OpenModelica newInst-newBackend from 2026-10-08 19:54:55 to 2026-10-10 01:23:33

Summary

OMC Commits25
Libraries Changed5
Number of Improvements491
Number of Regressions112
Number of Performance Improvements23
Number of Performance Regressions40

OpenModelica Changes

CommitDateAuthorSummary
79752d10432026-10-10 01:12:54 +0200kabdelhak[NB] fix clara init matching (#17220)
d0e88049cd2026-10-09 21:41:39 +0200kabdelhak[NB] fix clara steamcycles, step 1 (#17218)
de912320022026-10-09 20:21:27 +0200kabdelhak[NB] linear size resizable sparsity pattern code (#17216)
43a21f93c92026-10-09 18:24:25 +0200Adeel AsgharDraw plot grid, axes and curves at fractional device pixel ratios (#17217)
bfa4c8f5bc2026-10-09 16:28:15 +0200kabdelhak[NB] fix slow resizable algebraic loops in Jacobians (#17214)
47280618882026-10-09 15:58:21 +0200Christian Schulze[NB] Lower function calls, assert, terminate and reinit inside if-equations of when-equations (#17210)
1a9c122d6f2026-10-09 14:29:09 +0200Christian SchulzeFix nb function ref in binding (#17134)
04a69cebee2026-10-09 12:46:29 +0200Baptiste MazuriéSplit data reconciliation testsuite (#17194)
f9329224672026-10-09 12:39:10 +0200Adrian PopBump OMSimulator (#17146) (#17148)
bcb87047b42026-10-09 12:12:00 +0200Christian SchulzeLower function calls, assert, terminate and reinit inside if-equations of when-equations (#17195)
dfd94cb8342026-10-09 11:47:33 +0200kabdelhak[NF] inStream for resizable connections (#17207)
8e8e2c78042026-10-09 10:15:27 +0200kabdelhak[NB] keep noEvent for function alias equations (#17206)
47387018742026-10-09 09:15:29 +0200Adeel AsgharAdd clang as compiler option on Windows (#17205)
609d4099282026-10-08 19:22:33 +0200Martin Sjölundgbode: evaluate only the fast states' equations
e3a061c7042026-10-08 18:17:59 +0200Martin Sjölundgbode: birate statistics as in C
16bfe55fff2026-10-08 18:17:51 +0200Martin Sjölundgbode: inner integration on the internal solver
90d092e3e22026-10-08 18:17:06 +0200Martin Sjölundgbode: contract the signed embedded estimate
16f641e42f2026-10-08 17:49:05 +0200Martin Sjölundgbode: initial step without extra evaluations
a01db948602026-10-08 17:48:59 +0200Martin Sjölundgbode: catch model errors as gbode_fODE does
b50acae6b62026-10-08 17:48:36 +0200Martin Sjölundgbode: sparse KLU Newton matrices, as in C
660ccdef812026-10-08 17:47:44 +0200Martin Sjölundgbode: restore the model's zero crossings
8f7c917a412026-10-08 17:47:04 +0200Martin Sjölundgbode: no rejection on the interpolation error
2adcafdc062026-10-08 23:50:10 +0200Christian SchulzeFix record constant bindings for records in arrays of components (#17197)
3d30167c692026-10-08 23:47:15 +0200Martin SjölundCollect record constructors of array literals (#17204)
e3a6e9ed552026-10-08 22:23:12 +0200Martin SjölundExport checkout scm variables to env (#17203)

OpenModelicaLibraryTesting Changes

CommitDateAuthorSummary
3d588a32026-10-09 17:45:40 +0200Francesco CasellaUpdate heavy_tests.json (#370)
78010ce2026-10-08 20:49:41 +0200Martin SjölundChoose the solver of a pull request run

Library Changes

LibraryChange
Buildings_latestFrom version 14.1.0-master (18416549d6a86b18df768d9c122b1d36a67b71b9) to 14.1.0-master (b83b2278b31f61dac4ae8e55b7e9b48cd2b3e049)
Dynawo_devFrom version 1.8.0-master (c46649f7ed0e773b2b5856ac8d154c174f6bb6b6) to 2.0.0-master (f76114f2a4bae3ac18646cc770c536432ae88848)
IBPSA_latestFrom version 4.0.0-master (5b19c7eb8b86bb4a9963b21fe3deb407c762ba1c) to 4.0.0-master (ffcce8ff3fb372285f75a9de8c0bf3d92a038bad)
ScalableTestSuiteFrom version 2.2.0-master (117db671d7b912f1d0ac9d39e46452b7215f1f0f) to 2.2.0-master (c9a7574b31142fa976d20ab6970d78639c125ceb)
ScalableTestSuite_nooptFrom version 2.2.0-master (117db671d7b912f1d0ac9d39e46452b7215f1f0f) to 2.2.0-master (c9a7574b31142fa976d20ab6970d78639c125ceb)

Models Affected

AESAES.ControlBlocks.AnalogueControllers.PI_awfb_full (sim)Simulate performance 0.12 → 11.62
AESAES.Coursework.ThermSys_case_studies.HVAC_simple.AHU_control_case_001 