLib.Electrical.PVSystem.PVSystem, /tmp/tmp-AixLib-1-2lkgy60t/AixLib/Electrical/PVSystem/PVSystem.mo at line 132, and used in component pVSystem. +Variable pVSystem.weaBus.TDryBul was declared in class Modelica.Units.SI, /tmp/tmp-AixLib-1-2lkgy60t/AixLib/BoundaryConditions/WeatherData/Bus.mo at line 5, and used in component pVSystem.weaBus. +Variable pVSystem.cellTemperature.T_a was declared in class Modelica.Blocks.Interfaces, /tmp/tmp-AixLib-1-2lkgy60t/AixLib/Electrical/PVSystem/BaseClasses/PartialCellTemperature.mo at line 21, and used in component pVSystem.cellTemperature.PartialCellTemperature. The DAE has 294 scalar unknowns and 294 scalar equations. Statistics diff --git a/docs/1520_newHPModels/regression/Fluid/comparison-dymola.log b/docs/1520_newHPModels/regression/Fluid/comparison-dymola.log index 6be08746ff..473f27f7a8 100644 --- a/docs/1520_newHPModels/regression/Fluid/comparison-dymola.log +++ b/docs/1520_newHPModels/regression/Fluid/comparison-dymola.log @@ -30,7 +30,7 @@ }, "model": "AixLib.Fluid.FixedResistances.Examples.SimplePipe", "simulation": { - "elapsed_time": 0.0118, + "elapsed_time": 0.00843, "final_time": 1000, "jacobians": 43, "start_time": 0, @@ -40,12 +40,12 @@ }, { "comparison": { - "file_name": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat", + "file_name": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_rampValvePosition.y", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmMea", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmSet", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.onSet" + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_rampValvePosition.y", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpMea", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpSet", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.onSet" ], "success_rate": 1.0, "t_err_max": [ @@ -68,9 +68,9 @@ ], "variables": [ "rampValvePosition.y", - "pumpBus.rpmMea", - "pumpBus.rpmSet", - "pumpBus.onSet" + "pump.pumpBus.dpMea", + "pump.pumpBus.dpSet", + "pump.pumpBus.onSet" ], "warnings": [ null, @@ -79,44 +79,80 @@ null ] }, - "model": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled", + "model": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled", "simulation": { - "elapsed_time": 0.0308, + "elapsed_time": 0.00971, "final_time": 600, - "jacobians": 170, + "jacobians": 108, "start_time": 0, - "state_events": 3, + "state_events": 0, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mat", + "file_name": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mat_demand.port_a.m_flow" + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.dpMachine", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.m_flow", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_m_flow_nominal", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.dpMachine", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dp_nominal", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_val.y_actual", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_elEnergy" ], "success_rate": 1.0, "t_err_max": [ + 0.0, + 0.0, + 0.0, + 0.0, + 0.0, + 0.0, 0.0 ], "test_passed": [ + 1, + 1, + 1, + 1, + 1, + 1, 1 ], "var_groups": [ - 0 + 0, + 1, + 1, + 2, + 2, + 3, + 4 ], "variables": [ - "demand.port_a.m_flow" + "dpControlled_dp.mov.dpMachine", + "dpControlled_dp.mov.m_flow", + "m_flow_nominal", + "dpControlled_dp.mov.dpMachine", + "dp_nominal", + "val.y_actual", + "elEnergy" ], "warnings": [ + null, + null, + null, + null, + null, + null, null ] }, - "model": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass", + "model": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst", "simulation": { - "elapsed_time": 0.0986, - "final_time": 100000, - "jacobians": 162, + "elapsed_time": 0.0187, + "final_time": 3600, + "jacobians": 120, "start_time": 0, "state_events": 0, "success": true @@ -124,10 +160,10 @@ }, { "comparison": { - "file_name": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.mat", + "file_name": "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.mat_senTemIn.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.mat_senTemOut.T" + "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_TSet.y", + "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_combinedHeatPower.senTHot.T" ], "success_rate": 1.0, "t_err_max": [ @@ -143,19 +179,64 @@ 0 ], "variables": [ - "senTemIn.T", - "senTemOut.T" + "TSet.y", + "combinedHeatPower.senTHot.T" ], "warnings": [ null, null ] }, - "model": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded", + "model": "AixLib.Fluid.BoilerCHP.Examples.CHPSystem", "simulation": { - "elapsed_time": 0.0154, - "final_time": 1000, - "jacobians": 109, + "elapsed_time": 0.0295, + "final_time": 1200, + "jacobians": 409, + "start_time": 0, + "state_events": 5, + "success": true + } + }, + { + "comparison": { + "file_name": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat", + "funnel_dirs": [ + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat_demand.senT_supply.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat_demand.senT_return.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat_demand.port_a.m_flow" + ], + "success_rate": 1.0, + "t_err_max": [ + 0.0, + 0.0, + 0.0 + ], + "test_passed": [ + 1, + 1, + 1 + ], + "var_groups": [ + 0, + 0, + 1 + ], + "variables": [ + "demand.senT_supply.T", + "demand.senT_return.T", + "demand.port_a.m_flow" + ], + "warnings": [ + null, + null, + null + ] + }, + "model": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp", + "simulation": { + "elapsed_time": 0.0309, + "final_time": 100000, + "jacobians": 126, "start_time": 0, "state_events": 0, "success": true @@ -240,7 +321,7 @@ }, "model": "AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger", "simulation": { - "elapsed_time": 0.372, + "elapsed_time": 0.283, "final_time": 7200, "jacobians": 62, "start_time": 0, @@ -250,14 +331,13 @@ }, { "comparison": { - "file_name": "AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat", + "file_name": "AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_bufferStorage.layer[10].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_bufferStorage.layer[5].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_bufferStorage.layer[1].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_temperatureSensor.T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_solarThermal.Irradiation", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_solarThermal.heater.Q_flow" + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[1].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[2].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[3].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_heatingRod.Pel", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_simpleConsumer.Q_flow" ], "success_rate": 1.0, "t_err_max": [ @@ -265,7 +345,6 @@ 0.0, 0.0, 0.0, - 0.0, 0.0 ], "test_passed": [ @@ -273,7 +352,6 @@ 1, 1, 1, - 1, 1 ], "var_groups": [ @@ -281,127 +359,136 @@ 0, 0, 1, - 2, 2 ], "variables": [ - "bufferStorage.layer[10].T", - "bufferStorage.layer[5].T", - "bufferStorage.layer[1].T", - "temperatureSensor.T", - "solarThermal.Irradiation", - "solarThermal.heater.Q_flow" + "storageSimple.layer[1].T", + "storageSimple.layer[2].T", + "storageSimple.layer[3].T", + "heatingRod.Pel", + "simpleConsumer.Q_flow" ], "warnings": [ null, null, null, null, - null, null ] }, - "model": "AixLib.Fluid.Storage.Examples.StorageSolarCollector", + "model": "AixLib.Fluid.Storage.Examples.StorageSimpleExample", "simulation": { - "elapsed_time": 0.611, - "final_time": 172800, - "jacobians": 1201, + "elapsed_time": 8.73, + "final_time": 38200, + "jacobians": 59209, "start_time": 0, - "state_events": 3, + "state_events": 21, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat", + "file_name": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_indoorSwimming.TPool", - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_prescribedHeatFlow.Q_flow", - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_indoorSwimming.PPool", - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_indoorSwimming.QEva" + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.mat_senTemIn.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.mat_senTemOut.T" ], "success_rate": 1.0, "t_err_max": [ - 0.0, - 0.0, 0.0, 0.0 ], "test_passed": [ - 1, - 1, 1, 1 ], "var_groups": [ - 0, - 0, 0, 0 ], "variables": [ - "indoorSwimming.TPool", - "prescribedHeatFlow.Q_flow", - "indoorSwimming.PPool", - "indoorSwimming.QEva" + "senTemIn.T", + "senTemOut.T" ], "warnings": [ - null, - null, null, null ] }, - "model": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem", + "model": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe", "simulation": { - "elapsed_time": 0.31959, - "final_time": 604800, - "jacobians": 97, + "elapsed_time": 0.00571, + "final_time": 1000, + "jacobians": 35, "start_time": 0, - "state_events": 9, + "state_events": 0, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat", + "file_name": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat_demand.senT_supply.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat_demand.senT_return.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat_demand.port_a.m_flow" + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.m_flow", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_m_flow_nominal", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dp_nominal", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_val.y_actual", + "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_elEnergy" ], "success_rate": 1.0, "t_err_max": [ + 0.0, + 0.0, + 0.0, + 0.0, 0.0, 0.0, 0.0 ], "test_passed": [ + 1, + 1, + 1, + 1, 1, 1, 1 ], "var_groups": [ 0, - 0, - 1 + 1, + 1, + 2, + 2, + 3, + 4 ], "variables": [ - "demand.senT_supply.T", - "demand.senT_return.T", - "demand.port_a.m_flow" + "dpControlled_dp.mov.dpMachine", + "dpControlled_dp.mov.m_flow", + "m_flow_nominal", + "dpControlled_dp.mov.dpMachine", + "dp_nominal", + "val.y_actual", + "elEnergy" ], "warnings": [ + null, + null, + null, + null, null, null, null ] }, - "model": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot", + "model": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar", "simulation": { - "elapsed_time": 0.0245, - "final_time": 100000, - "jacobians": 115, + "elapsed_time": 0.0184, + "final_time": 3600, + "jacobians": 122, "start_time": 0, "state_events": 0, "success": true @@ -409,15 +496,15 @@ }, { "comparison": { - "file_name": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat", + "file_name": "AixLib.Fluid.Storage.Examples.StorageBoiler.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_rampValvePosition.y", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_pump.pumpBus.rpmMea", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_pump.pumpBus.rpmSet", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_pump.pumpBus.onSet" - ], - "success_rate": 1.0, - "t_err_max": [ + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_bufferStorage.layer[10].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_bufferStorage.layer[5].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_bufferStorage.layer[1].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_hea.Q_flow" + ], + "success_rate": 1.0, + "t_err_max": [ 0.0, 0.0, 0.0, @@ -431,15 +518,15 @@ ], "var_groups": [ 0, - 1, - 1, - 2 + 0, + 0, + 1 ], "variables": [ - "rampValvePosition.y", - "pump.pumpBus.rpmMea", - "pump.pumpBus.rpmSet", - "pump.pumpBus.onSet" + "bufferStorage.layer[10].T", + "bufferStorage.layer[5].T", + "bufferStorage.layer[1].T", + "hea.Q_flow" ], "warnings": [ null, @@ -448,216 +535,183 @@ null ] }, - "model": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV", + "model": "AixLib.Fluid.Storage.Examples.StorageBoiler", "simulation": { - "elapsed_time": 0.0126, - "final_time": 600, - "jacobians": 134, + "elapsed_time": 0.0874, + "final_time": 86400, + "jacobians": 101, "start_time": 0, - "state_events": 3, + "state_events": 0, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat", + "file_name": "AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn1.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut1.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn2.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut2.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn3.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut3.T" + "funnel_comp/AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances.mat_HR.m_flow", + "funnel_comp/AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances.mat_FRdp.m_flow" ], "success_rate": 1.0, "t_err_max": [ - 0.0, - 0.0, - 0.0, - 0.0, - 0.0, - 0.0, 0.0, 0.0 ], "test_passed": [ - 1, - 1, - 1, - 1, - 1, - 1, 1, 1 ], "var_groups": [ - 0, - 0, - 0, - 0, - 0, - 0, 0, 0 ], "variables": [ - "senTemIn.T", - "senTemOut.T", - "senTemIn1.T", - "senTemOut1.T", - "senTemIn2.T", - "senTemOut2.T", - "senTemIn3.T", - "senTemOut3.T" + "HR.m_flow", + "FRdp.m_flow" ], "warnings": [ - null, - null, - null, - null, - null, - null, null, null ] }, - "model": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe", + "model": "AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances", "simulation": { - "elapsed_time": 0.555, + "elapsed_time": 0.289, "final_time": 3600, - "jacobians": 6494, + "jacobians": 41000, "start_time": 0, - "state_events": 178, + "state_events": 1199, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat", + "file_name": "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_TSet.y", - "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_combinedHeatPower.electricalPower", - "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_combinedHeatPower.thermalPower", - "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_combinedHeatPower.fuelInput" + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.mat_vol.T_start", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.mat_vol.T", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.mat_temSup.T", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.mat_temRet.T", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.mat_heaPum.refCyc.sigBus.onOffMea" ], "success_rate": 1.0, "t_err_max": [ 0.0, 0.0, 0.0, + 0.0, 0.0 ], "test_passed": [ 1, 1, 1, + 1, 1 ], "var_groups": [ + 0, 0, 1, 1, - 1 + 2 ], "variables": [ - "TSet.y", - "combinedHeatPower.electricalPower", - "combinedHeatPower.thermalPower", - "combinedHeatPower.fuelInput" + "vol.T_start", + "vol.T", + "temSup.T", + "temRet.T", + "heaPum.refCyc.sigBus.onOffMea" ], "warnings": [ null, null, null, + null, null ] }, - "model": "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl", + "model": "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator", "simulation": { - "elapsed_time": 0.0115, - "final_time": 300, - "jacobians": 75, + "elapsed_time": 0.0632629, + "final_time": 86400, + "jacobians": 76, "start_time": 0, - "state_events": 0, + "state_events": 21, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat", + "file_name": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_TSet.y", - "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_TOut.y", - "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_TVol.T", - "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_THeaOut.T", - "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_Pel" + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.TPool", + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.QPool", + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.PPool", + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.QEva" ], "success_rate": 1.0, "t_err_max": [ 0.0, 0.0, 0.0, - 0.0, 0.0 ], "test_passed": [ 1, 1, 1, - 1, 1 ], "var_groups": [ 0, 0, 0, - 0, - 1 + 0 ], "variables": [ - "TSet.y", - "TOut.y", - "TVol.T", - "THeaOut.T", - "Pel" + "indoorSwimming.TPool", + "indoorSwimming.QPool", + "indoorSwimming.PPool", + "indoorSwimming.QEva" ], "warnings": [ null, null, null, - null, null ] }, - "model": "AixLib.Fluid.HeatExchangers.Examples.HeatingRod", + "model": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool", "simulation": { - "elapsed_time": 0.0293939, - "final_time": 172800, - "jacobians": 40, + "elapsed_time": 0.232577, + "final_time": 604800, + "jacobians": 97, "start_time": 0, - "state_events": 6, + "state_events": 9, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Storage.Examples.StorageDetailedExample.mat", + "file_name": "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageDetailedExample.mat_bufferStorage.heatingCoil1.Therm1[4].Q_flow", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageDetailedExample.mat_bufferStorage.layer[4].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageDetailedExample.mat_bufferStorage.portHC1In.p", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageDetailedExample.mat_bufferStorage.portHC1Out.p" + "funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_heatPumpPower", + "funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_heatStorage.layer[1].T", + "funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_heatStorage.layer[5].T", + "funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_coldStorage.layer[5].T", + "funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_coldStorage.layer[1].T" ], - "success_rate": 1.0, + "success_rate": 0.8, "t_err_max": [ + 52704.0, 0.0, 0.0, 0.0, 0.0 ], "test_passed": [ + 0, 1, 1, 1, @@ -666,38 +720,41 @@ "var_groups": [ 0, 1, - 2, - 2 + 1, + 1, + 1 ], "variables": [ - "bufferStorage.heatingCoil1.Therm1[4].Q_flow", - "bufferStorage.layer[4].T", - "bufferStorage.portHC1In.p", - "bufferStorage.portHC1Out.p" + "heatPumpPower", + "heatStorage.layer[1].T", + "heatStorage.layer[5].T", + "coldStorage.layer[5].T", + "coldStorage.layer[1].T" ], "warnings": [ + "Absolute error = 2.247e+02 at t = 52704.0 for heatPumpPower", null, null, null, null ] }, - "model": "AixLib.Fluid.Storage.Examples.StorageDetailedExample", + "model": "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump", "simulation": { - "elapsed_time": 0.0539, + "elapsed_time": 4.4, "final_time": 86400, - "jacobians": 45, + "jacobians": 4606, "start_time": 0, - "state_events": 0, + "state_events": 303, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances.mat", + "file_name": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances.mat_HR.m_flow", - "funnel_comp/AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances.mat_FRdp.m_flow" + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.mat_senTemIn.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.mat_senTemOut.T" ], "success_rate": 1.0, "t_err_max": [ @@ -713,32 +770,32 @@ 0 ], "variables": [ - "HR.m_flow", - "FRdp.m_flow" + "senTemIn.T", + "senTemOut.T" ], "warnings": [ null, null ] }, - "model": "AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances", + "model": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta", "simulation": { - "elapsed_time": 0.557, - "final_time": 3600, - "jacobians": 41000, + "elapsed_time": 0.0118, + "final_time": 1000, + "jacobians": 78, "start_time": 0, - "state_events": 1199, + "state_events": 0, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat", + "file_name": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_rampValvePosition.y", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpMea", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.dpSet", - "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.mat_pump.pumpBus.onSet" + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_rampValvePosition.y", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmMea", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.rpmSet", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.mat_pumpBus.onSet" ], "success_rate": 1.0, "t_err_max": [ @@ -761,9 +818,9 @@ ], "variables": [ "rampValvePosition.y", - "pump.pumpBus.dpMea", - "pump.pumpBus.dpSet", - "pump.pumpBus.onSet" + "pumpBus.rpmMea", + "pumpBus.rpmSet", + "pumpBus.onSet" ], "warnings": [ null, @@ -772,80 +829,44 @@ null ] }, - "model": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled", + "model": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled", "simulation": { - "elapsed_time": 0.012, + "elapsed_time": 0.0146, "final_time": 600, - "jacobians": 108, + "jacobians": 170, "start_time": 0, - "state_events": 0, + "state_events": 3, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat", + "file_name": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.dpMachine", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.m_flow", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_m_flow_nominal", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dpControlled_dp.mov.dpMachine", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_dp_nominal", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_val.y_actual", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.mat_elEnergy" + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mat_demand.port_a.m_flow" ], "success_rate": 1.0, "t_err_max": [ - 0.0, - 0.0, - 0.0, - 0.0, - 0.0, - 0.0, 0.0 ], "test_passed": [ - 1, - 1, - 1, - 1, - 1, - 1, 1 ], "var_groups": [ - 0, - 1, - 1, - 2, - 2, - 3, - 4 + 0 ], "variables": [ - "dpControlled_dp.mov.dpMachine", - "dpControlled_dp.mov.m_flow", - "m_flow_nominal", - "dpControlled_dp.mov.dpMachine", - "dp_nominal", - "val.y_actual", - "elEnergy" + "demand.port_a.m_flow" ], "warnings": [ - null, - null, - null, - null, - null, - null, null ] }, - "model": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst", + "model": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass", "simulation": { - "elapsed_time": 0.0195, - "final_time": 3600, - "jacobians": 120, + "elapsed_time": 0.031, + "final_time": 100000, + "jacobians": 162, "start_time": 0, "state_events": 0, "success": true @@ -853,10 +874,10 @@ }, { "comparison": { - "file_name": "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat", + "file_name": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_TSet.y", - "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystem.mat_combinedHeatPower.senTHot.T" + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.mat_senTemIn.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.mat_senTemOut.T" ], "success_rate": 1.0, "t_err_max": [ @@ -872,21 +893,21 @@ 0 ], "variables": [ - "TSet.y", - "combinedHeatPower.senTHot.T" + "senTemIn.T", + "senTemOut.T" ], "warnings": [ null, null ] }, - "model": "AixLib.Fluid.BoilerCHP.Examples.CHPSystem", + "model": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded", "simulation": { - "elapsed_time": 0.0445, - "final_time": 1200, - "jacobians": 409, + "elapsed_time": 0.0116, + "final_time": 1000, + "jacobians": 109, "start_time": 0, - "state_events": 5, + "state_events": 0, "success": true } }, @@ -945,7 +966,7 @@ }, "model": "AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.DynamicValidation", "simulation": { - "elapsed_time": 29.6, + "elapsed_time": 22, "final_time": 7200, "jacobians": 7673, "start_time": 0, @@ -955,19 +976,25 @@ }, { "comparison": { - "file_name": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat", + "file_name": "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat_demand.senT_supply.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat_demand.senT_return.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat_demand.port_a.m_flow" + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_temSup.T", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_temRet.T", + "funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_heaPum.refCyc.sigBus.yMea" ], "success_rate": 1.0, "t_err_max": [ + 0.0, + 0.0, 0.0, 0.0, 0.0 ], "test_passed": [ + 1, + 1, 1, 1, 1 @@ -975,38 +1002,45 @@ "var_groups": [ 0, 0, - 1 + 1, + 1, + 2 ], "variables": [ - "demand.senT_supply.T", - "demand.senT_return.T", - "demand.port_a.m_flow" + "vol.T_start", + "vol.T", + "temSup.T", + "temRet.T", + "heaPum.refCyc.sigBus.yMea" ], "warnings": [ + null, + null, null, null, null ] }, - "model": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp", + "model": "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator", "simulation": { - "elapsed_time": 0.0767, - "final_time": 100000, - "jacobians": 126, + "elapsed_time": 0.060632, + "final_time": 86400, + "jacobians": 69, "start_time": 0, - "state_events": 0, + "state_events": 10, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat", + "file_name": "AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[1].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[2].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_storageSimple.layer[3].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_heatingRod.Pel", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSimpleExample.mat_simpleConsumer.Q_flow" + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_bufferStorage.layer[10].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_bufferStorage.layer[5].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_bufferStorage.layer[1].T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_temperatureSensor.T", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_solarThermal.Irradiation", + "funnel_comp/AixLib.Fluid.Storage.Examples.StorageSolarCollector.mat_solarThermal.heater.Q_flow" ], "success_rate": 1.0, "t_err_max": [ @@ -1014,6 +1048,7 @@ 0.0, 0.0, 0.0, + 0.0, 0.0 ], "test_passed": [ @@ -1021,6 +1056,7 @@ 1, 1, 1, + 1, 1 ], "var_groups": [ @@ -1028,98 +1064,149 @@ 0, 0, 1, + 2, 2 ], "variables": [ - "storageSimple.layer[1].T", - "storageSimple.layer[2].T", - "storageSimple.layer[3].T", - "heatingRod.Pel", - "simpleConsumer.Q_flow" + "bufferStorage.layer[10].T", + "bufferStorage.layer[5].T", + "bufferStorage.layer[1].T", + "temperatureSensor.T", + "solarThermal.Irradiation", + "solarThermal.heater.Q_flow" ], "warnings": [ null, null, null, null, + null, null ] }, - "model": "AixLib.Fluid.Storage.Examples.StorageSimpleExample", + "model": "AixLib.Fluid.Storage.Examples.StorageSolarCollector", "simulation": { - "elapsed_time": 9.06, - "final_time": 38200, - "jacobians": 59209, + "elapsed_time": 0.599, + "final_time": 172800, + "jacobians": 1201, "start_time": 0, - "state_events": 21, + "state_events": 3, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.mat", + "file_name": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.mat_senTemIn.T", - "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.mat_senTemOut.T" + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_indoorSwimming.TPool", + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_prescribedHeatFlow.Q_flow", + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_indoorSwimming.PPool", + "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.mat_indoorSwimming.QEva" ], "success_rate": 1.0, "t_err_max": [ + 0.0, + 0.0, 0.0, 0.0 ], "test_passed": [ + 1, + 1, 1, 1 ], "var_groups": [ + 0, + 0, 0, 0 ], "variables": [ - "senTemIn.T", - "senTemOut.T" + "indoorSwimming.TPool", + "prescribedHeatFlow.Q_flow", + "indoorSwimming.PPool", + "indoorSwimming.QEva" ], "warnings": [ + null, + null, null, null ] }, - "model": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe", + "model": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem", "simulation": { - "elapsed_time": 0.0363, - "final_time": 1000, - "jacobians": 35, + "elapsed_time": 0.26829, + "final_time": 604800, + "jacobians": 97, "start_time": 0, - "state_events": 0, + "state_events": 9, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat", + "file_name": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.m_flow", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_m_flow_nominal", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dpControlled_dp.mov.dpMachine", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_dp_nominal", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_val.y_actual", - "funnel_comp/AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.mat_elEnergy" + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat_demand.senT_supply.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat_demand.senT_return.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat_demand.port_a.m_flow" ], "success_rate": 1.0, "t_err_max": [ 0.0, 0.0, - 0.0, + 0.0 + ], + "test_passed": [ + 1, + 1, + 1 + ], + "var_groups": [ + 0, + 0, + 1 + ], + "variables": [ + "demand.senT_supply.T", + "demand.senT_return.T", + "demand.port_a.m_flow" + ], + "warnings": [ + null, + null, + null + ] + }, + "model": "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot", + "simulation": { + "elapsed_time": 0.0232, + "final_time": 100000, + "jacobians": 115, + "start_time": 0, + "state_events": 0, + "success": true + } + }, + { + "comparison": { + "file_name": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat", + "funnel_dirs": [ + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_rampValvePosition.y", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_pump.pumpBus.rpmMea", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_pump.pumpBus.rpmSet", + "funnel_comp/AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.mat_pump.pumpBus.onSet" + ], + "success_rate": 1.0, + "t_err_max": [ 0.0, 0.0, 0.0, 0.0 ], "test_passed": [ - 1, - 1, - 1, 1, 1, 1, @@ -1129,50 +1216,43 @@ 0, 1, 1, - 2, - 2, - 3, - 4 + 2 ], "variables": [ - "dpControlled_dp.mov.dpMachine", - "dpControlled_dp.mov.m_flow", - "m_flow_nominal", - "dpControlled_dp.mov.dpMachine", - "dp_nominal", - "val.y_actual", - "elEnergy" + "rampValvePosition.y", + "pump.pumpBus.rpmMea", + "pump.pumpBus.rpmSet", + "pump.pumpBus.onSet" ], "warnings": [ - null, - null, - null, null, null, null, null ] }, - "model": "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar", + "model": "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV", "simulation": { - "elapsed_time": 0.119, - "final_time": 3600, - "jacobians": 122, + "elapsed_time": 0.0169, + "final_time": 600, + "jacobians": 134, "start_time": 0, - "state_events": 0, + "state_events": 3, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat", + "file_name": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_m3hOda.y", - "funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_V_flow_exp.showNumber", - "funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_senTemSup.T", - "funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_T_Sup_exp.showNumber", - "funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_toDryAirSup.XiDry", - "funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_X_Sup_exp.showNumber" + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn1.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut1.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn2.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut2.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemIn3.T", + "funnel_comp/AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.mat_senTemOut3.T" ], "success_rate": 1.0, "t_err_max": [ @@ -1181,6 +1261,8 @@ 0.0, 0.0, 0.0, + 0.0, + 0.0, 0.0 ], "test_passed": [ @@ -1189,23 +1271,29 @@ 1, 1, 1, + 1, + 1, 1 ], "var_groups": [ 0, 0, - 1, - 1, - 2, - 2 + 0, + 0, + 0, + 0, + 0, + 0 ], "variables": [ - "m3hOda.y", - "V_flow_exp.showNumber", - "senTemSup.T", - "T_Sup_exp.showNumber", - "toDryAirSup.XiDry", - "X_Sup_exp.showNumber" + "senTemIn.T", + "senTemOut.T", + "senTemIn1.T", + "senTemOut1.T", + "senTemIn2.T", + "senTemOut2.T", + "senTemIn3.T", + "senTemOut3.T" ], "warnings": [ null, @@ -1213,27 +1301,29 @@ null, null, null, + null, + null, null ] }, - "model": "AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation", + "model": "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe", "simulation": { - "elapsed_time": 9.47, - "final_time": 29600, - "jacobians": 1180, + "elapsed_time": 0.468, + "final_time": 3600, + "jacobians": 6494, "start_time": 0, - "state_events": 0, + "state_events": 178, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Storage.Examples.StorageBoiler.mat", + "file_name": "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_bufferStorage.layer[10].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_bufferStorage.layer[5].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_bufferStorage.layer[1].T", - "funnel_comp/AixLib.Fluid.Storage.Examples.StorageBoiler.mat_hea.Q_flow" + "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_TSet.y", + "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_combinedHeatPower.electricalPower", + "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_combinedHeatPower.thermalPower", + "funnel_comp/AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.mat_combinedHeatPower.fuelInput" ], "success_rate": 1.0, "t_err_max": [ @@ -1250,15 +1340,15 @@ ], "var_groups": [ 0, - 0, - 0, + 1, + 1, 1 ], "variables": [ - "bufferStorage.layer[10].T", - "bufferStorage.layer[5].T", - "bufferStorage.layer[1].T", - "hea.Q_flow" + "TSet.y", + "combinedHeatPower.electricalPower", + "combinedHeatPower.thermalPower", + "combinedHeatPower.fuelInput" ], "warnings": [ null, @@ -1267,11 +1357,11 @@ null ] }, - "model": "AixLib.Fluid.Storage.Examples.StorageBoiler", + "model": "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl", "simulation": { - "elapsed_time": 0.0919, - "final_time": 86400, - "jacobians": 101, + "elapsed_time": 0.0126, + "final_time": 300, + "jacobians": 75, "start_time": 0, "state_events": 0, "success": true @@ -1279,146 +1369,170 @@ }, { "comparison": { - "file_name": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat", + "file_name": "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.TPool", - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.QPool", - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.PPool", - "funnel_comp/AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.mat_indoorSwimming.QEva" + "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_TSet.y", + "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_TOut.y", + "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_TVol.T", + "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_THeaOut.T", + "funnel_comp/AixLib.Fluid.HeatExchangers.Examples.HeatingRod.mat_Pel" ], "success_rate": 1.0, "t_err_max": [ 0.0, 0.0, 0.0, + 0.0, 0.0 ], "test_passed": [ 1, 1, 1, + 1, 1 ], "var_groups": [ 0, 0, 0, - 0 + 0, + 1 ], "variables": [ - "indoorSwimming.TPool", - "indoorSwimming.QPool", - "indoorSwimming.PPool", - "indoorSwimming.QEva" + "TSet.y", + "TOut.y", + "TVol.T", + "THeaOut.T", + "Pel" ], "warnings": [ null, null, null, + null, null ] }, - "model": "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool", + "model": "AixLib.Fluid.HeatExchangers.Examples.HeatingRod", "simulation": { - "elapsed_time": 0.246773, - "final_time": 604800, - "jacobians": 97, + "elapsed_time": 0.011929, + "final_time": 172800, + "jacobians": 40, "start_time": 0, - "state_events": 9, + "state_events": 6, "success": true } }, { "comparison": { - "file_name": "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat", + "file_name": "AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat", "funnel_dirs": [ - "funnel_comp/AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.mat_heatPumpPower", - 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"funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_toDryAirSup.XiDry", + "funnel_comp/AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.mat_X_Sup_exp.showNumber" ], - "success_rate": 0.8, + "success_rate": 1.0, "t_err_max": [ - 52704.0, + 0.0, + 0.0, 0.0, 0.0, 0.0, 0.0 ], "test_passed": [ - 0, + 1, + 1, 1, 1, 1, 1 ], "var_groups": [ + 0, 0, 1, 1, - 1, - 1 + 2, + 2 ], "variables": [ - "heatPumpPower", - "heatStorage.layer[1].T", - "heatStorage.layer[5].T", - "coldStorage.layer[5].T", - "coldStorage.layer[1].T" + "m3hOda.y", + "V_flow_exp.showNumber", + "senTemSup.T", + "T_Sup_exp.showNumber", + "toDryAirSup.XiDry", + "X_Sup_exp.showNumber" ], "warnings": [ - "Absolute error = 2.247e+02 at t = 52704.0 for heatPumpPower", + null, + null, null, null, null, null ] }, - "model": "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump", + "model": 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+83808.001000,292.865258 +84672.000810,292.890593 +85535.999000,292.887941 +86399.999000,292.859527 +86400.001000,292.859527 diff --git a/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/reference.csv b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/reference.csv new file mode 100644 index 0000000000..6e04c5687a --- /dev/null +++ b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/reference.csv @@ -0,0 +1,102 @@ +x,y +0.000000,293.149994 +864.000000,292.319733 +1728.000000,289.097992 +2592.000000,289.566803 +3456.000000,291.213379 +4320.000000,292.697876 +5184.000000,293.831604 +6048.000000,294.217163 +6912.000000,293.872467 +7776.000000,293.290649 +8640.000000,292.939697 +9504.000000,292.923950 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+76896.000000,293.219269 +77760.000000,293.263977 +78624.000000,293.235992 +79488.000000,293.157227 +80352.000000,293.080597 +81216.000000,293.055420 +82080.000000,293.076965 +82944.000000,293.117462 +83808.000000,293.158417 +84672.000000,293.183777 +85536.000000,293.181122 +86400.000000,293.152679 diff --git a/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/upperBound.csv b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/upperBound.csv new file mode 100644 index 0000000000..0fc12e337b --- /dev/null +++ b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T/upperBound.csv @@ -0,0 +1,119 @@ +x,y +-0.001000,293.443144 +0.001000,293.443144 +864.001000,292.612052 +1728.000746,289.387091 +2591.999000,289.856370 +3455.999000,291.504592 +4319.999000,292.990574 +5183.999000,294.125436 +6047.999000,294.511380 +6048.001000,294.511380 +6912.001000,294.166340 +7776.001000,293.583940 +8640.001000,293.232637 +9503.999179,293.216874 +10367.999000,293.377404 +11231.999000,293.523119 +12095.999000,293.548779 +12096.001000,293.548779 +12960.001000,293.482979 +13824.001000,293.415528 +14687.999323,293.406333 +15551.999000,293.454019 +16415.999000,293.507753 +17279.999000,293.523516 +17280.001000,293.523516 +18144.001000,293.490616 +19008.001000,293.438684 +19872.000637,293.413634 +20735.999000,293.419194 +21599.999000,293.436973 +22463.999000,293.449864 +23327.999000,293.452247 +23328.001000,293.452247 +24192.001000,293.447757 +25056.000336,293.442594 +25919.999000,293.445160 +26783.999000,293.471126 +27647.999000,293.505218 +28511.999000,293.525104 +29375.999000,295.409830 +29376.001000,295.409830 +30240.001000,292.647794 +31104.000182,289.735646 +31967.999000,291.751543 +32831.999000,294.256915 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+63072.001000,293.396589 +63936.000642,293.370348 +64799.999000,293.376060 +64800.001000,293.376060 +65664.000257,291.388786 +66527.999000,292.562656 +67391.999000,293.873017 +68255.999000,294.224259 +68256.001000,294.224259 +69120.001000,293.828325 +69984.001000,293.423074 +70847.999929,293.334790 +71711.999000,293.436607 +72575.999000,293.489210 +72576.001000,293.489210 +73440.001000,293.433307 +74304.001000,293.359839 +75167.999247,293.350186 +76031.999000,293.418614 +76895.999000,293.512488 +77759.999000,293.557241 +77760.001000,293.557241 +78624.001000,293.529228 +79488.001000,293.450384 +80352.001000,293.373678 +81216.000078,293.348475 +82079.999000,293.370042 +82943.999000,293.410580 +83807.999000,293.451575 +84671.999000,293.476961 +84672.001000,293.476961 +85536.001000,293.474303 +86400.001000,293.445832 diff --git a/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/errors.csv b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/errors.csv new file mode 100644 index 0000000000..de814b6fd5 --- /dev/null +++ b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/errors.csv @@ -0,0 +1,3 @@ +x,y +0.000000,0.000000 +86400.000000,0.000000 diff --git a/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/lowerBound.csv b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/lowerBound.csv new file mode 100644 index 0000000000..a333296f5c --- /dev/null +++ b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/lowerBound.csv @@ -0,0 +1,3 @@ +x,y +-0.001000,292.856844 +86400.001000,292.856844 diff --git a/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/reference.csv b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/reference.csv new file mode 100644 index 0000000000..3fd58e21bc --- /dev/null +++ b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/reference.csv @@ -0,0 +1,3 @@ +x,y +0.000000,293.149994 +86400.000000,293.149994 diff --git a/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/test.csv b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/test.csv new file mode 100644 index 0000000000..3fd58e21bc --- /dev/null +++ b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/test.csv @@ -0,0 +1,3 @@ +x,y +0.000000,293.149994 +86400.000000,293.149994 diff --git a/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/upperBound.csv b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/upperBound.csv new file mode 100644 index 0000000000..f19da10ead --- /dev/null +++ b/docs/1520_newHPModels/regression/Fluid/funnel_comp/AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.mat_vol.T_start/upperBound.csv @@ -0,0 +1,3 @@ +x,y +-0.001000,293.443144 +86400.001000,293.443144 diff --git a/docs/1520_newHPModels/regression/Fluid/simulator-dymola.log b/docs/1520_newHPModels/regression/Fluid/simulator-dymola.log index e8043e8776..4c315214fc 100644 --- a/docs/1520_newHPModels/regression/Fluid/simulator-dymola.log +++ b/docs/1520_newHPModels/regression/Fluid/simulator-dymola.log @@ -76,6 +76,145 @@ Declaring variable: Boolean rScript ; savelog("AixLib.Fluid.FixedResistances.Examples.SimplePipe.translation.log"); = true +rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe"); +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe: +The model has the same number of unknowns and equations: 175 +The model could not be deduced to be symbolically well-posed. +The model has + 173+pip.vol.dynBal.nPorts +scalar unknowns and + 159+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if not pip.vol.dynBal.use_mWat_flow then 1 else 0)+3* pip.vol.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 175 +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe successful. +Declaring variable: Boolean rCheck ; + +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/StaticPipe.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); + + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/StaticPipe.mos"); +translateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe"); +Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe: +The DAE has 175 scalar unknowns and 175 scalar equations. + +Statistics + +Original Model + Number of components: 33 + Variables: 506 + Constants: 10 (10 scalars) + Parameters: 251 (244 scalars) + Unknowns: 245 (181 scalars) + Differentiated variables: 4 scalars + Equations: 205 + Nontrivial: 171 +Translated Model + Constants: 185 scalars + Free parameters: 45 scalars + Parameter depending: 61 scalars + Continuous time states: 3 scalars + Time-varying variables: 31 scalars + Alias variables: 113 scalars + Number of mixed real/discrete systems of equations: 0 + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: { } + Sizes after manipulation of the nonlinear systems: { } + Number of numerical Jacobians: 0 + +Selected continuous time states +Statically selected continuous time states + pip.vol.dynBal.U + senTemIn.T + senTemOut.T + + = true +simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe", stopTime=1000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe"); +Finished + = true + +Declaring variable: Boolean rScript ; + +savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.translation.log"); = true + + +rCheck = checkModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled"); +Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled: +The model has the same number of unknowns and equations: 151 +The model could not be deduced to be symbolically well-posed. +The model has + 140+2*(size(pump.maxMinTable.columns, 1)+pump.deMultiplex3_1.n1+pump.deMultiplex3_1.n2) +pump.criticalDamping.n+pump.vol.dynBal.nPorts +scalar unknowns and + 130+2*size(pump.maxMinTable.columns, 1)+pump.deMultiplex3_1.n1+pump.deMultiplex3_1.n2 +pump.criticalDamping.n+(if vessle.use_Xi_in then 1 else (if vessle.use_X_in then 0 else 1))+(if not vessle.use_p_in then 1 else 0)+2*vessle.nPorts+(if not vessle.use_T_in then 1 else 0)+(if not pump.vol.dynBal.use_mWat_flow then 1 else 0)+3*pump.vol.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 151 +Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled successful. +Declaring variable: Boolean rCheck ; + +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpHeadControlled.mos\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled\\\");\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); + + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpHeadControlled.mos"); +simulateModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled", tolerance=1e-6, stopTime=600, method="dassl", resultFile="AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled"); +Translation of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled: +The DAE has 151 scalar unknowns and 151 scalar equations. + +Statistics + +Original Model + Number of components: 34 + Variables: 378 + Constants: 9 (9 scalars) + Parameters: 177 (481 scalars) + Unknowns: 192 (155 scalars) + Differentiated variables: 5 scalars + Equations: 158 + Nontrivial: 131 +Translated Model + Constants: 136 scalars + Free parameters: 253 scalars + Parameter depending: 127 scalars + Outputs: 7 scalars + Continuous time states: 3 scalars + Time-varying variables: 36 scalars + Alias variables: 93 scalars + Number of mixed real/discrete systems of equations: 0 + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: {1} + Sizes after manipulation of the nonlinear systems: {0} + Number of numerical Jacobians: 0 + Initialization problem + Sizes of nonlinear systems of equations: {1} + Sizes after manipulation of the nonlinear systems: {1} + Number of numerical Jacobians: 0 + +Selected continuous time states +Statically selected continuous time states + pump.criticalDamping.x[1] + simpleValve.filter.s[1] + simpleValve.filter.s[2] + +Finished + = true + +Declaring variable: Boolean rScript ; + +savelog("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.translation.log"); = true + + rCheck = checkModel("AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger"); Check of AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger: The model has the same number of unknowns and equations: 5083 @@ -597,787 +736,794 @@ Declaring variable: Boolean rScript ; savelog("AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Examples.Test_EnthalpyExchanger.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem"); -Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem: -The model has the same number of unknowns and equations: 733 -The model has the same number of unknowns and equations -for the given numerical settings of parameters: 733 -Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem successful. +rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp"); +Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp: +The model has the same number of unknowns and equations: 522 +The model could not be deduced to be symbolically well-posed. +The model has + 514+pipeSupply.vol_b.dynBal.nPorts+pipeSupply.vol_a.dynBal.nPorts+ pipeReturn.vol_b.dynBal.nPorts+pipeReturn.vol_a.dynBal.nPorts +scalar unknowns and + 479+(if sourceIdeal.source.use_Xi_in then 1 else (if sourceIdeal.source.use_X_in then 0 else 1))+(if not sourceIdeal.source.use_p_in then 1 else 0)+2* sourceIdeal.source.nPorts+(if not sourceIdeal.source.use_T_in then 1 else 0)+ (if sourceIdeal.sink.use_Xi_in then 1 else (if sourceIdeal.sink.use_X_in then 0 else 1))+(if not sourceIdeal.sink.use_p_in then 1 else 0)+2*sourceIdeal.sink.nPorts +(if not sourceIdeal.sink.use_T_in then 1 else 0)+(if demand.sink.use_Xi_in then 1 else (if demand.sink.use_X_in then 0 else 1))+(if not demand.sink.use_m_flow_in then 1 else 0)+2*demand.sink.nPorts+(if not demand.sink.use_T_in then 1 else 0)+(if demand.source.use_Xi_in then 1 else ( if demand.source.use_X_in then 0 else 1))+(if not demand.source.use_m_flow_in then 1 else 0)+2*demand.source.nPorts+(if not demand.source.use_T_in then 1 else 0)+(if not pipeSupply.vol_b.dynBal.use_mWat_flow then 1 else 0)+3* pipeSupply.vol_b.dynBal.nPorts+(if not pipeSupply.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_a.dynBal.nPorts+(if not pipeReturn.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_b.dynBal.nPorts+(if not pipeReturn.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_a.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 522 +Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPoolExternalHeatingSystem.mos\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem\\\");\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDp.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPoolExternalHeatingSystem.mos"); -simulateModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem", tolerance=1e-6, stopTime=604800, numberOfIntervals=0, outputInterval=900, method="CVode", resultFile="AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem"); -Translation of AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem: -The DAE has 733 scalar unknowns and 733 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDp.mos"); +translateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp"); +Translation of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp: +The DAE has 522 scalar unknowns and 522 scalar equations. Statistics Original Model - Number of components: 171 - Variables: 1742 - Constants: 45 (45 scalars) - Parameters: 777 (964 scalars) - Unknowns: 920 (764 scalars) - Differentiated variables: 3 scalars - Equations: 763 - Nontrivial: 619 + Number of components: 105 + Variables: 1376 + Constants: 25 (25 scalars) + Parameters: 625 (601 scalars) + Unknowns: 726 (538 scalars) + Differentiated variables: 15 scalars + Equations: 623 + Nontrivial: 504 Translated Model - Constants: 629 scalars - Free parameters: 133 scalars - Parameter depending: 374 scalars - Continuous time states: 3 scalars - Time-varying variables: 191 scalars - Alias variables: 446 scalars - Number of mixed real/discrete systems of equations: 1 - Sizes of linear systems of equations: {26} - Sizes after manipulation of the linear systems: {13} - Sizes of nonlinear systems of equations: {79, 1, 1} - Sizes after manipulation of the nonlinear systems: {17, 0, 1} + Constants: 457 scalars + Free parameters: 119 scalars + Parameter depending: 129 scalars + Continuous time states: 11 scalars + Time-varying variables: 123 scalars + Alias variables: 336 scalars + Number of mixed real/discrete systems of equations: 0 + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: {8} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {1, 78, 1} - Sizes after manipulation of the nonlinear systems: {0, 17, 1} + Sizes of nonlinear systems of equations: {8} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - indoorSwimming.cirPump.filter.s[1] - indoorSwimming.cirPump.filter.s[2] - PI.I.y + demand.senT_return.T + demand.senT_supply.T + pControl.I.y + pipeReturn.del.x + pipeReturn.timDel.x + pipeReturn.vol_a.dynBal.U + pipeReturn.vol_b.dynBal.U + pipeSupply.del.x + pipeSupply.timDel.x + pipeSupply.vol_a.dynBal.U + pipeSupply.vol_b.dynBal.U + = true +simulateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp", stopTime=100000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp"); +Not possible to open file "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat": No such file or directory Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.translation.log"); = true +savelog("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageSolarCollector"); -Check of AixLib.Fluid.Storage.Examples.StorageSolarCollector: -The model has the same number of unknowns and equations: 3387 -Check of AixLib.Fluid.Storage.Examples.StorageSolarCollector successful. +rCheck = checkModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystem"); +Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystem: +The model has the same number of unknowns and equations: 367 +The model could not be deduced to be symbolically well-posed. +The model has + 361+combinedHeatPower.vol.dynBal.nPorts+size(combinedHeatPower.combiTable1Ds.columns, 1) +scalar unknowns and + 347+size(combinedHeatPower.combiTable1Ds.columns, 1)+2*source.nPorts+(if not source.use_m_flow_in then 1 else 0)+(if not source.use_T_in then 1 else 0)+( if not source.use_X_in then 1 else 0)+2*sink.nPorts+(if not sink.use_p_in then 1 else 0)+(if not sink.use_T_in then 1 else 0)+(if not sink.use_X_in then 1 else 0)+(if not combinedHeatPower.vol.dynBal.use_mWat_flow then 1 else 0)+3*combinedHeatPower.vol.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 367 +Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystem successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSolarCollector.mos\",", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageSolarCollector\",", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageSolarCollector\\\");\",", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystem.mos\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.BoilerCHP.Examples.CHPSystem\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.BoilerCHP.Examples.CHPSystem\\\");\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSolarCollector.mos"); -simulateModel("AixLib.Fluid.Storage.Examples.StorageSolarCollector", tolerance=1e-6, stopTime=172800, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageSolarCollector"); -Translation of AixLib.Fluid.Storage.Examples.StorageSolarCollector: -The DAE has 3387 scalar unknowns and 3387 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystem.mos"); +simulateModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystem", tolerance=1e-06, stopTime=1200, method="dassl", resultFile="AixLib.Fluid.BoilerCHP.Examples.CHPSystem"); +Translation of AixLib.Fluid.BoilerCHP.Examples.CHPSystem: +The DAE has 367 scalar unknowns and 367 scalar equations. Statistics Original Model - Number of components: 688 - Variables: 8995 - Constants: 163 (163 scalars) - Parameters: 4276 (4349 scalars) - Unknowns: 4556 (3492 scalars) - Differentiated variables: 114 scalars - Equations: 3534 - Nontrivial: 2710 + Number of components: 105 + Variables: 786 + Constants: 8 (8 scalars) + Parameters: 360 (394 scalars) + Unknowns: 418 (371 scalars) + Differentiated variables: 8 scalars + Equations: 404 + Nontrivial: 360 Translated Model - Constants: 2921 scalars - Free parameters: 420 scalars - Parameter depending: 1577 scalars - Continuous time states: 83 scalars - Time-varying variables: 870 scalars - Alias variables: 2216 scalars + Constants: 177 scalars + Free parameters: 143 scalars + Parameter depending: 115 scalars + Continuous time states: 6 scalars + Time-varying variables: 112 scalars + Alias variables: 226 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {4, 3, 3, 2, 2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2} - Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} - Sizes of nonlinear systems of equations: {24, 1, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6} - Sizes after manipulation of the nonlinear systems: {1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1} + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: {8, 9} + Sizes after manipulation of the nonlinear systems: {1, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {24, 1, 1} - Sizes after manipulation of the nonlinear systems: {1, 0, 1} - Number of numerical Jacobians: 0 + Sizes of linear systems of equations: {5} + Sizes after manipulation of the linear systems: {0} Selected continuous time states Statically selected continuous time states - bufferStorage.bottomCover.loadIns.T - bufferStorage.bottomCover.loadWall.T - bufferStorage.heatingCoil1.pipe[1].del.x - bufferStorage.heatingCoil1.pipe[1].timDel.x - bufferStorage.heatingCoil1.pipe[1].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[1].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[2].del.x - bufferStorage.heatingCoil1.pipe[2].timDel.x - bufferStorage.heatingCoil1.pipe[2].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[2].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[3].del.x - bufferStorage.heatingCoil1.pipe[3].timDel.x - bufferStorage.heatingCoil1.pipe[3].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[3].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[4].del.x - bufferStorage.heatingCoil1.pipe[4].timDel.x - bufferStorage.heatingCoil1.pipe[4].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[4].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[5].del.x - bufferStorage.heatingCoil1.pipe[5].timDel.x - bufferStorage.heatingCoil1.pipe[5].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[5].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[6].del.x - bufferStorage.heatingCoil1.pipe[6].timDel.x - bufferStorage.heatingCoil1.pipe[6].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[6].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[7].del.x - bufferStorage.heatingCoil1.pipe[7].timDel.x - bufferStorage.heatingCoil1.pipe[7].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[7].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[8].del.x - bufferStorage.heatingCoil1.pipe[8].timDel.x - bufferStorage.heatingCoil1.pipe[8].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[8].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[9].del.x - bufferStorage.heatingCoil1.pipe[9].timDel.x - bufferStorage.heatingCoil1.pipe[9].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[9].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[10].del.x - bufferStorage.heatingCoil1.pipe[10].timDel.x - bufferStorage.heatingCoil1.pipe[10].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[10].vol_b.dynBal.U - bufferStorage.layer[1].dynBal.U - bufferStorage.layer[2].dynBal.U - bufferStorage.layer[3].dynBal.U - bufferStorage.layer[4].dynBal.U - bufferStorage.layer[5].dynBal.U - bufferStorage.layer[6].dynBal.U - bufferStorage.layer[7].dynBal.U - bufferStorage.layer[8].dynBal.U - bufferStorage.layer[9].dynBal.U - bufferStorage.layer[10].dynBal.U - bufferStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[6].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[6].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[7].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[7].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[8].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[8].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[9].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[9].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[10].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[10].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.topCover.loadIns.T - bufferStorage.topCover.loadWall.T - PI.I.y - pump.filter.s[1] - pump.filter.s[2] - solarThermal.senTCold.T - solarThermal.senTHot.T - solarThermal.vol.dynBal.U - temperatureSensor.T - valve.filter.s[1] - valve.filter.s[2] + combinedHeatPower.elControl.I.y + combinedHeatPower.senTCold.T + combinedHeatPower.senTHot.T + combinedHeatPower.thControl.PI.I.y + combinedHeatPower.thControl.PI1.I.y + combinedHeatPower.vol.dynBal.medium.T Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Storage.Examples.StorageSolarCollector.translation.log"); = true +savelog("AixLib.Fluid.BoilerCHP.Examples.CHPSystem.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass"); -Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass: -The model has the same number of unknowns and equations: 572 +rCheck = checkModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst"); +Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst: +The model has the same number of unknowns and equations: 250 The model could not be deduced to be symbolically well-posed. The model has - 562+demand.vol.dynBal.nPorts+pipeSupply.vol_b.dynBal.nPorts+pipeSupply.vol_a.dynBal.nPorts +pipeReturn.vol_b.dynBal.nPorts+pipeReturn.vol_a.dynBal.nPorts + 248+vol.dynBal.nPorts scalar unknowns and - 522+(if sourceIdeal.source.use_Xi_in then 1 else (if sourceIdeal.source.use_X_in then 0 else 1))+(if not sourceIdeal.source.use_p_in then 1 else 0)+2* sourceIdeal.source.nPorts+(if not sourceIdeal.source.use_T_in then 1 else 0)+ (if sourceIdeal.sink.use_Xi_in then 1 else (if sourceIdeal.sink.use_X_in then 0 else 1))+(if not sourceIdeal.sink.use_p_in then 1 else 0)+2*sourceIdeal.sink.nPorts +(if not sourceIdeal.sink.use_T_in then 1 else 0)+(if demand.sink.use_Xi_in then 1 else (if demand.sink.use_X_in then 0 else 1))+(if not demand.sink.use_m_flow_in then 1 else 0)+2*demand.sink.nPorts+(if not demand.sink.use_T_in then 1 else 0)+(if demand.source.use_Xi_in then 1 else ( if demand.source.use_X_in then 0 else 1))+(if not demand.source.use_m_flow_in then 1 else 0)+2*demand.source.nPorts+(if not demand.source.use_T_in then 1 else 0)+(if not demand.vol.dynBal.use_mWat_flow then 1 else 0)+3* demand.vol.dynBal.nPorts+(if not pipeSupply.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_b.dynBal.nPorts+(if not pipeSupply.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_a.dynBal.nPorts+(if not pipeReturn.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_b.dynBal.nPorts+(if not pipeReturn.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_a.dynBal.nPorts + 237+(if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_p_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+ (if not dpControlled_dp.mov.vol.steBal.use_mWat_flow then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+3*vol.dynBal.nPorts scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 572 -Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass successful. + 250 +Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpConst.mos\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst\\\");\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mos"); -translateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass"); -Translation of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass: -The DAE has 572 scalar unknowns and 572 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpConst.mos"); +simulateModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst", startTime=0, stopTime=3600, tolerance=1e-6, method="dassl", resultFile="AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst"); +Translation of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst: +The DAE has 250 scalar unknowns and 250 scalar equations. Statistics Original Model - Number of components: 114 - Variables: 1506 - Constants: 29 (29 scalars) - Parameters: 675 (646 scalars) - Unknowns: 802 (590 scalars) - Differentiated variables: 17 scalars - Equations: 680 - Nontrivial: 543 + Number of components: 82 + Variables: 814 + Constants: 19 (19 scalars) + Parameters: 465 (949 scalars) + Unknowns: 330 (265 scalars) + Differentiated variables: 7 scalars + Equations: 284 + Nontrivial: 236 Translated Model - Constants: 509 scalars - Free parameters: 121 scalars - Parameter depending: 138 scalars - Continuous time states: 12 scalars - Time-varying variables: 132 scalars - Alias variables: 365 scalars + Constants: 686 scalars + Free parameters: 51 scalars + Parameter depending: 271 scalars + Outputs: 1 scalars + Continuous time states: 5 scalars + Time-varying variables: 61 scalars + Alias variables: 164 scalars Number of mixed real/discrete systems of equations: 0 Sizes of linear systems of equations: { } Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {8} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of nonlinear systems of equations: {3, 1} + Sizes after manipulation of the nonlinear systems: {1, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {8} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of nonlinear systems of equations: {3, 1, 1} + Sizes after manipulation of the nonlinear systems: {1, 0, 1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - demand.senT_return.T - demand.senT_supply.T - demand.vol.dynBal.U - pControl.I.y - pipeReturn.del.x - pipeReturn.timDel.x - pipeReturn.vol_a.dynBal.U - pipeReturn.vol_b.dynBal.U - pipeSupply.del.x - pipeSupply.timDel.x - pipeSupply.vol_a.dynBal.U - pipeSupply.vol_b.dynBal.U + dpControlled_dp.mov.filter.s[1] + dpControlled_dp.mov.filter.s[2] + integrator.y + val.filter.s[1] + val.filter.s[2] - = true -simulateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass", stopTime=100000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass"); -Not possible to open file "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mat": No such file or directory Finished = true + + Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.translation.log"); = true +savelog("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded"); -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded: -The model has the same number of unknowns and equations: 256 +rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageSimpleExample"); +Check of AixLib.Fluid.Storage.Examples.StorageSimpleExample: +The model has the same number of unknowns and equations: 964 The model could not be deduced to be symbolically well-posed. The model has - 254+pip.plugFlowPipeZeta.vol.dynBal.nPorts + 938+storageSimple.layer[1].dynBal.nPorts+storageSimple.layer[2].dynBal.nPorts+ storageSimple.layer[3].dynBal.nPorts+storageSimple.layer_HE[1].dynBal.nPorts+ storageSimple.layer_HE[2].dynBal.nPorts+storageSimple.layer_HE[3].dynBal.nPorts +2*storageSimple.n+heatingRod.vol.dynBal.nPorts+simpleConsumer.volume.dynBal.nPorts +pumpGen.vol.dynBal.nPorts+pumpCon.vol.dynBal.nPorts scalar unknowns and - 240+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if not pip.plugFlowPipeZeta.vol.dynBal.use_mWat_flow then 1 else 0) +3*pip.plugFlowPipeZeta.vol.dynBal.nPorts + 869+(if storageSimple.use_TOut then 2*storageSimple.n else 0)+(if pressureBoundary.use_Xi_in then 1 else (if pressureBoundary.use_X_in then 0 else 1))+(if not pressureBoundary.use_p_in then 1 else 0)+2*pressureBoundary.nPorts +(if not pressureBoundary.use_T_in then 1 else 0)+(if pressureBoundary1.use_Xi_in then 1 else (if pressureBoundary1.use_X_in then 0 else 1))+(if not pressureBoundary1.use_p_in then 1 else 0)+2*pressureBoundary1.nPorts+(if not pressureBoundary1.use_T_in then 1 else 0)+(if PIDHR.reset <> AixLib.Types.Reset. Input then 1 else 0)+(if PIDPumpGen.reset <> AixLib.Types.Reset.Input then 1 else 0)+(if PIDPumpCon.reset <> AixLib.Types.Reset.Input then 1 else 0)+(if not storageSimple.layer[1].dynBal.use_mWat_flow then 1 else 0)+3* storageSimple.layer[1].dynBal.nPorts+(if not storageSimple.layer[2].dynBal.use_mWat_flow then 1 else 0)+3*storageSimple.layer[2].dynBal.nPorts+(if not storageSimple.layer[3].dynBal.use_mWat_flow then 1 else 0)+3*storageSimple.layer[3].dynBal.nPorts +(if not storageSimple.layer_HE[1].dynBal.use_mWat_flow then 1 else 0)+3* storageSimple.layer_HE[1].dynBal.nPorts+(if not storageSimple.layer_HE[2].dynBal.use_mWat_flow then 1 else 0)+3*storageSimple.layer_HE[2].dynBal.nPorts+(if not storageSimple.layer_HE[3].dynBal.use_mWat_flow then 1 else 0)+3* storageSimple.layer_HE[3].dynBal.nPorts+(if not heatingRod.vol.dynBal.use_mWat_flow then 1 else 0)+3*heatingRod.vol.dynBal.nPorts+(if not simpleConsumer.volume.dynBal.use_mWat_flow then 1 else 0)+3*simpleConsumer.volume.dynBal.nPorts+(if not pumpGen.vol.dynBal.use_mWat_flow then 1 else 0)+3*pumpGen.vol.dynBal.nPorts+( if not pumpCon.vol.dynBal.use_mWat_flow then 1 else 0)+3*pumpCon.vol.dynBal.nPorts +(if (if PIDHR.reset == AixLib.Types.Reset.Disabled then PIDHR.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if PIDHR.reset == AixLib.Types.Reset.Disabled then PIDHR.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0)+(if ( if PIDPumpGen.reset == AixLib.Types.Reset.Disabled then PIDPumpGen.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if PIDPumpGen.reset == AixLib.Types.Reset.Disabled then PIDPumpGen.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0)+(if ( if PIDPumpCon.reset == AixLib.Types.Reset.Disabled then PIDPumpCon.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if PIDPumpCon.reset == AixLib.Types.Reset.Disabled then PIDPumpCon.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0) scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 256 -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded successful. + 964 +Check of AixLib.Fluid.Storage.Examples.StorageSimpleExample successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeEmbedded.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSimpleExample.mos\",", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageSimpleExample\",", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageSimpleExample\\\");\",", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeEmbedded.mos"); -translateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded"); -Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded: -The DAE has 256 scalar unknowns and 256 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSimpleExample.mos"); +simulateModel("AixLib.Fluid.Storage.Examples.StorageSimpleExample", tolerance=1e-6, stopTime=38200, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageSimpleExample"); +Translation of AixLib.Fluid.Storage.Examples.StorageSimpleExample: +The DAE has 964 scalar unknowns and 964 scalar equations. Statistics Original Model - Number of components: 53 - Variables: 739 - Constants: 11 (11 scalars) - Parameters: 390 (383 scalars) - Unknowns: 338 (264 scalars) - Differentiated variables: 9 scalars - Equations: 267 - Nontrivial: 229 + Number of components: 247 + Variables: 2530 + Constants: 57 (57 scalars) + Parameters: 1181 (1670 scalars) + Unknowns: 1292 (1010 scalars) + Differentiated variables: 28 scalars + Equations: 1101 + Nontrivial: 860 Translated Model - Constants: 224 scalars - Free parameters: 64 scalars - Parameter depending: 145 scalars - Continuous time states: 8 scalars - Time-varying variables: 57 scalars - Alias variables: 168 scalars + Constants: 1047 scalars + Free parameters: 186 scalars + Parameter depending: 627 scalars + Outputs: 1 scalars + Continuous time states: 17 scalars + Time-varying variables: 245 scalars + Alias variables: 632 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {2, 2} - Sizes after manipulation of the linear systems: {0, 0} - Sizes of nonlinear systems of equations: {6} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of linear systems of equations: {4} + Sizes after manipulation of the linear systems: {0} + Sizes of nonlinear systems of equations: {5, 7} + Sizes after manipulation of the nonlinear systems: {1, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {14} - Sizes after manipulation of the nonlinear systems: {6} + Sizes of nonlinear systems of equations: {5, 7} + Sizes after manipulation of the nonlinear systems: {1, 1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - pip.cylindricHeatTransfer_1.CylindricLoad1.heatCapacitor.T - pip.cylindricHeatTransfer_2.CylindricLoad1.heatCapacitor.T - pip.cylindricHeatTransfer_3.CylindricLoad1.heatCapacitor.T - pip.plugFlowPipeZeta.plugFlowCore.del.x - pip.plugFlowPipeZeta.plugFlowCore.timDel.x - pip.plugFlowPipeZeta.vol.dynBal.U - senTemIn.T - senTemOut.T + heatingRod.vol.dynBal.U + PIDHR.I.y + PIDPumpCon.I.y + PIDPumpGen.I.y + pumpCon.filter.s[1] + pumpCon.filter.s[2] + pumpCon.vol.dynBal.U + pumpGen.filter.s[1] + pumpGen.filter.s[2] + pumpGen.vol.dynBal.U + simpleConsumer.heatCapacitor.T + storageSimple.layer[1].dynBal.U + storageSimple.layer[2].dynBal.U + storageSimple.layer[3].dynBal.U + storageSimple.layer_HE[1].dynBal.U + storageSimple.layer_HE[2].dynBal.U + storageSimple.layer_HE[3].dynBal.U - = true -simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded", stopTime=1000, method="dassl", tolerance=1e-6, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded"); Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.translation.log"); = true +savelog("AixLib.Fluid.Storage.Examples.StorageSimpleExample.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled"); -Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled: -The model has the same number of unknowns and equations: 156 +rCheck = checkModel("AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator"); +Check of AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator: +Warning: Non-literal value. +In nominal attribute for rad.res.m_flow. +Ignoring nominal attribute. +In class Modelica.Units.SI. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Units.mo, line 237 +Used in base-class rad.res.PartialTwoPortInterface. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/BaseClasses/PartialResistance.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +The model has the same number of unknowns and equations: 1647 The model could not be deduced to be symbolically well-posed. The model has - 144+2*(size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2) +pump.criticalDamping.n+pump.vol.dynBal.nPorts + 1604+2*(rad.nEle+vol.dynBal.nPorts)+max([size(timTab.columns, 1); size( timTab.offset, 1)])+rad.vol[1].dynBal.nPorts+rad.vol[2].dynBal.nPorts+ rad.vol[3].dynBal.nPorts+rad.vol[4].dynBal.nPorts+rad.vol[5].dynBal.nPorts+ rad.sumCon.nin+rad.sumRad.nin+heaPum.con.vol.dynBal.nPorts+heaPum.eva.vol.dynBal.nPorts +size(heaPum.safCtr.opeEnv.bouMapHea.tabBou.columns, 1)+heaPum.safCtr.opeEnv.bouMapHea.nor.nu +size(heaPum.safCtr.opeEnv.bouMapCoo.tabBou.columns, 1)+heaPum.safCtr.opeEnv.bouMapCoo.nor.nu scalar unknowns and - 134+2*size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2 +pump.criticalDamping.n+(if vessle.use_Xi_in then 1 else (if vessle.use_X_in then 0 else 1))+(if not vessle.use_p_in then 1 else 0)+2*vessle.nPorts+(if not vessle.use_T_in then 1 else 0)+(if not pump.vol.dynBal.use_mWat_flow then 1 else 0)+3*pump.vol.dynBal.nPorts + 1564+max([size(timTab.columns, 1); size(timTab.offset, 1)])+(if weaDat.pAtmSou == AixLib.BoundaryConditions.Types.DataSource.Parameter then 1 else 0)+(if weaDat.TDewPoiSou == AixLib.BoundaryConditions.Types.DataSource.Parameter then 1 else 0)+(if weaDat.TDryBulSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.TBlaSkySou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.relHumSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.opaSkyCovSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.ceiHeiSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.totSkyCovSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.winSpeSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.winDirSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.HInfHorSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.HSou == AixLib.BoundaryConditions.Types.RadiationDataSource. Input_HDirNor_HDifHor then 2 else 1)+(if weaDat.HSou == AixLib.BoundaryConditions.Types.RadiationDataSource. Input_HDirNor_HGloHor then 2 else 1)+(if weaDat.HSou == AixLib.BoundaryConditions.Types.RadiationDataSource. Input_HGloHor_HDifHor then 2 else 1)+(if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_p_in then 1 else 0)+2*sou.nPorts +(if not sou.use_T_in then 1 else 0)+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts +(if not sin.use_T_in then 1 else 0)+(if preSou.use_Xi_in then 1 else (if preSou.use_X_in then 0 else 1))+(if not preSou.use_p_in then 1 else 0)+2* preSou.nPorts+(if not preSou.use_T_in then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+5*vol.dynBal.nPorts+(if not rad.vol[1].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[1].dynBal.nPorts+(if not rad.vol[2].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[2].dynBal.nPorts +(if not rad.vol[3].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[3].dynBal.nPorts +(if not rad.vol[4].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[4].dynBal.nPorts +(if not rad.vol[5].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[5].dynBal.nPorts +(if not pumHeaPum.vol.steBal.use_mWat_flow then 1 else 0)+(if not pumHeaPumSou.vol.steBal.use_mWat_flow then 1 else 0)+(if not heaPum.con.vol.dynBal.use_mWat_flow then 1 else 0)+3*heaPum.con.vol.dynBal.nPorts+(if not heaPum.eva.vol.dynBal.use_mWat_flow then 1 else 0)+3*heaPum.eva.vol.dynBal.nPorts+size(heaPum.safCtr.opeEnv.bouMapHea.tabBou.columns, 1)+size(heaPum.safCtr.opeEnv.bouMapCoo.tabBou.columns, 1)+2*rad.nEle scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 156 -Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled successful. + 1647 +Check of AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator successful. +Warning: WARNINGS have been issued. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlled.mos\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled\\\");\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); - - -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlled.mos"); -simulateModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled", tolerance=1e-6, stopTime=600.0, method="dassl", resultFile="AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled"); -Translation of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled: -The DAE has 156 scalar unknowns and 156 scalar equations. +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/HeatPumps/ModularReversible/Examples/TableData3D_OneRoomRadiator.mos\",", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator\",", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator\\\");\",", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.statistics.log"); + + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/HeatPumps/ModularReversible/Examples/TableData3D_OneRoomRadiator.mos"); +simulateModel("AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator", stopTime=86400, method="CVode", tolerance=1e-08, resultFile="AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator"); +Translation of AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator: +Warning: Non-literal value. +In nominal attribute for rad.res.m_flow. +Ignoring nominal attribute. +In class Modelica.Units.SI. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Units.mo, line 237 +Used in base-class rad.res.PartialTwoPortInterface. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/BaseClasses/PartialResistance.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +The DAE has 1647 scalar unknowns and 1647 scalar equations. Statistics Original Model - Number of components: 35 - Variables: 388 - Constants: 15 (15 scalars) - Parameters: 177 (374 scalars) - Unknowns: 196 (160 scalars) - Differentiated variables: 6 scalars - Equations: 163 - Nontrivial: 137 + Number of components: 446 + Variables: 3567 + Constants: 78 (78 scalars) + Parameters: 1711 (2047 scalars) + Unknowns: 1778 (1690 scalars) + Differentiated variables: 22 scalars + Equations: 1659 + Nontrivial: 1384 Translated Model - Constants: 242 scalars - Free parameters: 135 scalars - Parameter depending: 38 scalars - Outputs: 7 scalars - Continuous time states: 4 scalars - Time-varying variables: 37 scalars - Alias variables: 97 scalars + Constants: 1277 scalars + Free parameters: 250 scalars + Parameter depending: 862 scalars + Outputs: 24 scalars + Continuous time states: 14 scalars + Time-varying variables: 363 scalars + Alias variables: 1063 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {1} - Sizes after manipulation of the nonlinear systems: {0} + Sizes of linear systems of equations: {2, 2, 2, 2, 2, 4} + Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0} + Sizes of nonlinear systems of equations: {3} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {1} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of nonlinear systems of equations: {11, 1, 1, 2} + Sizes after manipulation of the nonlinear systems: {5, 1, 1, 1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - pump.criticalDamping.x[1] - pump.criticalDamping.x[2] - simpleValve.filter.s[1] - simpleValve.filter.s[2] + heaPum.con.vol.dynBal.U + heaPum.eva.vol.dynBal.U + oneRooRadHeaPumCtr.PIDCoo.I.y + oneRooRadHeaPumCtr.PIDHea.I.y + rad.vol[1].dynBal.U + rad.vol[2].dynBal.U + rad.vol[3].dynBal.U + rad.vol[4].dynBal.U + rad.vol[5].dynBal.U + temRet.T + temSup.T + vol.dynBal.m + vol.dynBal.medium.Xi[1] + vol.hOut_internal +Warning: WARNINGS have been issued. Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.translation.log"); = true +savelog("AixLib.Fluid.HeatPumps.ModularReversible.Examples.TableData3D_OneRoomRadiator.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.HeatExchangers.Examples.HeatingRod"); -Check of AixLib.Fluid.HeatExchangers.Examples.HeatingRod: -The model has the same number of unknowns and equations: 327 +rCheck = checkModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar"); +Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar: +The model has the same number of unknowns and equations: 250 The model could not be deduced to be symbolically well-posed. The model has - 322+vol.dynBal.nPorts+heatingRod.vol.dynBal.nPorts + 248+vol.dynBal.nPorts scalar unknowns and - 301+(if conPI.reset <> AixLib.Types.Reset.Input then 1 else 0)+(if bou.use_Xi_in then 1 else (if bou.use_X_in then 0 else 1))+(if not bou.use_p_in then 1 else 0)+2*bou.nPorts+(if not bou.use_T_in then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+3*vol.dynBal.nPorts+(if not mov.vol.steBal.use_mWat_flow then 1 else 0)+(if (if conPI.reset == AixLib.Types.Reset.Disabled then conPI.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if conPI.reset == AixLib.Types.Reset.Disabled then conPI.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0)+(if not heatingRod.vol.dynBal.use_mWat_flow then 1 else 0)+3*heatingRod.vol.dynBal.nPorts + 237+(if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_p_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+ (if not dpControlled_dp.mov.vol.steBal.use_mWat_flow then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+3*vol.dynBal.nPorts scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 327 -Check of AixLib.Fluid.HeatExchangers.Examples.HeatingRod successful. + 250 +Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/HeatExchangers/Examples/HeatingRod.mos\",", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.HeatExchangers.Examples.HeatingRod\",", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.HeatExchangers.Examples.HeatingRod\\\");\",", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpVar.mos\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar\\\");\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/HeatExchangers/Examples/HeatingRod.mos"); -simulateModel("AixLib.Fluid.HeatExchangers.Examples.HeatingRod", stopTime=172800, method="Radau", tolerance=1e-6, resultFile="AixLib.Fluid.HeatExchangers.Examples.HeatingRod"); -Translation of AixLib.Fluid.HeatExchangers.Examples.HeatingRod: -The DAE has 327 scalar unknowns and 327 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpVar.mos"); +simulateModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar", startTime=0, stopTime=3600, tolerance=1e-6, method="dassl", resultFile="AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar"); +Translation of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar: +The DAE has 250 scalar unknowns and 250 scalar equations. Statistics Original Model - Number of components: 93 - Variables: 927 - Constants: 21 (21 scalars) - Parameters: 472 (578 scalars) - Unknowns: 434 (342 scalars) - Differentiated variables: 8 scalars - Equations: 376 - Nontrivial: 305 + Number of components: 82 + Variables: 814 + Constants: 19 (19 scalars) + Parameters: 465 (949 scalars) + Unknowns: 330 (265 scalars) + Differentiated variables: 7 scalars + Equations: 284 + Nontrivial: 236 Translated Model - Constants: 397 scalars - Free parameters: 66 scalars - Parameter depending: 209 scalars - Outputs: 2 scalars - Continuous time states: 6 scalars - Time-varying variables: 79 scalars - Alias variables: 190 scalars + Constants: 686 scalars + Free parameters: 51 scalars + Parameter depending: 271 scalars + Outputs: 1 scalars + Continuous time states: 5 scalars + Time-varying variables: 61 scalars + Alias variables: 164 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {2} - Sizes after manipulation of the linear systems: {0} - Sizes of nonlinear systems of equations: { } - Sizes after manipulation of the nonlinear systems: { } + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: {3, 1} + Sizes after manipulation of the nonlinear systems: {1, 1} Number of numerical Jacobians: 0 + Initialization problem + Sizes of nonlinear systems of equations: {3, 1, 1} + Sizes after manipulation of the nonlinear systems: {1, 0, 1} + Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - conPI.I.y - heatingRod.vol.dynBal.U - mov.filter.s[1] - mov.filter.s[2] - THeaOut.T - vol.dynBal.U + dpControlled_dp.mov.filter.s[1] + dpControlled_dp.mov.filter.s[2] + integrator.y + val.filter.s[1] + val.filter.s[2] Finished = true + + Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.HeatExchangers.Examples.HeatingRod.translation.log"); = true +savelog("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageDetailedExample"); -Check of AixLib.Fluid.Storage.Examples.StorageDetailedExample: -The model has the same number of unknowns and equations: 2714 -Check of AixLib.Fluid.Storage.Examples.StorageDetailedExample successful. +rCheck = checkModel("AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump"); +Check of AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump: +Warning: Redeclaration requires a subtype. + But missing component dp_start. + In redeclaration of PeakLoadDeviceModel. + File: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpBase.mo, line 20 + Context: AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.PeakLoadDeviceModel +The model has the same number of unknowns and equations: 4699 +Check of AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageDetailedExample.mos\",", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageDetailedExample\",", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageDetailedExample\\\");\",", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Examples/GeothermalHeatPump.mos\",", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump\",", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump\\\");\",", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageDetailedExample.mos"); -simulateModel("AixLib.Fluid.Storage.Examples.StorageDetailedExample", tolerance=1e-6, stopTime=86400, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageDetailedExample"); -Translation of AixLib.Fluid.Storage.Examples.StorageDetailedExample: -The DAE has 2714 scalar unknowns and 2714 scalar equations. - -Statistics - -Original Model - Number of components: 532 - Variables: 7113 - Constants: 124 (124 scalars) - Parameters: 3345 (3234 scalars) - Unknowns: 3644 (2792 scalars) - Differentiated variables: 92 scalars - Equations: 2756 - Nontrivial: 2117 -Translated Model - Constants: 2426 scalars - Free parameters: 222 scalars - Parameter depending: 1324 scalars - Continuous time states: 66 scalars - Time-varying variables: 623 scalars - Alias variables: 1555 scalars - Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2} - Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} - Sizes of nonlinear systems of equations: {6, 6, 6, 6, 6, 6, 6, 6} - Sizes after manipulation of the nonlinear systems: {1, 1, 1, 1, 1, 1, 1, 1} - Number of numerical Jacobians: 0 - -Selected continuous time states -Statically selected continuous time states - bufferStorage.bottomCover.loadIns.T - bufferStorage.bottomCover.loadWall.T - bufferStorage.heatingCoil1.pipe[1].del.x - bufferStorage.heatingCoil1.pipe[1].timDel.x - bufferStorage.heatingCoil1.pipe[1].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[1].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[2].del.x - bufferStorage.heatingCoil1.pipe[2].timDel.x - bufferStorage.heatingCoil1.pipe[2].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[2].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[3].del.x - bufferStorage.heatingCoil1.pipe[3].timDel.x - bufferStorage.heatingCoil1.pipe[3].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[3].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[4].del.x - bufferStorage.heatingCoil1.pipe[4].timDel.x - bufferStorage.heatingCoil1.pipe[4].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[4].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[5].del.x - bufferStorage.heatingCoil1.pipe[5].timDel.x - bufferStorage.heatingCoil1.pipe[5].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[5].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[6].del.x - bufferStorage.heatingCoil1.pipe[6].timDel.x - bufferStorage.heatingCoil1.pipe[6].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[6].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[7].del.x - bufferStorage.heatingCoil1.pipe[7].timDel.x - bufferStorage.heatingCoil1.pipe[7].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[7].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[8].del.x - bufferStorage.heatingCoil1.pipe[8].timDel.x - bufferStorage.heatingCoil1.pipe[8].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[8].vol_b.dynBal.U - bufferStorage.layer[1].dynBal.U - bufferStorage.layer[2].dynBal.U - bufferStorage.layer[3].dynBal.U - bufferStorage.layer[4].dynBal.U - bufferStorage.layer[5].dynBal.U - bufferStorage.layer[6].dynBal.U - bufferStorage.layer[7].dynBal.U - bufferStorage.layer[8].dynBal.U - bufferStorage.layer[9].dynBal.U - bufferStorage.layer[10].dynBal.U - bufferStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[6].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[6].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[7].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[7].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[8].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[8].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[9].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[9].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[10].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[10].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.topCover.loadIns.T - bufferStorage.topCover.loadWall.T - -Finished - = true - -Declaring variable: Boolean rScript ; - -savelog("AixLib.Fluid.Storage.Examples.StorageDetailedExample.translation.log"); = true - - -rCheck = checkModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV"); -Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV: -The model has the same number of unknowns and equations: 220 -The model could not be deduced to be symbolically well-posed. -The model has - 208+2*(size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2) +pump.criticalDamping.n+pump.vol.dynBal.nPorts -scalar unknowns and - 198+2*size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2 +pump.criticalDamping.n+(if vessle.use_Xi_in then 1 else (if vessle.use_X_in then 0 else 1))+(if not vessle.use_p_in then 1 else 0)+2*vessle.nPorts+(if not vessle.use_T_in then 1 else 0)+(if not pump.vol.dynBal.use_mWat_flow then 1 else 0)+3*pump.vol.dynBal.nPorts -scalar equations. -However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 220 -Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV successful. -Declaring variable: Boolean rCheck ; - -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlledDpV.mos\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV\\\");\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); - - -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlledDpV.mos"); -simulateModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV", tolerance=1e-6, stopTime=600.0, method="dassl", resultFile="AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV"); -Translation of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV: -The DAE has 220 scalar unknowns and 220 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Examples/GeothermalHeatPump.mos"); +simulateModel("AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump", startTime=0, stopTime=86400, method="dassl", tolerance=1e-06, resultFile="AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump"); +Translation of AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump: +Warning: Redeclaration requires a subtype. + But missing component dp_start. + In redeclaration of PeakLoadDeviceModel. + File: /tmp/tmp-AixLib-1-fyqfef0c/AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpBase.mo, line 20 + Context: AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.PeakLoadDeviceModel +The DAE has 4699 scalar unknowns and 4699 scalar equations. +Sparse solver handling possible: false. +Due to flag Advanced.SparseActivate=false. +Model sparse and large enough: true. +Sparse solvers are available for dassl, lsodar, cvode, radau, esdirk*, sdirk* (using OpenMP, set number of cores with Advanced.NumberOfCores). Statistics Original Model - Number of components: 58 - Variables: 526 - Constants: 16 (16 scalars) - Parameters: 242 (586 scalars) - Unknowns: 268 (224 scalars) - Differentiated variables: 8 scalars - Equations: 228 - Nontrivial: 195 + Number of components: 1061 + Variables: 12395 + Constants: 219 (219 scalars) + Parameters: 6093 (7317 scalars) + Unknowns: 6083 (4872 scalars) + Differentiated variables: 147 scalars + Equations: 4946 + Nontrivial: 3872 Translated Model - Constants: 261 scalars - Free parameters: 310 scalars - Parameter depending: 59 scalars - Outputs: 4 scalars - Continuous time states: 6 scalars - Time-varying variables: 50 scalars - Alias variables: 146 scalars + Constants: 4153 scalars + Free parameters: 915 scalars + Parameter depending: 3104 scalars + Outputs: 17 scalars + Continuous time states: 109 scalars + Time-varying variables: 1171 scalars + Alias variables: 3065 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {1} - Sizes after manipulation of the nonlinear systems: {0} + Sizes of linear systems of equations: {2, 3, 2, 2, 4, 3, 17, 2, 2, 2, 2, 2, 2, 2, 2, 3, 4, 2, 4, 3, 17, 4, 2, 2, 2, 2, 2, 2, 2, 2} + Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0} + Sizes of nonlinear systems of equations: {5, 12, 12, 5, 6, 6, 6, 3, 1, 6, 6, 6, 6, 6, 6, 6} + Sizes after manipulation of the nonlinear systems: {1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 1, 1, 1, 1, 1, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {1} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of nonlinear systems of equations: {5, 1, 12, 1, 12, 1, 5, 1, 3, 1} + Sizes after manipulation of the nonlinear systems: {2, 0, 1, 0, 1, 0, 1, 0, 1, 0} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - ctrlDpVarN.PID.D.x - ctrlDpVarN.PID.I.y - pump.criticalDamping.x[1] - pump.criticalDamping.x[2] - simpleValve.filter.s[1] - simpleValve.filter.s[2] + coldStorage.bottomCover.loadIns.T + coldStorage.bottomCover.loadWall.T + coldStorage.heatingCoil1.pipe[1].del.x + coldStorage.heatingCoil1.pipe[1].timDel.x + coldStorage.heatingCoil1.pipe[1].vol_a.dynBal.U + coldStorage.heatingCoil1.pipe[1].vol_b.dynBal.U + coldStorage.heatingCoil1.pipe[2].del.x + coldStorage.heatingCoil1.pipe[2].timDel.x + coldStorage.heatingCoil1.pipe[2].vol_a.dynBal.U + coldStorage.heatingCoil1.pipe[2].vol_b.dynBal.U + coldStorage.heatingCoil1.pipe[3].del.x + coldStorage.heatingCoil1.pipe[3].timDel.x + coldStorage.heatingCoil1.pipe[3].vol_a.dynBal.U + coldStorage.heatingCoil1.pipe[3].vol_b.dynBal.U + coldStorage.heatingCoil1.pipe[4].del.x + coldStorage.heatingCoil1.pipe[4].timDel.x + coldStorage.heatingCoil1.pipe[4].vol_a.dynBal.U + coldStorage.heatingCoil1.pipe[4].vol_b.dynBal.U + coldStorage.heatingCoil1.pipe[5].del.x + coldStorage.heatingCoil1.pipe[5].timDel.x + coldStorage.heatingCoil1.pipe[5].vol_a.dynBal.U + coldStorage.heatingCoil1.pipe[5].vol_b.dynBal.U + coldStorage.layer[1].dynBal.U + coldStorage.layer[2].dynBal.U + coldStorage.layer[3].dynBal.U + coldStorage.layer[4].dynBal.U + coldStorage.layer[5].dynBal.U + coldStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T + coldStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T + coldStorage.topCover.loadIns.T + coldStorage.topCover.loadWall.T + heatPump.con.vol.dynBal.U + heatPump.eva.vol.dynBal.U + heatStorage.bottomCover.loadIns.T + heatStorage.bottomCover.loadWall.T + heatStorage.heatingCoil1.pipe[1].del.x + heatStorage.heatingCoil1.pipe[1].timDel.x + heatStorage.heatingCoil1.pipe[1].vol_a.dynBal.U + heatStorage.heatingCoil1.pipe[1].vol_b.dynBal.U + heatStorage.heatingCoil1.pipe[2].del.x + heatStorage.heatingCoil1.pipe[2].timDel.x + heatStorage.heatingCoil1.pipe[2].vol_a.dynBal.U + heatStorage.heatingCoil1.pipe[2].vol_b.dynBal.U + heatStorage.heatingCoil1.pipe[3].del.x + heatStorage.heatingCoil1.pipe[3].timDel.x + heatStorage.heatingCoil1.pipe[3].vol_a.dynBal.U + heatStorage.heatingCoil1.pipe[3].vol_b.dynBal.U + heatStorage.heatingCoil1.pipe[4].del.x + heatStorage.heatingCoil1.pipe[4].timDel.x + heatStorage.heatingCoil1.pipe[4].vol_a.dynBal.U + heatStorage.heatingCoil1.pipe[4].vol_b.dynBal.U + heatStorage.heatingCoil1.pipe[5].del.x + heatStorage.heatingCoil1.pipe[5].timDel.x + heatStorage.heatingCoil1.pipe[5].vol_a.dynBal.U + heatStorage.heatingCoil1.pipe[5].vol_b.dynBal.U + heatStorage.layer[1].dynBal.U + heatStorage.layer[2].dynBal.U + heatStorage.layer[3].dynBal.U + heatStorage.layer[4].dynBal.U + heatStorage.layer[5].dynBal.U + heatStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T + heatStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T + heatStorage.topCover.loadIns.T + heatStorage.topCover.loadWall.T + peaLoaDev.boiler.internalControl.ControlerHeater.PI.I.y + peaLoaDev.boiler.internalControl.eEnergyMeter_P.q_joule + peaLoaDev.boiler.internalControl.eEnergyMeter_S.q_joule + peaLoaDev.boiler.senTCold.T + peaLoaDev.boiler.senTHot.T + peaLoaDev.boiler.vol.dynBal.U + pumpColdConsumer.filter.s[1] + pumpColdConsumer.filter.s[2] + pumpColdConsumer.vol.dynBal.U + pumpCondenser.filter.s[1] + pumpCondenser.filter.s[2] + pumpCondenser.vol.dynBal.U + pumpEvaporator.filter.s[1] + pumpEvaporator.filter.s[2] + pumpEvaporator.vol.dynBal.U + pumpGeothermalSource.filter.s[1] + pumpGeothermalSource.filter.s[2] + pumpGeothermalSource.vol.dynBal.U + pumpHeatConsumer.filter.s[1] + pumpHeatConsumer.filter.s[2] + pumpHeatConsumer.vol.dynBal.U + valveColdStorage.filter.s[1] + valveColdStorage.filter.s[2] + valveHeatSink.filter.s[1] + valveHeatSink.filter.s[2] + valveHeatSource.filter.s[1] + valveHeatSource.filter.s[2] + valveHeatStorage.filter.s[1] + valveHeatStorage.filter.s[2] +Warning: WARNINGS have been issued. Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.translation.log"); = true +savelog("AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot"); -Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot: -The model has the same number of unknowns and equations: 699 -The model could not be deduced to be symbolically well-posed. -The model has - 691+pipeSupply.vol_b.dynBal.nPorts+pipeSupply.vol_a.dynBal.nPorts+ pipeReturn.vol_b.dynBal.nPorts+pipeReturn.vol_a.dynBal.nPorts -scalar unknowns and - 647+(if sourceIdeal.source.use_Xi_in then 1 else (if sourceIdeal.source.use_X_in then 0 else 1))+(if not sourceIdeal.source.use_p_in then 1 else 0)+2* sourceIdeal.source.nPorts+(if not sourceIdeal.source.use_T_in then 1 else 0)+ (if sourceIdeal.sink.use_Xi_in then 1 else (if sourceIdeal.sink.use_X_in then 0 else 1))+(if not sourceIdeal.sink.use_p_in then 1 else 0)+2*sourceIdeal.sink.nPorts +(if not sourceIdeal.sink.use_T_in then 1 else 0)+(if demand.sink.use_Xi_in then 1 else (if demand.sink.use_X_in then 0 else 1))+(if not demand.sink.use_m_flow_in then 1 else 0)+2*demand.sink.nPorts+(if not demand.sink.use_T_in then 1 else 0)+(if demand.source.use_Xi_in then 1 else ( if demand.source.use_X_in then 0 else 1))+(if not demand.source.use_m_flow_in then 1 else 0)+2*demand.source.nPorts+(if not demand.source.use_T_in then 1 else 0)+(if demand.sourceHeating.use_Xi_in then 1 else (if demand.sourceHeating.use_X_in then 0 else 1))+(if not demand.sourceHeating.use_m_flow_in then 1 else 0)+2* demand.sourceHeating.nPorts+(if not demand.sourceHeating.use_T_in then 1 else 0)+(if demand.sinkHeating.use_Xi_in then 1 else (if demand.sinkHeating.use_X_in then 0 else 1))+(if not demand.sinkHeating.use_p_in then 1 else 0)+2* demand.sinkHeating.nPorts+(if not demand.sinkHeating.use_T_in then 1 else 0)+ (if not demand.heaPum.eva.vol.steBal.use_mWat_flow then 1 else 0)+(if not pipeSupply.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_b.dynBal.nPorts +(if not pipeSupply.vol_a.dynBal.use_mWat_flow then 1 else 0)+3* pipeSupply.vol_a.dynBal.nPorts+(if not pipeReturn.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_b.dynBal.nPorts+(if not pipeReturn.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_a.dynBal.nPorts -scalar equations. -However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 699 -Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot successful. +rCheck = checkModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPool"); +Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPool: +The model has the same number of unknowns and equations: 677 +The model has the same number of unknowns and equations +for the given numerical settings of parameters: 677 +Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPool successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopHeatPumpCarnot.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPool.mos\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Pools.Examples.IndoorSwimmingPool\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Pools.Examples.IndoorSwimmingPool\\\");\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopHeatPumpCarnot.mos"); -translateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot"); -Translation of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot: -The DAE has 699 scalar unknowns and 699 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPool.mos"); +simulateModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPool", tolerance=1e-6, stopTime=604800, numberOfIntervals=0, outputInterval=900, method="CVode", resultFile="AixLib.Fluid.Pools.Examples.IndoorSwimmingPool"); +Translation of AixLib.Fluid.Pools.Examples.IndoorSwimmingPool: +The DAE has 677 scalar unknowns and 677 scalar equations. Statistics -Original Model - Number of components: 145 - Variables: 1843 - Constants: 38 (38 scalars) - Parameters: 847 (817 scalars) - Unknowns: 958 (725 scalars) - Differentiated variables: 15 scalars - Equations: 799 - Nontrivial: 663 -Translated Model - Constants: 653 scalars - Free parameters: 145 scalars - Parameter depending: 165 scalars - Continuous time states: 11 scalars - Time-varying variables: 163 scalars - Alias variables: 454 scalars - Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {13, 8} - Sizes after manipulation of the nonlinear systems: {1, 1} +Original Model + Number of components: 161 + Variables: 1600 + Constants: 41 (41 scalars) + Parameters: 725 (917 scalars) + Unknowns: 834 (704 scalars) + Differentiated variables: 3 scalars + Equations: 700 + Nontrivial: 575 +Translated Model + Constants: 579 scalars + Free parameters: 125 scalars + Parameter depending: 369 scalars + Continuous time states: 3 scalars + Time-varying variables: 180 scalars + Alias variables: 409 scalars + Number of mixed real/discrete systems of equations: 1 + Sizes of linear systems of equations: {26} + Sizes after manipulation of the linear systems: {13} + Sizes of nonlinear systems of equations: {75, 1, 1} + Sizes after manipulation of the nonlinear systems: {16, 0, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {13, 8} - Sizes after manipulation of the nonlinear systems: {1, 1} + Sizes of nonlinear systems of equations: {1, 74, 1} + Sizes after manipulation of the nonlinear systems: {0, 16, 1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - demand.senT_return.T - demand.senT_supply.T - pControl.I.y - pipeReturn.del.x - pipeReturn.timDel.x - pipeReturn.vol_a.dynBal.U - pipeReturn.vol_b.dynBal.U - pipeSupply.del.x - pipeSupply.timDel.x - pipeSupply.vol_a.dynBal.U - pipeSupply.vol_b.dynBal.U + indoorSwimming.cirPump.filter.s[1] + indoorSwimming.cirPump.filter.s[2] + indoorSwimming.PI.I.y - = true -simulateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot", stopTime=100000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot"); -Not possible to open file "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat": No such file or directory Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.translation.log"); = true +savelog("AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.translation.log"); = true rCheck = checkModel("AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances"); @@ -1439,211 +1585,51 @@ Declaring variable: Boolean rScript ; savelog("AixLib.Fluid.FixedResistances.Examples.CompareFixedResistances.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl"); -Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl: -The model has the same number of unknowns and equations: 181 -The model could not be deduced to be symbolically well-posed. -The model has - 175+combinedHeatPower.vol.dynBal.nPorts+size(combinedHeatPower.combiTable1Ds.columns, 1) -scalar unknowns and - 161+size(combinedHeatPower.combiTable1Ds.columns, 1)+2*source.nPorts+(if not source.use_m_flow_in then 1 else 0)+(if not source.use_T_in then 1 else 0)+( if not source.use_X_in then 1 else 0)+2*sink.nPorts+(if not sink.use_p_in then 1 else 0)+(if not sink.use_T_in then 1 else 0)+(if not sink.use_X_in then 1 else 0)+(if not combinedHeatPower.vol.dynBal.use_mWat_flow then 1 else 0)+3*combinedHeatPower.vol.dynBal.nPorts -scalar equations. -However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 181 -Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl successful. -Declaring variable: Boolean rCheck ; - -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystemNoControl.mos\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl\\\");\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); - - -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystemNoControl.mos"); -simulateModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl", tolerance=1e-06, stopTime=300, method="dassl", resultFile="AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl"); -Translation of AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl: -The DAE has 181 scalar unknowns and 181 scalar equations. - -Statistics - -Original Model - Number of components: 38 - Variables: 432 - Constants: 5 (5 scalars) - Parameters: 195 (229 scalars) - Unknowns: 232 (185 scalars) - Differentiated variables: 5 scalars - Equations: 210 - Nontrivial: 170 -Translated Model - Constants: 143 scalars - Free parameters: 58 scalars - Parameter depending: 71 scalars - Continuous time states: 3 scalars - Time-varying variables: 38 scalars - Alias variables: 109 scalars - Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {5} - Sizes after manipulation of the linear systems: {0} - Sizes of nonlinear systems of equations: { } - Sizes after manipulation of the nonlinear systems: { } - Number of numerical Jacobians: 0 - -Selected continuous time states -Statically selected continuous time states - combinedHeatPower.internalCapacity.T - combinedHeatPower.senTCold.T - combinedHeatPower.senTHot.T - -Finished - = true - -Declaring variable: Boolean rScript ; - -savelog("AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.translation.log"); = true - - -rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe"); -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe: -The model has the same number of unknowns and equations: 804 -The model could not be deduced to be symbolically well-posed. -The model has - 796+pip.vol.dynBal.nPorts+pip1.vol.dynBal.nPorts+pip2.vol.dynBal.nPorts+ pip3.vol.dynBal.nPorts -scalar unknowns and - 740+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if sin1.use_Xi_in then 1 else (if sin1.use_X_in then 0 else 1))+(if not sin1.use_p_in then 1 else 0)+2*sin1.nPorts+(if not sin1.use_T_in then 1 else 0)+(if sou1.use_Xi_in then 1 else (if sou1.use_X_in then 0 else 1))+(if not sou1.use_m_flow_in then 1 else 0)+2*sou1.nPorts+(if not sou1.use_T_in then 1 else 0)+(if sin2.use_Xi_in then 1 else (if sin2.use_X_in then 0 else 1)) +(if not sin2.use_p_in then 1 else 0)+2*sin2.nPorts+(if not sin2.use_T_in then 1 else 0)+(if sou2.use_Xi_in then 1 else (if sou2.use_X_in then 0 else 1)) +(if not sou2.use_m_flow_in then 1 else 0)+2*sou2.nPorts+(if not sou2.use_T_in then 1 else 0)+(if sin3.use_Xi_in then 1 else (if sin3.use_X_in then 0 else 1))+(if not sin3.use_p_in then 1 else 0)+2*sin3.nPorts+(if not sin3.use_T_in then 1 else 0)+(if sou3.use_Xi_in then 1 else (if sou3.use_X_in then 0 else 1))+(if not sou3.use_m_flow_in then 1 else 0)+2*sou3.nPorts+(if not sou3.use_T_in then 1 else 0)+(if not pip.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip.vol.dynBal.nPorts+(if not pip1.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip1.vol.dynBal.nPorts+(if not pip2.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip2.vol.dynBal.nPorts+(if not pip3.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip3.vol.dynBal.nPorts -scalar equations. -However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 804 -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe successful. -Declaring variable: Boolean rCheck ; - -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/DHCPipe.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); - - -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/DHCPipe.mos"); -translateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe"); -Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe: -The DAE has 804 scalar unknowns and 804 scalar equations. - -Statistics - -Original Model - Number of components: 144 - Variables: 2246 - Constants: 37 (37 scalars) - Parameters: 1101 (1073 scalars) - Unknowns: 1108 (828 scalars) - Differentiated variables: 33 scalars - Equations: 923 - Nontrivial: 790 -Translated Model - Constants: 721 scalars - Free parameters: 205 scalars - Parameter depending: 321 scalars - Continuous time states: 29 scalars - Time-varying variables: 177 scalars - Alias variables: 514 scalars - Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {2, 2} - Sizes after manipulation of the linear systems: {0, 0} - Sizes of nonlinear systems of equations: {6} - Sizes after manipulation of the nonlinear systems: {1} - Number of numerical Jacobians: 0 - -Selected continuous time states -Statically selected continuous time states - pip.Q_gai - pip.Q_los - pip.vol.dynBal.U - pip1.pipCor.del.x - pip1.pipCor.timDel.x - pip1.Q_gai - pip1.Q_los - pip1.vol.dynBal.U - pip2.cylHeaTra1.CylindricLoad1.heatCapacitor.T - pip2.cylHeaTra2.CylindricLoad1.heatCapacitor.T - pip2.cylHeaTra3.CylindricLoad1.heatCapacitor.T - pip2.pipCor.del.x - pip2.pipCor.timDel.x - pip2.Q_gai - pip2.Q_los - pip2.vol.dynBal.U - pip3.pipCor.del.x - pip3.pipCor.timDel.x - pip3.Q_gai - pip3.Q_los - pip3.vol.dynBal.U - senTemIn.T - senTemIn1.T - senTemIn2.T - senTemIn3.T - senTemOut.T - senTemOut1.T - senTemOut2.T - senTemOut3.T - - = true -simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe", stopTime=3600, method="dassl", tolerance=1e-6, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe"); -Finished - = true - -Declaring variable: Boolean rScript ; - -savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.translation.log"); = true - - -rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe"); -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe: -The model has the same number of unknowns and equations: 175 +rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta"); +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta: +The model has the same number of unknowns and equations: 187 The model could not be deduced to be symbolically well-posed. The model has - 173+pip.vol.dynBal.nPorts + 185+pip.vol.dynBal.nPorts scalar unknowns and - 159+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if not pip.vol.dynBal.use_mWat_flow then 1 else 0)+3* pip.vol.dynBal.nPorts + 171+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if not pip.vol.dynBal.use_mWat_flow then 1 else 0)+3* pip.vol.dynBal.nPorts scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 175 -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe successful. + 187 +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/StaticPipe.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeZeta.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/StaticPipe.mos"); -translateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe"); -Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe: -The DAE has 175 scalar unknowns and 175 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeZeta.mos"); +simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta", stopTime=1000, method="dassl", tolerance=1e-6, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta"); +Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta: +The DAE has 187 scalar unknowns and 187 scalar equations. Statistics Original Model - Number of components: 33 - Variables: 506 + Number of components: 34 + Variables: 537 Constants: 10 (10 scalars) - Parameters: 251 (244 scalars) - Unknowns: 245 (181 scalars) - Differentiated variables: 4 scalars - Equations: 205 - Nontrivial: 171 -Translated Model - Constants: 185 scalars - Free parameters: 45 scalars - Parameter depending: 61 scalars - Continuous time states: 3 scalars - Time-varying variables: 31 scalars - Alias variables: 113 scalars + Parameters: 262 (255 scalars) + Unknowns: 265 (193 scalars) + Differentiated variables: 6 scalars + Equations: 220 + Nontrivial: 186 +Translated Model + Constants: 189 scalars + Free parameters: 46 scalars + Parameter depending: 66 scalars + Continuous time states: 5 scalars + Time-varying variables: 39 scalars + Alias variables: 118 scalars Number of mixed real/discrete systems of equations: 0 Sizes of linear systems of equations: { } Sizes after manipulation of the linear systems: { } @@ -1653,317 +1639,604 @@ Translated Model Selected continuous time states Statically selected continuous time states + pip.plugFlowCore.del.x + pip.plugFlowCore.timDel.x pip.vol.dynBal.U senTemIn.T senTemOut.T - = true -simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe", stopTime=1000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe"); Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.StaticPipe.translation.log"); = true +savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled"); -Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled: -The model has the same number of unknowns and equations: 151 -The model could not be deduced to be symbolically well-posed. -The model has - 140+2*(size(pump.maxMinTable.columns, 1)+pump.deMultiplex3_1.n1+pump.deMultiplex3_1.n2) +pump.criticalDamping.n+pump.vol.dynBal.nPorts -scalar unknowns and - 130+2*size(pump.maxMinTable.columns, 1)+pump.deMultiplex3_1.n1+pump.deMultiplex3_1.n2 +pump.criticalDamping.n+(if vessle.use_Xi_in then 1 else (if vessle.use_X_in then 0 else 1))+(if not vessle.use_p_in then 1 else 0)+2*vessle.nPorts+(if not vessle.use_T_in then 1 else 0)+(if not pump.vol.dynBal.use_mWat_flow then 1 else 0)+3*pump.vol.dynBal.nPorts -scalar equations. -However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 151 -Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled successful. +rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageBoiler"); +Check of AixLib.Fluid.Storage.Examples.StorageBoiler: +The model has the same number of unknowns and equations: 3241 +Check of AixLib.Fluid.Storage.Examples.StorageBoiler successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpHeadControlled.mos\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled\\\");\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageBoiler.mos\",", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageBoiler\",", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageBoiler\\\");\",", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpHeadControlled.mos"); -simulateModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled", tolerance=1e-6, stopTime=600, method="dassl", resultFile="AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled"); -Translation of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled: -The DAE has 151 scalar unknowns and 151 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageBoiler.mos"); +simulateModel("AixLib.Fluid.Storage.Examples.StorageBoiler", tolerance=1e-6, stopTime=86400, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageBoiler"); +Translation of AixLib.Fluid.Storage.Examples.StorageBoiler: +The DAE has 3241 scalar unknowns and 3241 scalar equations. Statistics Original Model - Number of components: 34 - Variables: 378 - Constants: 9 (9 scalars) - Parameters: 177 (481 scalars) - Unknowns: 192 (155 scalars) - Differentiated variables: 5 scalars - Equations: 158 - Nontrivial: 131 + Number of components: 651 + Variables: 8627 + Constants: 159 (159 scalars) + Parameters: 4092 (4095 scalars) + Unknowns: 4376 (3344 scalars) + Differentiated variables: 106 scalars + Equations: 3314 + Nontrivial: 2545 Translated Model - Constants: 136 scalars - Free parameters: 253 scalars - Parameter depending: 127 scalars - Outputs: 7 scalars - Continuous time states: 3 scalars - Time-varying variables: 36 scalars - Alias variables: 93 scalars + Constants: 2850 scalars + Free parameters: 287 scalars + Parameter depending: 1523 scalars + Continuous time states: 76 scalars + Time-varying variables: 843 scalars + Alias variables: 2095 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {1} - Sizes after manipulation of the nonlinear systems: {0} + Sizes of linear systems of equations: {4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2} + Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} + Sizes of nonlinear systems of equations: {22, 1, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 1} + Sizes after manipulation of the nonlinear systems: {1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {1} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of nonlinear systems of equations: {22, 1, 1} + Sizes after manipulation of the nonlinear systems: {1, 0, 1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - pump.criticalDamping.x[1] - simpleValve.filter.s[1] - simpleValve.filter.s[2] + bufferStorage.bottomCover.loadIns.T + bufferStorage.bottomCover.loadWall.T + bufferStorage.heatingCoil1.pipe[1].del.x + bufferStorage.heatingCoil1.pipe[1].timDel.x + bufferStorage.heatingCoil1.pipe[1].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[1].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[2].del.x + bufferStorage.heatingCoil1.pipe[2].timDel.x + bufferStorage.heatingCoil1.pipe[2].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[2].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[3].del.x + bufferStorage.heatingCoil1.pipe[3].timDel.x + bufferStorage.heatingCoil1.pipe[3].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[3].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[4].del.x + bufferStorage.heatingCoil1.pipe[4].timDel.x + bufferStorage.heatingCoil1.pipe[4].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[4].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[5].del.x + bufferStorage.heatingCoil1.pipe[5].timDel.x + bufferStorage.heatingCoil1.pipe[5].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[5].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[6].del.x + bufferStorage.heatingCoil1.pipe[6].timDel.x + bufferStorage.heatingCoil1.pipe[6].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[6].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[7].del.x + bufferStorage.heatingCoil1.pipe[7].timDel.x + bufferStorage.heatingCoil1.pipe[7].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[7].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[8].del.x + bufferStorage.heatingCoil1.pipe[8].timDel.x + bufferStorage.heatingCoil1.pipe[8].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[8].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[9].del.x + bufferStorage.heatingCoil1.pipe[9].timDel.x + bufferStorage.heatingCoil1.pipe[9].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[9].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[10].del.x + bufferStorage.heatingCoil1.pipe[10].timDel.x + bufferStorage.heatingCoil1.pipe[10].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[10].vol_b.dynBal.U + bufferStorage.layer[1].dynBal.U + bufferStorage.layer[2].dynBal.U + bufferStorage.layer[3].dynBal.U + bufferStorage.layer[4].dynBal.U + bufferStorage.layer[5].dynBal.U + bufferStorage.layer[6].dynBal.U + bufferStorage.layer[7].dynBal.U + bufferStorage.layer[8].dynBal.U + bufferStorage.layer[9].dynBal.U + bufferStorage.layer[10].dynBal.U + bufferStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[6].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[6].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[7].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[7].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[8].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[8].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[9].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[9].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[10].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[10].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.topCover.loadIns.T + bufferStorage.topCover.loadWall.T + pump.filter.s[1] + pump.filter.s[2] Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpHeadControlled.translation.log"); = true +savelog("AixLib.Fluid.Storage.Examples.StorageBoiler.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp"); -Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp: -The model has the same number of unknowns and equations: 522 -The model could not be deduced to be symbolically well-posed. -The model has - 514+pipeSupply.vol_b.dynBal.nPorts+pipeSupply.vol_a.dynBal.nPorts+ pipeReturn.vol_b.dynBal.nPorts+pipeReturn.vol_a.dynBal.nPorts -scalar unknowns and - 479+(if sourceIdeal.source.use_Xi_in then 1 else (if sourceIdeal.source.use_X_in then 0 else 1))+(if not sourceIdeal.source.use_p_in then 1 else 0)+2* sourceIdeal.source.nPorts+(if not sourceIdeal.source.use_T_in then 1 else 0)+ (if sourceIdeal.sink.use_Xi_in then 1 else (if sourceIdeal.sink.use_X_in then 0 else 1))+(if not sourceIdeal.sink.use_p_in then 1 else 0)+2*sourceIdeal.sink.nPorts +(if not sourceIdeal.sink.use_T_in then 1 else 0)+(if demand.sink.use_Xi_in then 1 else (if demand.sink.use_X_in then 0 else 1))+(if not demand.sink.use_m_flow_in then 1 else 0)+2*demand.sink.nPorts+(if not demand.sink.use_T_in then 1 else 0)+(if demand.source.use_Xi_in then 1 else ( if demand.source.use_X_in then 0 else 1))+(if not demand.source.use_m_flow_in then 1 else 0)+2*demand.source.nPorts+(if not demand.source.use_T_in then 1 else 0)+(if not pipeSupply.vol_b.dynBal.use_mWat_flow then 1 else 0)+3* pipeSupply.vol_b.dynBal.nPorts+(if not pipeSupply.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_a.dynBal.nPorts+(if not pipeReturn.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_b.dynBal.nPorts+(if not pipeReturn.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_a.dynBal.nPorts -scalar equations. -However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 522 -Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp successful. +rCheck = checkModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem"); +Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem: +The model has the same number of unknowns and equations: 733 +The model has the same number of unknowns and equations +for the given numerical settings of parameters: 733 +Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDp.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPoolExternalHeatingSystem.mos\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem\\\");\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.statistics.log"); + + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPoolExternalHeatingSystem.mos"); +simulateModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem", tolerance=1e-6, stopTime=604800, numberOfIntervals=0, outputInterval=900, method="CVode", resultFile="AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem"); +Translation of AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem: +The DAE has 733 scalar unknowns and 733 scalar equations. + +Statistics + +Original Model + Number of components: 171 + Variables: 1742 + Constants: 45 (45 scalars) + Parameters: 777 (964 scalars) + Unknowns: 920 (764 scalars) + Differentiated variables: 3 scalars + Equations: 763 + Nontrivial: 619 +Translated Model + Constants: 629 scalars + Free parameters: 133 scalars + Parameter depending: 374 scalars + Continuous time states: 3 scalars + Time-varying variables: 191 scalars + Alias variables: 446 scalars + Number of mixed real/discrete systems of equations: 1 + Sizes of linear systems of equations: {26} + Sizes after manipulation of the linear systems: {13} + Sizes of nonlinear systems of equations: {79, 1, 1} + Sizes after manipulation of the nonlinear systems: {17, 0, 1} + Number of numerical Jacobians: 0 + Initialization problem + Sizes of nonlinear systems of equations: {1, 78, 1} + Sizes after manipulation of the nonlinear systems: {0, 17, 1} + Number of numerical Jacobians: 0 + +Selected continuous time states +Statically selected continuous time states + indoorSwimming.cirPump.filter.s[1] + indoorSwimming.cirPump.filter.s[2] + PI.I.y + +Finished + = true + +Declaring variable: Boolean rScript ; + +savelog("AixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem.translation.log"); = true + + +rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageSolarCollector"); +Check of AixLib.Fluid.Storage.Examples.StorageSolarCollector: +The model has the same number of unknowns and equations: 3387 +Check of AixLib.Fluid.Storage.Examples.StorageSolarCollector successful. +Declaring variable: Boolean rCheck ; +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSolarCollector.mos\",", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageSolarCollector\",", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageSolarCollector\\\");\",", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageSolarCollector.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDp.mos"); -translateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp"); -Translation of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp: -The DAE has 522 scalar unknowns and 522 scalar equations. + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSolarCollector.mos"); +simulateModel("AixLib.Fluid.Storage.Examples.StorageSolarCollector", tolerance=1e-6, stopTime=172800, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageSolarCollector"); +Translation of AixLib.Fluid.Storage.Examples.StorageSolarCollector: +The DAE has 3387 scalar unknowns and 3387 scalar equations. Statistics Original Model - Number of components: 105 - Variables: 1376 - Constants: 25 (25 scalars) - Parameters: 625 (601 scalars) - Unknowns: 726 (538 scalars) - Differentiated variables: 15 scalars - Equations: 623 - Nontrivial: 504 + Number of components: 688 + Variables: 8995 + Constants: 163 (163 scalars) + Parameters: 4276 (4349 scalars) + Unknowns: 4556 (3492 scalars) + Differentiated variables: 114 scalars + Equations: 3534 + Nontrivial: 2710 Translated Model - Constants: 457 scalars - Free parameters: 119 scalars - Parameter depending: 129 scalars - Continuous time states: 11 scalars - Time-varying variables: 123 scalars - Alias variables: 336 scalars + Constants: 2921 scalars + Free parameters: 420 scalars + Parameter depending: 1577 scalars + Continuous time states: 83 scalars + Time-varying variables: 870 scalars + Alias variables: 2216 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {8} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of linear systems of equations: {4, 3, 3, 2, 2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2} + Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} + Sizes of nonlinear systems of equations: {24, 1, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6} + Sizes after manipulation of the nonlinear systems: {1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {8} - Sizes after manipulation of the nonlinear systems: {1} + Sizes of nonlinear systems of equations: {24, 1, 1} + Sizes after manipulation of the nonlinear systems: {1, 0, 1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - demand.senT_return.T - demand.senT_supply.T - pControl.I.y - pipeReturn.del.x - pipeReturn.timDel.x - pipeReturn.vol_a.dynBal.U - pipeReturn.vol_b.dynBal.U - pipeSupply.del.x - pipeSupply.timDel.x - pipeSupply.vol_a.dynBal.U - pipeSupply.vol_b.dynBal.U + bufferStorage.bottomCover.loadIns.T + bufferStorage.bottomCover.loadWall.T + bufferStorage.heatingCoil1.pipe[1].del.x + bufferStorage.heatingCoil1.pipe[1].timDel.x + bufferStorage.heatingCoil1.pipe[1].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[1].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[2].del.x + bufferStorage.heatingCoil1.pipe[2].timDel.x + bufferStorage.heatingCoil1.pipe[2].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[2].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[3].del.x + bufferStorage.heatingCoil1.pipe[3].timDel.x + bufferStorage.heatingCoil1.pipe[3].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[3].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[4].del.x + bufferStorage.heatingCoil1.pipe[4].timDel.x + bufferStorage.heatingCoil1.pipe[4].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[4].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[5].del.x + bufferStorage.heatingCoil1.pipe[5].timDel.x + bufferStorage.heatingCoil1.pipe[5].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[5].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[6].del.x + bufferStorage.heatingCoil1.pipe[6].timDel.x + bufferStorage.heatingCoil1.pipe[6].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[6].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[7].del.x + bufferStorage.heatingCoil1.pipe[7].timDel.x + bufferStorage.heatingCoil1.pipe[7].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[7].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[8].del.x + bufferStorage.heatingCoil1.pipe[8].timDel.x + bufferStorage.heatingCoil1.pipe[8].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[8].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[9].del.x + bufferStorage.heatingCoil1.pipe[9].timDel.x + bufferStorage.heatingCoil1.pipe[9].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[9].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[10].del.x + bufferStorage.heatingCoil1.pipe[10].timDel.x + bufferStorage.heatingCoil1.pipe[10].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[10].vol_b.dynBal.U + bufferStorage.layer[1].dynBal.U + bufferStorage.layer[2].dynBal.U + bufferStorage.layer[3].dynBal.U + bufferStorage.layer[4].dynBal.U + bufferStorage.layer[5].dynBal.U + bufferStorage.layer[6].dynBal.U + bufferStorage.layer[7].dynBal.U + bufferStorage.layer[8].dynBal.U + bufferStorage.layer[9].dynBal.U + bufferStorage.layer[10].dynBal.U + bufferStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[6].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[6].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[7].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[7].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[8].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[8].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[9].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[9].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[10].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[10].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.topCover.loadIns.T + bufferStorage.topCover.loadWall.T + PI.I.y + pump.filter.s[1] + pump.filter.s[2] + solarThermal.senTCold.T + solarThermal.senTHot.T + solarThermal.vol.dynBal.U + temperatureSensor.T + valve.filter.s[1] + valve.filter.s[2] - = true -simulateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp", stopTime=100000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp"); -Not possible to open file "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.mat": No such file or directory Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDp.translation.log"); = true +savelog("AixLib.Fluid.Storage.Examples.StorageSolarCollector.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystem"); -Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystem: -The model has the same number of unknowns and equations: 367 +rCheck = checkModel("AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator"); +Check of AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator: +Warning: Non-literal value. +In nominal attribute for rad.res.m_flow. +Ignoring nominal attribute. +In class Modelica.Units.SI. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Units.mo, line 237 +Used in base-class rad.res.PartialTwoPortInterface. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/BaseClasses/PartialResistance.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +The model has the same number of unknowns and equations: 1648 The model could not be deduced to be symbolically well-posed. The model has - 361+combinedHeatPower.vol.dynBal.nPorts+size(combinedHeatPower.combiTable1Ds.columns, 1) + 1603+2*(rad.nEle+vol.dynBal.nPorts)+max([size(timTab.columns, 1); size( timTab.offset, 1)])+rad.vol[1].dynBal.nPorts+rad.vol[2].dynBal.nPorts+ rad.vol[3].dynBal.nPorts+rad.vol[4].dynBal.nPorts+rad.vol[5].dynBal.nPorts+ rad.sumCon.nin+rad.sumRad.nin+heaPum.con.vol.dynBal.nPorts+2*heaPum.eva.vol.dynBal.nPorts +size(heaPum.safCtr.opeEnv.bouMapHea.tabBou.columns, 1)+heaPum.safCtr.opeEnv.bouMapHea.nor.nu +size(heaPum.safCtr.opeEnv.bouMapCoo.tabBou.columns, 1)+heaPum.safCtr.opeEnv.bouMapCoo.nor.nu scalar unknowns and - 347+size(combinedHeatPower.combiTable1Ds.columns, 1)+2*source.nPorts+(if not source.use_m_flow_in then 1 else 0)+(if not source.use_T_in then 1 else 0)+( if not source.use_X_in then 1 else 0)+2*sink.nPorts+(if not sink.use_p_in then 1 else 0)+(if not sink.use_T_in then 1 else 0)+(if not sink.use_X_in then 1 else 0)+(if not combinedHeatPower.vol.dynBal.use_mWat_flow then 1 else 0)+3*combinedHeatPower.vol.dynBal.nPorts + 1555+max([size(timTab.columns, 1); size(timTab.offset, 1)])+(if weaDat.pAtmSou == AixLib.BoundaryConditions.Types.DataSource.Parameter then 1 else 0)+(if weaDat.TDewPoiSou == AixLib.BoundaryConditions.Types.DataSource.Parameter then 1 else 0)+(if weaDat.TDryBulSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.TBlaSkySou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.relHumSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.opaSkyCovSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.ceiHeiSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.totSkyCovSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.winSpeSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.winDirSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.HInfHorSou == AixLib.BoundaryConditions.Types.DataSource. Parameter then 1 else 0)+(if weaDat.HSou == AixLib.BoundaryConditions.Types.RadiationDataSource. Input_HDirNor_HDifHor then 2 else 1)+(if weaDat.HSou == AixLib.BoundaryConditions.Types.RadiationDataSource. Input_HDirNor_HGloHor then 2 else 1)+(if weaDat.HSou == AixLib.BoundaryConditions.Types.RadiationDataSource. Input_HGloHor_HDifHor then 2 else 1)+(if sou.use_Xi_in then 2 else (if sou.use_X_in then 1 else 3))+3*sou.nPorts+(if not sou.use_p_in then 1 else 0) +(if not sou.use_T_in then 1 else 0)+(if sin.use_Xi_in then 2 else (if sin.use_X_in then 1 else 3))+3*sin.nPorts+(if not sin.use_p_in then 1 else 0) +(if not sin.use_T_in then 1 else 0)+(if preSou.use_Xi_in then 1 else (if preSou.use_X_in then 0 else 1))+(if not preSou.use_p_in then 1 else 0)+2* preSou.nPorts+(if not preSou.use_T_in then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+5*vol.dynBal.nPorts+(if not rad.vol[1].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[1].dynBal.nPorts+(if not rad.vol[2].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[2].dynBal.nPorts +(if not rad.vol[3].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[3].dynBal.nPorts +(if not rad.vol[4].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[4].dynBal.nPorts +(if not rad.vol[5].dynBal.use_mWat_flow then 1 else 0)+3*rad.vol[5].dynBal.nPorts +(if not pumHeaPum.vol.steBal.use_mWat_flow then 1 else 0)+(if not pumHeaPumSou.vol.steBal.use_mWat_flow then 1 else 0)+(if not heaPum.con.vol.dynBal.use_mWat_flow then 1 else 0)+3*heaPum.con.vol.dynBal.nPorts+(if not heaPum.eva.vol.dynBal.use_mWat_flow then 1 else 0)+5*heaPum.eva.vol.dynBal.nPorts+size(heaPum.safCtr.opeEnv.bouMapHea.tabBou.columns, 1)+size(heaPum.safCtr.opeEnv.bouMapCoo.tabBou.columns, 1)+2*rad.nEle scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 367 -Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystem successful. + 1648 +Check of AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator successful. +Warning: WARNINGS have been issued. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystem.mos\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.BoilerCHP.Examples.CHPSystem\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.BoilerCHP.Examples.CHPSystem\\\");\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.BoilerCHP.Examples.CHPSystem.statistics.log"); - - -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystem.mos"); -simulateModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystem", tolerance=1e-06, stopTime=1200, method="dassl", resultFile="AixLib.Fluid.BoilerCHP.Examples.CHPSystem"); -Translation of AixLib.Fluid.BoilerCHP.Examples.CHPSystem: -The DAE has 367 scalar unknowns and 367 scalar equations. +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/HeatPumps/ModularReversible/Examples/VCLibAirToWater_OneRoomRadiator.mos\",", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator\",", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator\\\");\",", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.statistics.log"); + + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/HeatPumps/ModularReversible/Examples/VCLibAirToWater_OneRoomRadiator.mos"); +simulateModel("AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator", stopTime=86400, method="CVode", tolerance=1e-08, resultFile="AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator"); +Translation of AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator: +Warning: Non-literal value. +In nominal attribute for rad.res.m_flow. +Ignoring nominal attribute. +In class Modelica.Units.SI. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Units.mo, line 237 +Used in base-class rad.res.PartialTwoPortInterface. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/BaseClasses/PartialResistance.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPum.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPum.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_in. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +Warning: Non-literal value. +In nominal attribute for pumHeaPumSou.m_flow_actual. +Ignoring nominal attribute. +In class Modelica.Blocks.Interfaces. + Near file: /opt/dymola-2022-x86_64/Modelica/Library/Modelica 4.0.0/Blocks/Interfaces.mo, line 2 +Used in base-class pumHeaPumSou.FlowControlled_m_flow. + Near file: /tmp/tmp-AixLib-2-5zg7_0d_/AixLib/Fluid/Movers/Preconfigured/FlowControlled_m_flow.mo, line 3 +The DAE has 1648 scalar unknowns and 1648 scalar equations. +Redundant consistent initial conditions. +Removed the following equations which are redundant and consistent: + heaPum.eva.p_start = heaPum.pEva_start; + +This required evaluation of +the interactive parameters + heaPum.pEva_start(start = 101325) + sin.p(start = 101325) + Statistics Original Model - Number of components: 105 - Variables: 786 - Constants: 8 (8 scalars) - Parameters: 360 (394 scalars) - Unknowns: 418 (371 scalars) - Differentiated variables: 8 scalars - Equations: 404 - Nontrivial: 360 + Number of components: 429 + Variables: 3472 + Constants: 77 (77 scalars) + Parameters: 1665 (2022 scalars) + Unknowns: 1730 (1705 scalars) + Differentiated variables: 22 scalars + Equations: 1612 + Nontrivial: 1342 Translated Model - Constants: 177 scalars - Free parameters: 143 scalars - Parameter depending: 115 scalars - Continuous time states: 6 scalars - Time-varying variables: 112 scalars - Alias variables: 226 scalars + Constants: 1310 scalars + Free parameters: 220 scalars + Parameter depending: 867 scalars + Outputs: 24 scalars + Continuous time states: 14 scalars + Time-varying variables: 357 scalars + Alias variables: 1050 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {8, 9} - Sizes after manipulation of the nonlinear systems: {1, 1} + Sizes of linear systems of equations: {2, 2, 2, 2, 2, 4} + Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0} + Sizes of nonlinear systems of equations: {3} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 Initialization problem - Sizes of linear systems of equations: {5} - Sizes after manipulation of the linear systems: {0} + Sizes of nonlinear systems of equations: {11, 1, 1, 2} + Sizes after manipulation of the nonlinear systems: {5, 1, 1, 1} + Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - combinedHeatPower.elControl.I.y - combinedHeatPower.senTCold.T - combinedHeatPower.senTHot.T - combinedHeatPower.thControl.PI.I.y - combinedHeatPower.thControl.PI1.I.y - combinedHeatPower.vol.dynBal.medium.T + heaPum.con.vol.dynBal.U + heaPum.eva.vol.dynBal.medium.Xi[1] + heaPum.eva.vol.dynBal.U + oneRooRadHeaPumCtr.PIDHea.I.y + rad.vol[1].dynBal.U + rad.vol[2].dynBal.U + rad.vol[3].dynBal.U + rad.vol[4].dynBal.U + rad.vol[5].dynBal.U + temRet.T + temSup.T + vol.dynBal.m + vol.dynBal.medium.Xi[1] + vol.hOut_internal +Warning: WARNINGS have been issued. Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.BoilerCHP.Examples.CHPSystem.translation.log"); = true +savelog("AixLib.Fluid.HeatPumps.ModularReversible.Examples.VCLibAirToWater_OneRoomRadiator.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst"); -Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst: -The model has the same number of unknowns and equations: 250 +rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass"); +Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass: +The model has the same number of unknowns and equations: 572 The model could not be deduced to be symbolically well-posed. The model has - 248+vol.dynBal.nPorts + 562+demand.vol.dynBal.nPorts+pipeSupply.vol_b.dynBal.nPorts+pipeSupply.vol_a.dynBal.nPorts +pipeReturn.vol_b.dynBal.nPorts+pipeReturn.vol_a.dynBal.nPorts scalar unknowns and - 237+(if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_p_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+ (if not dpControlled_dp.mov.vol.steBal.use_mWat_flow then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+3*vol.dynBal.nPorts + 522+(if sourceIdeal.source.use_Xi_in then 1 else (if sourceIdeal.source.use_X_in then 0 else 1))+(if not sourceIdeal.source.use_p_in then 1 else 0)+2* sourceIdeal.source.nPorts+(if not sourceIdeal.source.use_T_in then 1 else 0)+ (if sourceIdeal.sink.use_Xi_in then 1 else (if sourceIdeal.sink.use_X_in then 0 else 1))+(if not sourceIdeal.sink.use_p_in then 1 else 0)+2*sourceIdeal.sink.nPorts +(if not sourceIdeal.sink.use_T_in then 1 else 0)+(if demand.sink.use_Xi_in then 1 else (if demand.sink.use_X_in then 0 else 1))+(if not demand.sink.use_m_flow_in then 1 else 0)+2*demand.sink.nPorts+(if not demand.sink.use_T_in then 1 else 0)+(if demand.source.use_Xi_in then 1 else ( if demand.source.use_X_in then 0 else 1))+(if not demand.source.use_m_flow_in then 1 else 0)+2*demand.source.nPorts+(if not demand.source.use_T_in then 1 else 0)+(if not demand.vol.dynBal.use_mWat_flow then 1 else 0)+3* demand.vol.dynBal.nPorts+(if not pipeSupply.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_b.dynBal.nPorts+(if not pipeSupply.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_a.dynBal.nPorts+(if not pipeReturn.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_b.dynBal.nPorts+(if not pipeReturn.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_a.dynBal.nPorts scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 250 -Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst successful. + 572 +Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpConst.mos\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst\\\");\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpConst.mos"); -simulateModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst", startTime=0, stopTime=3600, tolerance=1e-6, method="dassl", resultFile="AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst"); -Translation of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst: -The DAE has 250 scalar unknowns and 250 scalar equations. - -Statistics +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mos"); +translateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass"); +Translation of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass: +The DAE has 572 scalar unknowns and 572 scalar equations. -Original Model - Number of components: 82 - Variables: 814 - Constants: 19 (19 scalars) - Parameters: 465 (949 scalars) - Unknowns: 330 (265 scalars) - Differentiated variables: 7 scalars - Equations: 284 - Nontrivial: 236 +Statistics + +Original Model + Number of components: 114 + Variables: 1506 + Constants: 29 (29 scalars) + Parameters: 675 (646 scalars) + Unknowns: 802 (590 scalars) + Differentiated variables: 17 scalars + Equations: 680 + Nontrivial: 543 Translated Model - Constants: 686 scalars - Free parameters: 51 scalars - Parameter depending: 271 scalars - Outputs: 1 scalars - Continuous time states: 5 scalars - Time-varying variables: 61 scalars - Alias variables: 164 scalars + Constants: 509 scalars + Free parameters: 121 scalars + Parameter depending: 138 scalars + Continuous time states: 12 scalars + Time-varying variables: 132 scalars + Alias variables: 365 scalars Number of mixed real/discrete systems of equations: 0 Sizes of linear systems of equations: { } Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {3, 1} - Sizes after manipulation of the nonlinear systems: {1, 1} + Sizes of nonlinear systems of equations: {8} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {3, 1, 1} - Sizes after manipulation of the nonlinear systems: {1, 0, 1} + Sizes of nonlinear systems of equations: {8} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - dpControlled_dp.mov.filter.s[1] - dpControlled_dp.mov.filter.s[2] - integrator.y - val.filter.s[1] - val.filter.s[2] + demand.senT_return.T + demand.senT_supply.T + demand.vol.dynBal.U + pControl.I.y + pipeReturn.del.x + pipeReturn.timDel.x + pipeReturn.vol_a.dynBal.U + pipeReturn.vol_b.dynBal.U + pipeSupply.del.x + pipeSupply.timDel.x + pipeSupply.vol_a.dynBal.U + pipeSupply.vol_b.dynBal.U + = true +simulateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass", stopTime=100000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass"); +Not possible to open file "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.mat": No such file or directory Finished = true - - Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpConst.translation.log"); = true +savelog("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopVarTSupplyDpFixedTempDifferenceBypass.translation.log"); = true rCheck = checkModel("AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.DynamicValidation"); @@ -2519,480 +2792,565 @@ Declaring variable: Boolean rScript ; savelog("AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.DynamicValidation.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageSimpleExample"); -Check of AixLib.Fluid.Storage.Examples.StorageSimpleExample: -The model has the same number of unknowns and equations: 964 +rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded"); +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded: +The model has the same number of unknowns and equations: 256 The model could not be deduced to be symbolically well-posed. The model has - 938+storageSimple.layer[1].dynBal.nPorts+storageSimple.layer[2].dynBal.nPorts+ storageSimple.layer[3].dynBal.nPorts+storageSimple.layer_HE[1].dynBal.nPorts+ storageSimple.layer_HE[2].dynBal.nPorts+storageSimple.layer_HE[3].dynBal.nPorts +2*storageSimple.n+heatingRod.vol.dynBal.nPorts+simpleConsumer.volume.dynBal.nPorts +pumpGen.vol.dynBal.nPorts+pumpCon.vol.dynBal.nPorts + 254+pip.plugFlowPipeZeta.vol.dynBal.nPorts scalar unknowns and - 869+(if storageSimple.use_TOut then 2*storageSimple.n else 0)+(if pressureBoundary.use_Xi_in then 1 else (if pressureBoundary.use_X_in then 0 else 1))+(if not pressureBoundary.use_p_in then 1 else 0)+2*pressureBoundary.nPorts +(if not pressureBoundary.use_T_in then 1 else 0)+(if pressureBoundary1.use_Xi_in then 1 else (if pressureBoundary1.use_X_in then 0 else 1))+(if not pressureBoundary1.use_p_in then 1 else 0)+2*pressureBoundary1.nPorts+(if not pressureBoundary1.use_T_in then 1 else 0)+(if PIDHR.reset <> AixLib.Types.Reset. Input then 1 else 0)+(if PIDPumpGen.reset <> AixLib.Types.Reset.Input then 1 else 0)+(if PIDPumpCon.reset <> AixLib.Types.Reset.Input then 1 else 0)+(if not storageSimple.layer[1].dynBal.use_mWat_flow then 1 else 0)+3* storageSimple.layer[1].dynBal.nPorts+(if not storageSimple.layer[2].dynBal.use_mWat_flow then 1 else 0)+3*storageSimple.layer[2].dynBal.nPorts+(if not storageSimple.layer[3].dynBal.use_mWat_flow then 1 else 0)+3*storageSimple.layer[3].dynBal.nPorts +(if not storageSimple.layer_HE[1].dynBal.use_mWat_flow then 1 else 0)+3* storageSimple.layer_HE[1].dynBal.nPorts+(if not storageSimple.layer_HE[2].dynBal.use_mWat_flow then 1 else 0)+3*storageSimple.layer_HE[2].dynBal.nPorts+(if not storageSimple.layer_HE[3].dynBal.use_mWat_flow then 1 else 0)+3* storageSimple.layer_HE[3].dynBal.nPorts+(if not heatingRod.vol.dynBal.use_mWat_flow then 1 else 0)+3*heatingRod.vol.dynBal.nPorts+(if not simpleConsumer.volume.dynBal.use_mWat_flow then 1 else 0)+3*simpleConsumer.volume.dynBal.nPorts+(if not pumpGen.vol.dynBal.use_mWat_flow then 1 else 0)+3*pumpGen.vol.dynBal.nPorts+( if not pumpCon.vol.dynBal.use_mWat_flow then 1 else 0)+3*pumpCon.vol.dynBal.nPorts +(if (if PIDHR.reset == AixLib.Types.Reset.Disabled then PIDHR.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if PIDHR.reset == AixLib.Types.Reset.Disabled then PIDHR.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0)+(if ( if PIDPumpGen.reset == AixLib.Types.Reset.Disabled then PIDPumpGen.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if PIDPumpGen.reset == AixLib.Types.Reset.Disabled then PIDPumpGen.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0)+(if ( if PIDPumpCon.reset == AixLib.Types.Reset.Disabled then PIDPumpCon.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if PIDPumpCon.reset == AixLib.Types.Reset.Disabled then PIDPumpCon.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0) + 240+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if not pip.plugFlowPipeZeta.vol.dynBal.use_mWat_flow then 1 else 0) +3*pip.plugFlowPipeZeta.vol.dynBal.nPorts scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 964 -Check of AixLib.Fluid.Storage.Examples.StorageSimpleExample successful. + 256 +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSimpleExample.mos\",", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageSimpleExample\",", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageSimpleExample\\\");\",", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageSimpleExample.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeEmbedded.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageSimpleExample.mos"); -simulateModel("AixLib.Fluid.Storage.Examples.StorageSimpleExample", tolerance=1e-6, stopTime=38200, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageSimpleExample"); -Translation of AixLib.Fluid.Storage.Examples.StorageSimpleExample: -The DAE has 964 scalar unknowns and 964 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeEmbedded.mos"); +translateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded"); +Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded: +The DAE has 256 scalar unknowns and 256 scalar equations. Statistics Original Model - Number of components: 247 - Variables: 2530 - Constants: 57 (57 scalars) - Parameters: 1181 (1670 scalars) - Unknowns: 1292 (1010 scalars) - Differentiated variables: 28 scalars - Equations: 1101 - Nontrivial: 860 + Number of components: 53 + Variables: 739 + Constants: 11 (11 scalars) + Parameters: 390 (383 scalars) + Unknowns: 338 (264 scalars) + Differentiated variables: 9 scalars + Equations: 267 + Nontrivial: 229 Translated Model - Constants: 1047 scalars - Free parameters: 186 scalars - Parameter depending: 627 scalars - Outputs: 1 scalars - Continuous time states: 17 scalars - Time-varying variables: 245 scalars - Alias variables: 632 scalars + Constants: 224 scalars + Free parameters: 64 scalars + Parameter depending: 145 scalars + Continuous time states: 8 scalars + Time-varying variables: 57 scalars + Alias variables: 168 scalars + Number of mixed real/discrete systems of equations: 0 + Sizes of linear systems of equations: {2, 2} + Sizes after manipulation of the linear systems: {0, 0} + Sizes of nonlinear systems of equations: {6} + Sizes after manipulation of the nonlinear systems: {1} + Number of numerical Jacobians: 0 + Initialization problem + Sizes of nonlinear systems of equations: {14} + Sizes after manipulation of the nonlinear systems: {6} + Number of numerical Jacobians: 0 + +Selected continuous time states +Statically selected continuous time states + pip.cylindricHeatTransfer_1.CylindricLoad1.heatCapacitor.T + pip.cylindricHeatTransfer_2.CylindricLoad1.heatCapacitor.T + pip.cylindricHeatTransfer_3.CylindricLoad1.heatCapacitor.T + pip.plugFlowPipeZeta.plugFlowCore.del.x + pip.plugFlowPipeZeta.plugFlowCore.timDel.x + pip.plugFlowPipeZeta.vol.dynBal.U + senTemIn.T + senTemOut.T + + = true +simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded", stopTime=1000, method="dassl", tolerance=1e-6, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded"); +Finished + = true + +Declaring variable: Boolean rScript ; + +savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeEmbedded.translation.log"); = true + + +rCheck = checkModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled"); +Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled: +The model has the same number of unknowns and equations: 156 +The model could not be deduced to be symbolically well-posed. +The model has + 144+2*(size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2) +pump.criticalDamping.n+pump.vol.dynBal.nPorts +scalar unknowns and + 134+2*size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2 +pump.criticalDamping.n+(if vessle.use_Xi_in then 1 else (if vessle.use_X_in then 0 else 1))+(if not vessle.use_p_in then 1 else 0)+2*vessle.nPorts+(if not vessle.use_T_in then 1 else 0)+(if not pump.vol.dynBal.use_mWat_flow then 1 else 0)+3*pump.vol.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 156 +Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled successful. +Declaring variable: Boolean rCheck ; + +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlled.mos\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled\\\");\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.statistics.log"); + + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlled.mos"); +simulateModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled", tolerance=1e-6, stopTime=600.0, method="dassl", resultFile="AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled"); +Translation of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled: +The DAE has 156 scalar unknowns and 156 scalar equations. + +Statistics + +Original Model + Number of components: 35 + Variables: 388 + Constants: 15 (15 scalars) + Parameters: 177 (374 scalars) + Unknowns: 196 (160 scalars) + Differentiated variables: 6 scalars + Equations: 163 + Nontrivial: 137 +Translated Model + Constants: 242 scalars + Free parameters: 135 scalars + Parameter depending: 38 scalars + Outputs: 7 scalars + Continuous time states: 4 scalars + Time-varying variables: 37 scalars + Alias variables: 97 scalars + Number of mixed real/discrete systems of equations: 0 + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: {1} + Sizes after manipulation of the nonlinear systems: {0} + Number of numerical Jacobians: 0 + Initialization problem + Sizes of nonlinear systems of equations: {1} + Sizes after manipulation of the nonlinear systems: {1} + Number of numerical Jacobians: 0 + +Selected continuous time states +Statically selected continuous time states + pump.criticalDamping.x[1] + pump.criticalDamping.x[2] + simpleValve.filter.s[1] + simpleValve.filter.s[2] + +Finished + = true + +Declaring variable: Boolean rScript ; + +savelog("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlled.translation.log"); = true + + +rCheck = checkModel("AixLib.Fluid.HeatExchangers.Examples.HeatingRod"); +Check of AixLib.Fluid.HeatExchangers.Examples.HeatingRod: +The model has the same number of unknowns and equations: 327 +The model could not be deduced to be symbolically well-posed. +The model has + 322+vol.dynBal.nPorts+heatingRod.vol.dynBal.nPorts +scalar unknowns and + 301+(if conPI.reset <> AixLib.Types.Reset.Input then 1 else 0)+(if bou.use_Xi_in then 1 else (if bou.use_X_in then 0 else 1))+(if not bou.use_p_in then 1 else 0)+2*bou.nPorts+(if not bou.use_T_in then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+3*vol.dynBal.nPorts+(if not mov.vol.steBal.use_mWat_flow then 1 else 0)+(if (if conPI.reset == AixLib.Types.Reset.Disabled then conPI.reset else AixLib.Types.Reset.Input) <> AixLib.Types.Reset.Input then 1 else 0)+(if (if conPI.reset == AixLib.Types.Reset.Disabled then conPI.reset else AixLib.Types.Reset.Input) == AixLib.Types.Reset.Disabled then 1 else 0)+(if not heatingRod.vol.dynBal.use_mWat_flow then 1 else 0)+3*heatingRod.vol.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 327 +Check of AixLib.Fluid.HeatExchangers.Examples.HeatingRod successful. +Declaring variable: Boolean rCheck ; + +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/HeatExchangers/Examples/HeatingRod.mos\",", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.HeatExchangers.Examples.HeatingRod\",", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.HeatExchangers.Examples.HeatingRod\\\");\",", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.HeatExchangers.Examples.HeatingRod.statistics.log"); + + +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/HeatExchangers/Examples/HeatingRod.mos"); +simulateModel("AixLib.Fluid.HeatExchangers.Examples.HeatingRod", stopTime=172800, method="Radau", tolerance=1e-6, resultFile="AixLib.Fluid.HeatExchangers.Examples.HeatingRod"); +Translation of AixLib.Fluid.HeatExchangers.Examples.HeatingRod: +The DAE has 327 scalar unknowns and 327 scalar equations. + +Statistics + +Original Model + Number of components: 93 + Variables: 927 + Constants: 21 (21 scalars) + Parameters: 472 (578 scalars) + Unknowns: 434 (342 scalars) + Differentiated variables: 8 scalars + Equations: 376 + Nontrivial: 305 +Translated Model + Constants: 397 scalars + Free parameters: 66 scalars + Parameter depending: 209 scalars + Outputs: 2 scalars + Continuous time states: 6 scalars + Time-varying variables: 79 scalars + Alias variables: 190 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {4} + Sizes of linear systems of equations: {2} Sizes after manipulation of the linear systems: {0} - Sizes of nonlinear systems of equations: {5, 7} - Sizes after manipulation of the nonlinear systems: {1, 1} + Sizes of nonlinear systems of equations: { } + Sizes after manipulation of the nonlinear systems: { } Number of numerical Jacobians: 0 - Initialization problem - Sizes of nonlinear systems of equations: {5, 7} - Sizes after manipulation of the nonlinear systems: {1, 1} - Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states + conPI.I.y heatingRod.vol.dynBal.U - PIDHR.I.y - PIDPumpCon.I.y - PIDPumpGen.I.y - pumpCon.filter.s[1] - pumpCon.filter.s[2] - pumpCon.vol.dynBal.U - pumpGen.filter.s[1] - pumpGen.filter.s[2] - pumpGen.vol.dynBal.U - simpleConsumer.heatCapacitor.T - storageSimple.layer[1].dynBal.U - storageSimple.layer[2].dynBal.U - storageSimple.layer[3].dynBal.U - storageSimple.layer_HE[1].dynBal.U - storageSimple.layer_HE[2].dynBal.U - storageSimple.layer_HE[3].dynBal.U + mov.filter.s[1] + mov.filter.s[2] + THeaOut.T + vol.dynBal.U Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Storage.Examples.StorageSimpleExample.translation.log"); = true +savelog("AixLib.Fluid.HeatExchangers.Examples.HeatingRod.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar"); -Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar: -The model has the same number of unknowns and equations: 250 -The model could not be deduced to be symbolically well-posed. -The model has - 248+vol.dynBal.nPorts -scalar unknowns and - 237+(if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_p_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+ (if not dpControlled_dp.mov.vol.steBal.use_mWat_flow then 1 else 0)+(if not vol.dynBal.use_mWat_flow then 1 else 0)+3*vol.dynBal.nPorts -scalar equations. -However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 250 -Check of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar successful. +rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageDetailedExample"); +Check of AixLib.Fluid.Storage.Examples.StorageDetailedExample: +The model has the same number of unknowns and equations: 2714 +Check of AixLib.Fluid.Storage.Examples.StorageDetailedExample successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpVar.mos\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar\\\");\",", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageDetailedExample.mos\",", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageDetailedExample\",", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageDetailedExample\\\");\",", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageDetailedExample.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/DpControlledMovers/Examples/DpVar.mos"); -simulateModel("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar", startTime=0, stopTime=3600, tolerance=1e-6, method="dassl", resultFile="AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar"); -Translation of AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar: -The DAE has 250 scalar unknowns and 250 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageDetailedExample.mos"); +simulateModel("AixLib.Fluid.Storage.Examples.StorageDetailedExample", tolerance=1e-6, stopTime=86400, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageDetailedExample"); +Translation of AixLib.Fluid.Storage.Examples.StorageDetailedExample: +The DAE has 2714 scalar unknowns and 2714 scalar equations. Statistics Original Model - Number of components: 82 - Variables: 814 - Constants: 19 (19 scalars) - Parameters: 465 (949 scalars) - Unknowns: 330 (265 scalars) - Differentiated variables: 7 scalars - Equations: 284 - Nontrivial: 236 + Number of components: 532 + Variables: 7113 + Constants: 124 (124 scalars) + Parameters: 3345 (3234 scalars) + Unknowns: 3644 (2792 scalars) + Differentiated variables: 92 scalars + Equations: 2756 + Nontrivial: 2117 Translated Model - Constants: 686 scalars - Free parameters: 51 scalars - Parameter depending: 271 scalars - Outputs: 1 scalars - Continuous time states: 5 scalars - Time-varying variables: 61 scalars - Alias variables: 164 scalars + Constants: 2426 scalars + Free parameters: 222 scalars + Parameter depending: 1324 scalars + Continuous time states: 66 scalars + Time-varying variables: 623 scalars + Alias variables: 1555 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } - Sizes of nonlinear systems of equations: {3, 1} - Sizes after manipulation of the nonlinear systems: {1, 1} + Sizes of linear systems of equations: {2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2} + Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} + Sizes of nonlinear systems of equations: {6, 6, 6, 6, 6, 6, 6, 6} + Sizes after manipulation of the nonlinear systems: {1, 1, 1, 1, 1, 1, 1, 1} Number of numerical Jacobians: 0 - Initialization problem - Sizes of nonlinear systems of equations: {3, 1, 1} - Sizes after manipulation of the nonlinear systems: {1, 0, 1} - Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - dpControlled_dp.mov.filter.s[1] - dpControlled_dp.mov.filter.s[2] - integrator.y - val.filter.s[1] - val.filter.s[2] + bufferStorage.bottomCover.loadIns.T + bufferStorage.bottomCover.loadWall.T + bufferStorage.heatingCoil1.pipe[1].del.x + bufferStorage.heatingCoil1.pipe[1].timDel.x + bufferStorage.heatingCoil1.pipe[1].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[1].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[2].del.x + bufferStorage.heatingCoil1.pipe[2].timDel.x + bufferStorage.heatingCoil1.pipe[2].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[2].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[3].del.x + bufferStorage.heatingCoil1.pipe[3].timDel.x + bufferStorage.heatingCoil1.pipe[3].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[3].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[4].del.x + bufferStorage.heatingCoil1.pipe[4].timDel.x + bufferStorage.heatingCoil1.pipe[4].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[4].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[5].del.x + bufferStorage.heatingCoil1.pipe[5].timDel.x + bufferStorage.heatingCoil1.pipe[5].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[5].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[6].del.x + bufferStorage.heatingCoil1.pipe[6].timDel.x + bufferStorage.heatingCoil1.pipe[6].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[6].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[7].del.x + bufferStorage.heatingCoil1.pipe[7].timDel.x + bufferStorage.heatingCoil1.pipe[7].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[7].vol_b.dynBal.U + bufferStorage.heatingCoil1.pipe[8].del.x + bufferStorage.heatingCoil1.pipe[8].timDel.x + bufferStorage.heatingCoil1.pipe[8].vol_a.dynBal.U + bufferStorage.heatingCoil1.pipe[8].vol_b.dynBal.U + bufferStorage.layer[1].dynBal.U + bufferStorage.layer[2].dynBal.U + bufferStorage.layer[3].dynBal.U + bufferStorage.layer[4].dynBal.U + bufferStorage.layer[5].dynBal.U + bufferStorage.layer[6].dynBal.U + bufferStorage.layer[7].dynBal.U + bufferStorage.layer[8].dynBal.U + bufferStorage.layer[9].dynBal.U + bufferStorage.layer[10].dynBal.U + bufferStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[6].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[6].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[7].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[7].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[8].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[8].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[9].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[9].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[10].Insulation.CylindricLoad1.heatCapacitor.T + bufferStorage.storageMantle[10].Wall.CylindricLoad1.heatCapacitor.T + bufferStorage.topCover.loadIns.T + bufferStorage.topCover.loadWall.T Finished = true - - Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Movers.DpControlledMovers.Examples.DpVar.translation.log"); = true +savelog("AixLib.Fluid.Storage.Examples.StorageDetailedExample.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump"); -Check of AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump: -Warning: Redeclaration requires a subtype. - But missing component dp_start. - In redeclaration of PeakLoadDeviceModel. - File: /tmp/tmp-AixLib-3-vii22jm0/AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpBase.mo, line 20 - Context: AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.PeakLoadDeviceModel -The model has the same number of unknowns and equations: 4699 -Check of AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump successful. +rCheck = checkModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV"); +Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV: +The model has the same number of unknowns and equations: 220 +The model could not be deduced to be symbolically well-posed. +The model has + 208+2*(size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2) +pump.criticalDamping.n+pump.vol.dynBal.nPorts +scalar unknowns and + 198+2*size(pump.maxMinTable.columns, 1)+pump.deMultiplex2.n1+pump.deMultiplex2.n2 +pump.criticalDamping.n+(if vessle.use_Xi_in then 1 else (if vessle.use_X_in then 0 else 1))+(if not vessle.use_p_in then 1 else 0)+2*vessle.nPorts+(if not vessle.use_T_in then 1 else 0)+(if not pump.vol.dynBal.use_mWat_flow then 1 else 0)+3*pump.vol.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 220 +Check of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Examples/GeothermalHeatPump.mos\",", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump\",", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump\\\");\",", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlledDpV.mos\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV\\\");\",", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Examples/GeothermalHeatPump.mos"); -simulateModel("AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump", startTime=0, stopTime=86400, method="dassl", tolerance=1e-06, resultFile="AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump"); -Translation of AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump: -Warning: Redeclaration requires a subtype. - But missing component dp_start. - In redeclaration of PeakLoadDeviceModel. - File: /tmp/tmp-AixLib-3-vii22jm0/AixLib/Fluid/Examples/GeothermalHeatPump/BaseClasses/GeothermalHeatPumpBase.mo, line 20 - Context: AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.PeakLoadDeviceModel -The DAE has 4699 scalar unknowns and 4699 scalar equations. -Sparse solver handling possible: false. -Due to flag Advanced.SparseActivate=false. -Model sparse and large enough: true. -Sparse solvers are available for dassl, lsodar, cvode, radau, esdirk*, sdirk* (using OpenMP, set number of cores with Advanced.NumberOfCores). +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Movers/PumpsPolynomialBased/Examples/PumpSpeedControlledDpV.mos"); +simulateModel("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV", tolerance=1e-6, stopTime=600.0, method="dassl", resultFile="AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV"); +Translation of AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV: +The DAE has 220 scalar unknowns and 220 scalar equations. Statistics - -Original Model - Number of components: 1061 - Variables: 12395 - Constants: 219 (219 scalars) - Parameters: 6093 (7317 scalars) - Unknowns: 6083 (4872 scalars) - Differentiated variables: 147 scalars - Equations: 4946 - Nontrivial: 3872 + +Original Model + Number of components: 58 + Variables: 526 + Constants: 16 (16 scalars) + Parameters: 242 (586 scalars) + Unknowns: 268 (224 scalars) + Differentiated variables: 8 scalars + Equations: 228 + Nontrivial: 195 Translated Model - Constants: 4153 scalars - Free parameters: 915 scalars - Parameter depending: 3104 scalars - Outputs: 17 scalars - Continuous time states: 109 scalars - Time-varying variables: 1171 scalars - Alias variables: 3065 scalars + Constants: 261 scalars + Free parameters: 310 scalars + Parameter depending: 59 scalars + Outputs: 4 scalars + Continuous time states: 6 scalars + Time-varying variables: 50 scalars + Alias variables: 146 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {2, 3, 2, 2, 4, 3, 17, 2, 2, 2, 2, 2, 2, 2, 2, 3, 4, 2, 4, 3, 17, 4, 2, 2, 2, 2, 2, 2, 2, 2} - Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 8, 0, 0, 0, 0, 0, 0, 0, 0, 0} - Sizes of nonlinear systems of equations: {5, 12, 12, 5, 6, 6, 6, 3, 1, 6, 6, 6, 6, 6, 6, 6} - Sizes after manipulation of the nonlinear systems: {1, 1, 1, 1, 1, 1, 1, 0, 0, 1, 1, 1, 1, 1, 1, 1} + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: {1} + Sizes after manipulation of the nonlinear systems: {0} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {5, 1, 12, 1, 12, 1, 5, 1, 3, 1} - Sizes after manipulation of the nonlinear systems: {2, 0, 1, 0, 1, 0, 1, 0, 1, 0} + Sizes of nonlinear systems of equations: {1} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - coldStorage.bottomCover.loadIns.T - coldStorage.bottomCover.loadWall.T - coldStorage.heatingCoil1.pipe[1].del.x - coldStorage.heatingCoil1.pipe[1].timDel.x - coldStorage.heatingCoil1.pipe[1].vol_a.dynBal.U - coldStorage.heatingCoil1.pipe[1].vol_b.dynBal.U - coldStorage.heatingCoil1.pipe[2].del.x - coldStorage.heatingCoil1.pipe[2].timDel.x - coldStorage.heatingCoil1.pipe[2].vol_a.dynBal.U - coldStorage.heatingCoil1.pipe[2].vol_b.dynBal.U - coldStorage.heatingCoil1.pipe[3].del.x - coldStorage.heatingCoil1.pipe[3].timDel.x - coldStorage.heatingCoil1.pipe[3].vol_a.dynBal.U - coldStorage.heatingCoil1.pipe[3].vol_b.dynBal.U - coldStorage.heatingCoil1.pipe[4].del.x - coldStorage.heatingCoil1.pipe[4].timDel.x - coldStorage.heatingCoil1.pipe[4].vol_a.dynBal.U - coldStorage.heatingCoil1.pipe[4].vol_b.dynBal.U - coldStorage.heatingCoil1.pipe[5].del.x - coldStorage.heatingCoil1.pipe[5].timDel.x - coldStorage.heatingCoil1.pipe[5].vol_a.dynBal.U - coldStorage.heatingCoil1.pipe[5].vol_b.dynBal.U - coldStorage.layer[1].dynBal.U - coldStorage.layer[2].dynBal.U - coldStorage.layer[3].dynBal.U - coldStorage.layer[4].dynBal.U - coldStorage.layer[5].dynBal.U - coldStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T - coldStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T - coldStorage.topCover.loadIns.T - coldStorage.topCover.loadWall.T - heatPump.con.vol.dynBal.U - heatPump.eva.vol.dynBal.U - heatStorage.bottomCover.loadIns.T - heatStorage.bottomCover.loadWall.T - heatStorage.heatingCoil1.pipe[1].del.x - heatStorage.heatingCoil1.pipe[1].timDel.x - heatStorage.heatingCoil1.pipe[1].vol_a.dynBal.U - heatStorage.heatingCoil1.pipe[1].vol_b.dynBal.U - heatStorage.heatingCoil1.pipe[2].del.x - heatStorage.heatingCoil1.pipe[2].timDel.x - heatStorage.heatingCoil1.pipe[2].vol_a.dynBal.U - heatStorage.heatingCoil1.pipe[2].vol_b.dynBal.U - heatStorage.heatingCoil1.pipe[3].del.x - heatStorage.heatingCoil1.pipe[3].timDel.x - heatStorage.heatingCoil1.pipe[3].vol_a.dynBal.U - heatStorage.heatingCoil1.pipe[3].vol_b.dynBal.U - heatStorage.heatingCoil1.pipe[4].del.x - heatStorage.heatingCoil1.pipe[4].timDel.x - heatStorage.heatingCoil1.pipe[4].vol_a.dynBal.U - heatStorage.heatingCoil1.pipe[4].vol_b.dynBal.U - heatStorage.heatingCoil1.pipe[5].del.x - heatStorage.heatingCoil1.pipe[5].timDel.x - heatStorage.heatingCoil1.pipe[5].vol_a.dynBal.U - heatStorage.heatingCoil1.pipe[5].vol_b.dynBal.U - heatStorage.layer[1].dynBal.U - heatStorage.layer[2].dynBal.U - heatStorage.layer[3].dynBal.U - heatStorage.layer[4].dynBal.U - heatStorage.layer[5].dynBal.U - heatStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T - heatStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T - heatStorage.topCover.loadIns.T - heatStorage.topCover.loadWall.T - peaLoaDev.boiler.internalControl.ControlerHeater.PI.I.y - peaLoaDev.boiler.internalControl.eEnergyMeter_P.q_joule - peaLoaDev.boiler.internalControl.eEnergyMeter_S.q_joule - peaLoaDev.boiler.senTCold.T - peaLoaDev.boiler.senTHot.T - peaLoaDev.boiler.vol.dynBal.U - pumpColdConsumer.filter.s[1] - pumpColdConsumer.filter.s[2] - pumpColdConsumer.vol.dynBal.U - pumpCondenser.filter.s[1] - pumpCondenser.filter.s[2] - pumpCondenser.vol.dynBal.U - pumpEvaporator.filter.s[1] - pumpEvaporator.filter.s[2] - pumpEvaporator.vol.dynBal.U - pumpGeothermalSource.filter.s[1] - pumpGeothermalSource.filter.s[2] - pumpGeothermalSource.vol.dynBal.U - pumpHeatConsumer.filter.s[1] - pumpHeatConsumer.filter.s[2] - pumpHeatConsumer.vol.dynBal.U - valveColdStorage.filter.s[1] - valveColdStorage.filter.s[2] - valveHeatSink.filter.s[1] - valveHeatSink.filter.s[2] - valveHeatSource.filter.s[1] - valveHeatSource.filter.s[2] - valveHeatStorage.filter.s[1] - valveHeatStorage.filter.s[2] + ctrlDpVarN.PID.D.x + ctrlDpVarN.PID.I.y + pump.criticalDamping.x[1] + pump.criticalDamping.x[2] + simpleValve.filter.s[1] + simpleValve.filter.s[2] -Warning: WARNINGS have been issued. Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump.translation.log"); = true +savelog("AixLib.Fluid.Movers.PumpsPolynomialBased.Examples.PumpSpeedControlledDpV.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPool"); -Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPool: -The model has the same number of unknowns and equations: 677 -The model has the same number of unknowns and equations -for the given numerical settings of parameters: 677 -Check of AixLib.Fluid.Pools.Examples.IndoorSwimmingPool successful. +rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot"); +Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot: +The model has the same number of unknowns and equations: 699 +The model could not be deduced to be symbolically well-posed. +The model has + 691+pipeSupply.vol_b.dynBal.nPorts+pipeSupply.vol_a.dynBal.nPorts+ pipeReturn.vol_b.dynBal.nPorts+pipeReturn.vol_a.dynBal.nPorts +scalar unknowns and + 647+(if sourceIdeal.source.use_Xi_in then 1 else (if sourceIdeal.source.use_X_in then 0 else 1))+(if not sourceIdeal.source.use_p_in then 1 else 0)+2* sourceIdeal.source.nPorts+(if not sourceIdeal.source.use_T_in then 1 else 0)+ (if sourceIdeal.sink.use_Xi_in then 1 else (if sourceIdeal.sink.use_X_in then 0 else 1))+(if not sourceIdeal.sink.use_p_in then 1 else 0)+2*sourceIdeal.sink.nPorts +(if not sourceIdeal.sink.use_T_in then 1 else 0)+(if demand.sink.use_Xi_in then 1 else (if demand.sink.use_X_in then 0 else 1))+(if not demand.sink.use_m_flow_in then 1 else 0)+2*demand.sink.nPorts+(if not demand.sink.use_T_in then 1 else 0)+(if demand.source.use_Xi_in then 1 else ( if demand.source.use_X_in then 0 else 1))+(if not demand.source.use_m_flow_in then 1 else 0)+2*demand.source.nPorts+(if not demand.source.use_T_in then 1 else 0)+(if demand.sourceHeating.use_Xi_in then 1 else (if demand.sourceHeating.use_X_in then 0 else 1))+(if not demand.sourceHeating.use_m_flow_in then 1 else 0)+2* demand.sourceHeating.nPorts+(if not demand.sourceHeating.use_T_in then 1 else 0)+(if demand.sinkHeating.use_Xi_in then 1 else (if demand.sinkHeating.use_X_in then 0 else 1))+(if not demand.sinkHeating.use_p_in then 1 else 0)+2* demand.sinkHeating.nPorts+(if not demand.sinkHeating.use_T_in then 1 else 0)+ (if not demand.heaPum.eva.vol.steBal.use_mWat_flow then 1 else 0)+(if not pipeSupply.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeSupply.vol_b.dynBal.nPorts +(if not pipeSupply.vol_a.dynBal.use_mWat_flow then 1 else 0)+3* pipeSupply.vol_a.dynBal.nPorts+(if not pipeReturn.vol_b.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_b.dynBal.nPorts+(if not pipeReturn.vol_a.dynBal.use_mWat_flow then 1 else 0)+3*pipeReturn.vol_a.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 699 +Check of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPool.mos\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Pools.Examples.IndoorSwimmingPool\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Pools.Examples.IndoorSwimmingPool\\\");\",", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopHeatPumpCarnot.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Pools/Examples/IndoorSwimmingPool.mos"); -simulateModel("AixLib.Fluid.Pools.Examples.IndoorSwimmingPool", tolerance=1e-6, stopTime=604800, numberOfIntervals=0, outputInterval=900, method="CVode", resultFile="AixLib.Fluid.Pools.Examples.IndoorSwimmingPool"); -Translation of AixLib.Fluid.Pools.Examples.IndoorSwimmingPool: -The DAE has 677 scalar unknowns and 677 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Demands/Examples/OpenLoopHeatPumpCarnot.mos"); +translateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot"); +Translation of AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot: +The DAE has 699 scalar unknowns and 699 scalar equations. Statistics Original Model - Number of components: 161 - Variables: 1600 - Constants: 41 (41 scalars) - Parameters: 725 (917 scalars) - Unknowns: 834 (704 scalars) - Differentiated variables: 3 scalars - Equations: 700 - Nontrivial: 575 + Number of components: 145 + Variables: 1843 + Constants: 38 (38 scalars) + Parameters: 847 (817 scalars) + Unknowns: 958 (725 scalars) + Differentiated variables: 15 scalars + Equations: 799 + Nontrivial: 663 Translated Model - Constants: 579 scalars - Free parameters: 125 scalars - Parameter depending: 369 scalars - Continuous time states: 3 scalars - Time-varying variables: 180 scalars - Alias variables: 409 scalars - Number of mixed real/discrete systems of equations: 1 - Sizes of linear systems of equations: {26} - Sizes after manipulation of the linear systems: {13} - Sizes of nonlinear systems of equations: {75, 1, 1} - Sizes after manipulation of the nonlinear systems: {16, 0, 1} + Constants: 653 scalars + Free parameters: 145 scalars + Parameter depending: 165 scalars + Continuous time states: 11 scalars + Time-varying variables: 163 scalars + Alias variables: 454 scalars + Number of mixed real/discrete systems of equations: 0 + Sizes of linear systems of equations: { } + Sizes after manipulation of the linear systems: { } + Sizes of nonlinear systems of equations: {13, 8} + Sizes after manipulation of the nonlinear systems: {1, 1} Number of numerical Jacobians: 0 Initialization problem - Sizes of nonlinear systems of equations: {1, 74, 1} - Sizes after manipulation of the nonlinear systems: {0, 16, 1} + Sizes of nonlinear systems of equations: {13, 8} + Sizes after manipulation of the nonlinear systems: {1, 1} Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - indoorSwimming.cirPump.filter.s[1] - indoorSwimming.cirPump.filter.s[2] - indoorSwimming.PI.I.y + demand.senT_return.T + demand.senT_supply.T + pControl.I.y + pipeReturn.del.x + pipeReturn.timDel.x + pipeReturn.vol_a.dynBal.U + pipeReturn.vol_b.dynBal.U + pipeSupply.del.x + pipeSupply.timDel.x + pipeSupply.vol_a.dynBal.U + pipeSupply.vol_b.dynBal.U + = true +simulateModel("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot", stopTime=100000, method="dassl", tolerance=1e-006, resultFile="AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot"); +Not possible to open file "AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.mat": No such file or directory Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Pools.Examples.IndoorSwimmingPool.translation.log"); = true +savelog("AixLib.Fluid.DistrictHeatingCooling.Demands.Examples.OpenLoopHeatPumpCarnot.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta"); -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta: -The model has the same number of unknowns and equations: 187 +rCheck = checkModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl"); +Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl: +The model has the same number of unknowns and equations: 181 The model could not be deduced to be symbolically well-posed. The model has - 185+pip.vol.dynBal.nPorts + 175+combinedHeatPower.vol.dynBal.nPorts+size(combinedHeatPower.combiTable1Ds.columns, 1) scalar unknowns and - 171+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if not pip.vol.dynBal.use_mWat_flow then 1 else 0)+3* pip.vol.dynBal.nPorts + 161+size(combinedHeatPower.combiTable1Ds.columns, 1)+2*source.nPorts+(if not source.use_m_flow_in then 1 else 0)+(if not source.use_T_in then 1 else 0)+( if not source.use_X_in then 1 else 0)+2*sink.nPorts+(if not sink.use_p_in then 1 else 0)+(if not sink.use_T_in then 1 else 0)+(if not sink.use_X_in then 1 else 0)+(if not combinedHeatPower.vol.dynBal.use_mWat_flow then 1 else 0)+3*combinedHeatPower.vol.dynBal.nPorts scalar equations. However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: - 187 -Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta successful. + 181 +Check of AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeZeta.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystemNoControl.mos\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl\\\");\",", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/PlugFlowPipeZeta.mos"); -simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta", stopTime=1000, method="dassl", tolerance=1e-6, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta"); -Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta: -The DAE has 187 scalar unknowns and 187 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/BoilerCHP/Examples/CHPSystemNoControl.mos"); +simulateModel("AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl", tolerance=1e-06, stopTime=300, method="dassl", resultFile="AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl"); +Translation of AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl: +The DAE has 181 scalar unknowns and 181 scalar equations. Statistics Original Model - Number of components: 34 - Variables: 537 - Constants: 10 (10 scalars) - Parameters: 262 (255 scalars) - Unknowns: 265 (193 scalars) - Differentiated variables: 6 scalars - Equations: 220 - Nontrivial: 186 + Number of components: 38 + Variables: 432 + Constants: 5 (5 scalars) + Parameters: 195 (229 scalars) + Unknowns: 232 (185 scalars) + Differentiated variables: 5 scalars + Equations: 210 + Nontrivial: 170 Translated Model - Constants: 189 scalars - Free parameters: 46 scalars - Parameter depending: 66 scalars - Continuous time states: 5 scalars - Time-varying variables: 39 scalars - Alias variables: 118 scalars + Constants: 143 scalars + Free parameters: 58 scalars + Parameter depending: 71 scalars + Continuous time states: 3 scalars + Time-varying variables: 38 scalars + Alias variables: 109 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: { } - Sizes after manipulation of the linear systems: { } + Sizes of linear systems of equations: {5} + Sizes after manipulation of the linear systems: {0} Sizes of nonlinear systems of equations: { } Sizes after manipulation of the nonlinear systems: { } Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - pip.plugFlowCore.del.x - pip.plugFlowCore.timDel.x - pip.vol.dynBal.U - senTemIn.T - senTemOut.T + combinedHeatPower.internalCapacity.T + combinedHeatPower.senTCold.T + combinedHeatPower.senTHot.T Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.PlugFlowPipeZeta.translation.log"); = true +savelog("AixLib.Fluid.BoilerCHP.Examples.CHPSystemNoControl.translation.log"); = true rCheck = checkModel("AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation"); @@ -3548,136 +3906,95 @@ Declaring variable: Boolean rScript ; savelog("AixLib.Fluid.MassExchangers.MembraneBasedEnthalpyExchangers.Validation.StaticValidation.translation.log"); = true -rCheck = checkModel("AixLib.Fluid.Storage.Examples.StorageBoiler"); -Check of AixLib.Fluid.Storage.Examples.StorageBoiler: -The model has the same number of unknowns and equations: 3241 -Check of AixLib.Fluid.Storage.Examples.StorageBoiler successful. +rCheck = checkModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe"); +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe: +The model has the same number of unknowns and equations: 804 +The model could not be deduced to be symbolically well-posed. +The model has + 796+pip.vol.dynBal.nPorts+pip1.vol.dynBal.nPorts+pip2.vol.dynBal.nPorts+ pip3.vol.dynBal.nPorts +scalar unknowns and + 740+(if sin.use_Xi_in then 1 else (if sin.use_X_in then 0 else 1))+(if not sin.use_p_in then 1 else 0)+2*sin.nPorts+(if not sin.use_T_in then 1 else 0)+ (if sou.use_Xi_in then 1 else (if sou.use_X_in then 0 else 1))+(if not sou.use_m_flow_in then 1 else 0)+2*sou.nPorts+(if not sou.use_T_in then 1 else 0)+(if sin1.use_Xi_in then 1 else (if sin1.use_X_in then 0 else 1))+(if not sin1.use_p_in then 1 else 0)+2*sin1.nPorts+(if not sin1.use_T_in then 1 else 0)+(if sou1.use_Xi_in then 1 else (if sou1.use_X_in then 0 else 1))+(if not sou1.use_m_flow_in then 1 else 0)+2*sou1.nPorts+(if not sou1.use_T_in then 1 else 0)+(if sin2.use_Xi_in then 1 else (if sin2.use_X_in then 0 else 1)) +(if not sin2.use_p_in then 1 else 0)+2*sin2.nPorts+(if not sin2.use_T_in then 1 else 0)+(if sou2.use_Xi_in then 1 else (if sou2.use_X_in then 0 else 1)) +(if not sou2.use_m_flow_in then 1 else 0)+2*sou2.nPorts+(if not sou2.use_T_in then 1 else 0)+(if sin3.use_Xi_in then 1 else (if sin3.use_X_in then 0 else 1))+(if not sin3.use_p_in then 1 else 0)+2*sin3.nPorts+(if not sin3.use_T_in then 1 else 0)+(if sou3.use_Xi_in then 1 else (if sou3.use_X_in then 0 else 1))+(if not sou3.use_m_flow_in then 1 else 0)+2*sou3.nPorts+(if not sou3.use_T_in then 1 else 0)+(if not pip.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip.vol.dynBal.nPorts+(if not pip1.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip1.vol.dynBal.nPorts+(if not pip2.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip2.vol.dynBal.nPorts+(if not pip3.vol.dynBal.use_mWat_flow then 1 else 0)+3*pip3.vol.dynBal.nPorts +scalar equations. +However, exploiting the given numerical settings of parameters gives the same number of unknowns and equations: + 804 +Check of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe successful. Declaring variable: Boolean rCheck ; -Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageBoiler.mos\",", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); -Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.Storage.Examples.StorageBoiler\",", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); -Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); -Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.Storage.Examples.StorageBoiler\\\");\",", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); -Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); -Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.Storage.Examples.StorageBoiler.statistics.log"); +Modelica.Utilities.Streams.print(" { \"file\" : \"AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/DHCPipe.mos\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"model\" : \"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"check\" : {", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"command\" : \"checkModel(\\\"AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe\\\");\",", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); +Modelica.Utilities.Streams.print(" \"result\" : " + String(rCheck), "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); +Modelica.Utilities.Streams.print(" },", "AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.statistics.log"); -rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/Storage/Examples/StorageBoiler.mos"); -simulateModel("AixLib.Fluid.Storage.Examples.StorageBoiler", tolerance=1e-6, stopTime=86400, method="dassl", resultFile="AixLib.Fluid.Storage.Examples.StorageBoiler"); -Translation of AixLib.Fluid.Storage.Examples.StorageBoiler: -The DAE has 3241 scalar unknowns and 3241 scalar equations. +rScript=RunScript("modelica://AixLib/Resources/Scripts/Dymola/Fluid/DistrictHeatingCooling/Pipes/Examples/DHCPipe.mos"); +translateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe"); +Translation of AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe: +The DAE has 804 scalar unknowns and 804 scalar equations. Statistics Original Model - Number of components: 651 - Variables: 8627 - Constants: 159 (159 scalars) - Parameters: 4092 (4095 scalars) - Unknowns: 4376 (3344 scalars) - Differentiated variables: 106 scalars - Equations: 3314 - Nontrivial: 2545 + Number of components: 144 + Variables: 2246 + Constants: 37 (37 scalars) + Parameters: 1101 (1073 scalars) + Unknowns: 1108 (828 scalars) + Differentiated variables: 33 scalars + Equations: 923 + Nontrivial: 790 Translated Model - Constants: 2850 scalars - Free parameters: 287 scalars - Parameter depending: 1523 scalars - Continuous time states: 76 scalars - Time-varying variables: 843 scalars - Alias variables: 2095 scalars + Constants: 721 scalars + Free parameters: 205 scalars + Parameter depending: 321 scalars + Continuous time states: 29 scalars + Time-varying variables: 177 scalars + Alias variables: 514 scalars Number of mixed real/discrete systems of equations: 0 - Sizes of linear systems of equations: {4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 4, 3, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2} - Sizes after manipulation of the linear systems: {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0} - Sizes of nonlinear systems of equations: {22, 1, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 1} - Sizes after manipulation of the nonlinear systems: {1, 0, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1} + Sizes of linear systems of equations: {2, 2} + Sizes after manipulation of the linear systems: {0, 0} + Sizes of nonlinear systems of equations: {6} + Sizes after manipulation of the nonlinear systems: {1} Number of numerical Jacobians: 0 - Initialization problem - Sizes of nonlinear systems of equations: {22, 1, 1} - Sizes after manipulation of the nonlinear systems: {1, 0, 1} - Number of numerical Jacobians: 0 Selected continuous time states Statically selected continuous time states - bufferStorage.bottomCover.loadIns.T - bufferStorage.bottomCover.loadWall.T - bufferStorage.heatingCoil1.pipe[1].del.x - bufferStorage.heatingCoil1.pipe[1].timDel.x - bufferStorage.heatingCoil1.pipe[1].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[1].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[2].del.x - bufferStorage.heatingCoil1.pipe[2].timDel.x - bufferStorage.heatingCoil1.pipe[2].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[2].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[3].del.x - bufferStorage.heatingCoil1.pipe[3].timDel.x - bufferStorage.heatingCoil1.pipe[3].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[3].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[4].del.x - bufferStorage.heatingCoil1.pipe[4].timDel.x - bufferStorage.heatingCoil1.pipe[4].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[4].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[5].del.x - bufferStorage.heatingCoil1.pipe[5].timDel.x - bufferStorage.heatingCoil1.pipe[5].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[5].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[6].del.x - bufferStorage.heatingCoil1.pipe[6].timDel.x - bufferStorage.heatingCoil1.pipe[6].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[6].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[7].del.x - bufferStorage.heatingCoil1.pipe[7].timDel.x - bufferStorage.heatingCoil1.pipe[7].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[7].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[8].del.x - bufferStorage.heatingCoil1.pipe[8].timDel.x - bufferStorage.heatingCoil1.pipe[8].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[8].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[9].del.x - bufferStorage.heatingCoil1.pipe[9].timDel.x - bufferStorage.heatingCoil1.pipe[9].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[9].vol_b.dynBal.U - bufferStorage.heatingCoil1.pipe[10].del.x - bufferStorage.heatingCoil1.pipe[10].timDel.x - bufferStorage.heatingCoil1.pipe[10].vol_a.dynBal.U - bufferStorage.heatingCoil1.pipe[10].vol_b.dynBal.U - bufferStorage.layer[1].dynBal.U - bufferStorage.layer[2].dynBal.U - bufferStorage.layer[3].dynBal.U - bufferStorage.layer[4].dynBal.U - bufferStorage.layer[5].dynBal.U - bufferStorage.layer[6].dynBal.U - bufferStorage.layer[7].dynBal.U - bufferStorage.layer[8].dynBal.U - bufferStorage.layer[9].dynBal.U - bufferStorage.layer[10].dynBal.U - bufferStorage.storageMantle[1].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[1].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[2].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[2].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[3].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[3].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[4].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[4].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[5].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[5].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[6].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[6].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[7].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[7].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[8].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[8].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[9].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[9].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[10].Insulation.CylindricLoad1.heatCapacitor.T - bufferStorage.storageMantle[10].Wall.CylindricLoad1.heatCapacitor.T - bufferStorage.topCover.loadIns.T - bufferStorage.topCover.loadWall.T - pump.filter.s[1] - pump.filter.s[2] + pip.Q_gai + pip.Q_los + pip.vol.dynBal.U + pip1.pipCor.del.x + pip1.pipCor.timDel.x + pip1.Q_gai + pip1.Q_los + pip1.vol.dynBal.U + pip2.cylHeaTra1.CylindricLoad1.heatCapacitor.T + pip2.cylHeaTra2.CylindricLoad1.heatCapacitor.T + pip2.cylHeaTra3.CylindricLoad1.heatCapacitor.T + pip2.pipCor.del.x + pip2.pipCor.timDel.x + pip2.Q_gai + pip2.Q_los + pip2.vol.dynBal.U + pip3.pipCor.del.x + pip3.pipCor.timDel.x + pip3.Q_gai + pip3.Q_los + pip3.vol.dynBal.U + senTemIn.T + senTemIn1.T + senTemIn2.T + senTemIn3.T + senTemOut.T + senTemOut1.T + senTemOut2.T + senTemOut3.T + = true +simulateModel("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe", stopTime=3600, method="dassl", tolerance=1e-6, resultFile="AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe"); Finished = true Declaring variable: Boolean rScript ; -savelog("AixLib.Fluid.Storage.Examples.StorageBoiler.translation.log"); \ No newline at end of file +savelog("AixLib.Fluid.DistrictHeatingCooling.Pipes.Examples.DHCPipe.translation.log"); \ No newline at end of file diff --git a/docs/1520_newHPModels/regression/Fluid/unitTests-dymola.log b/docs/1520_newHPModels/regression/Fluid/unitTests-dymola.log index 65c1e78f75..87f3de678c 100644 --- a/docs/1520_newHPModels/regression/Fluid/unitTests-dymola.log +++ b/docs/1520_newHPModels/regression/Fluid/unitTests-dymola.log @@ -5,7 +5,7 @@ Regression tests are only run for the following package: *** Warning: AixLib.Fluid.Examples.GeothermalHeatPump.GeothermalHeatPump: Translation statistics for simulation and results changed for number of continuous time states. Old = 113 New = 109 -Comparison files output by funnel are stored in the directory 'funnel_comp' of size 1.1 MB. +Comparison files output by funnel are stored in the directory 'funnel_comp' of size 1.2 MB. Run 'python -c "import buildingspy.development.regressiontest as t; t.Tester(tool=\"dymola\").report()"' to access a summary of the comparison results. diff --git a/docs/1520_newHPModels/regression/Obsolete/comparison-dymola.log b/docs/1520_newHPModels/regression/Obsolete/comparison-dymola.log index 64fcf8bc8b..541745df9e 100644 --- a/docs/1520_newHPModels/regression/Obsolete/comparison-dymola.log +++ b/docs/1520_newHPModels/regression/Obsolete/comparison-dymola.log @@ -60,7 +60,7 @@ }, "model": "AixLib.Obsolete.Year2024.Fluid.Chillers.Examples.Chiller", "simulation": { - "elapsed_time": 0.024, + "elapsed_time": 0.016, "final_time": 3600, "jacobians": 79, "start_time": 0, @@ -129,7 +129,7 @@ }, "model": "AixLib.Obsolete.Year2024.Fluid.HeatPumps.Examples.HeatPump", "simulation": { - "elapsed_time": 0.0165, + "elapsed_time": 0.0158, "final_time": 3600, "jacobians": 72, "start_time": 0, @@ -182,7 +182,7 @@ "vol.T" ], "warnings": [ - "Translation, simulation or extracting simulation results failed. IOError while reading /tmp/tmp-AixLib-0-23gtexnh/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat generated by Obsolete/Year2024/Systems/HeatPumpSystems/Examples/HeatPumpSystem.mos.\nFile /tmp/tmp-AixLib-0-23gtexnh/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat does not exist.\n", + "Translation, simulation or extracting simulation results failed. IOError while reading /tmp/tmp-AixLib-0-t8btvxj1/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat generated by Obsolete/Year2024/Systems/HeatPumpSystems/Examples/HeatPumpSystem.mos.\nFile /tmp/tmp-AixLib-0-t8btvxj1/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat does not exist.\n", "", "", "", diff --git a/docs/1520_newHPModels/regression/Obsolete/simulator-dymola.log b/docs/1520_newHPModels/regression/Obsolete/simulator-dymola.log index 48ab4e4cb9..6a119aca48 100644 --- a/docs/1520_newHPModels/regression/Obsolete/simulator-dymola.log +++ b/docs/1520_newHPModels/regression/Obsolete/simulator-dymola.log @@ -7,12 +7,12 @@ Check of AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSyste Warning: Top class AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. Warning: Failed to find class Controls.HeatPump.BaseClasses.PartialTSetToNSet In redeclaration of TSetToNSet. - File: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 + File: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 Component context: AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.TSetToNSet Component declared as HeatPumpSystem heatPumpSystem in AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem Warning: Failed to find class Controls.HeatPump.BaseClasses.PartialTSetToNSet In declaration of TSetToNSet. - File: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 + File: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 Context: AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.BaseClasses.PartialHeatPumpSystem.TSetToNSet Warning: WARNINGS have been issued. Declaring variable: Boolean rCheck ; @@ -33,12 +33,12 @@ Translation of AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPum Warning: Top class AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. Warning: Failed to find class Controls.HeatPump.BaseClasses.PartialTSetToNSet In redeclaration of TSetToNSet. - File: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 + File: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 Component context: AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.TSetToNSet Component declared as HeatPumpSystem heatPumpSystem in AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem Warning: Failed to find class Controls.HeatPump.BaseClasses.PartialTSetToNSet In declaration of TSetToNSet. - File: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 + File: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/Systems/HeatPumpSystems/BaseClasses/PartialHeatPumpSystem.mo, line 67 Context: AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.BaseClasses.PartialHeatPumpSystem.TSetToNSet Warning: WARNINGS have been issued. = false @@ -54,11 +54,11 @@ rCheck = checkModel("AixLib.Obsolete.Year2024.Fluid.HeatPumps.Examples.HeatPump" Check of AixLib.Obsolete.Year2024.Fluid.HeatPumps.Examples.HeatPump: Warning: Top class AixLib.Obsolete.Year2024.Fluid.HeatPumps.Examples.HeatPump specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511 Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511 The model has the same number of unknowns and equations: 634 @@ -89,19 +89,19 @@ simulateModel("AixLib.Obsolete.Year2024.Fluid.HeatPumps.Examples.HeatPump", tole Translation of AixLib.Obsolete.Year2024.Fluid.HeatPumps.Examples.HeatPump: Warning: Top class AixLib.Obsolete.Year2024.Fluid.HeatPumps.Examples.HeatPump specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511 Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511 The DAE has 634 scalar unknowns and 634 scalar equations. Warning: The conditions of the following assert statements are always false: Warning: assert(heatPump.con.preDro.homotopyInitialization, "In HeatPump.heatPump.con.preDro: The constant homotopyInitialization has been modified from its default value. This constant will be removed in future releases.", AssertionLevel.warning); - The variable heatPump.con.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-23gtexnh/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component heatPump.con.preDro.PartialResistance. + The variable heatPump.con.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component heatPump.con.preDro.PartialResistance. Warning: assert(heatPump.eva.preDro.homotopyInitialization, "In HeatPump.heatPump.eva.preDro: The constant homotopyInitialization has been modified from its default value. This constant will be removed in future releases.", AssertionLevel.warning); - The variable heatPump.eva.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-23gtexnh/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component heatPump.eva.preDro.PartialResistance. + The variable heatPump.eva.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component heatPump.eva.preDro.PartialResistance. Statistics @@ -162,11 +162,11 @@ rCheck = checkModel("AixLib.Obsolete.Year2024.Fluid.Chillers.Examples.Chiller"); Check of AixLib.Obsolete.Year2024.Fluid.Chillers.Examples.Chiller: Warning: Top class AixLib.Obsolete.Year2024.Fluid.Chillers.Examples.Chiller specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511 Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511 The model has the same number of unknowns and equations: 625 @@ -197,19 +197,19 @@ simulateModel("AixLib.Obsolete.Year2024.Fluid.Chillers.Examples.Chiller", tolera Translation of AixLib.Obsolete.Year2024.Fluid.Chillers.Examples.Chiller: Warning: Top class AixLib.Obsolete.Year2024.Fluid.Chillers.Examples.Chiller specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/Chiller/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.Chiller.EN14511 Warning: Component type specifier Vitocal200AWO201 specified an obsolete type: Obsolete model - This model is obsolete and not maintained anymore. - Near file: /tmp/tmp-AixLib-0-23gtexnh/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 + Near file: /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Obsolete/Year2024/DataBase/HeatPump/EN14511/Vitocal200AWO201.mo, line 2 Component context: _out Component declared as Vitocal200AWO201 _out in AixLib.Obsolete.Year2024.DataBase.HeatPump.EN14511 The DAE has 625 scalar unknowns and 625 scalar equations. Warning: The conditions of the following assert statements are always false: Warning: assert(chiller.con.preDro.homotopyInitialization, "In Chiller.chiller.con.preDro: The constant homotopyInitialization has been modified from its default value. This constant will be removed in future releases.", AssertionLevel.warning); - The variable chiller.con.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-23gtexnh/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component chiller.con.preDro.PartialResistance. + The variable chiller.con.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component chiller.con.preDro.PartialResistance. Warning: assert(chiller.eva.preDro.homotopyInitialization, "In Chiller.chiller.eva.preDro: The constant homotopyInitialization has been modified from its default value. This constant will be removed in future releases.", AssertionLevel.warning); - The variable chiller.eva.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-23gtexnh/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component chiller.eva.preDro.PartialResistance. + The variable chiller.eva.preDro.homotopyInitialization = false, was declared in class AixLib.Fluid.BaseClasses.PartialResistance, /tmp/tmp-AixLib-0-t8btvxj1/AixLib/Fluid/BaseClasses/PartialResistance.mo at line 12, and used in component chiller.eva.preDro.PartialResistance. Statistics diff --git a/docs/1520_newHPModels/regression/Obsolete/unitTests-dymola.log b/docs/1520_newHPModels/regression/Obsolete/unitTests-dymola.log index 5266392512..2c17e11887 100644 --- a/docs/1520_newHPModels/regression/Obsolete/unitTests-dymola.log +++ b/docs/1520_newHPModels/regression/Obsolete/unitTests-dymola.log @@ -2,8 +2,8 @@ Regression tests are only run for the following package: AixLib.Obsolete *** Error: Model check failed for 'AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem'. *** Error: Simulation failed for 'RunScript("modelica://AixLib/Resources/Scripts/Dymola/Obsolete/Year2024/Systems/HeatPumpSystems/Examples/HeatPumpSystem.mos");'. -*** Error: IOError while reading /tmp/tmp-AixLib-0-23gtexnh/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat generated by Obsolete/Year2024/Systems/HeatPumpSystems/Examples/HeatPumpSystem.mos. -File /tmp/tmp-AixLib-0-23gtexnh/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat does not exist. +*** Error: IOError while reading /tmp/tmp-AixLib-0-t8btvxj1/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat generated by Obsolete/Year2024/Systems/HeatPumpSystems/Examples/HeatPumpSystem.mos. +File /tmp/tmp-AixLib-0-t8btvxj1/AixLib/AixLib.Obsolete.Year2024.Systems.HeatPumpSystems.Examples.HeatPumpSystem.mat does not exist. Comparison files output by funnel are stored in the directory 'funnel_comp' of size 0.2 MB. Run 'python -c "import buildingspy.development.regressiontest as t; t.Tester(tool=\"dymola\").report()"'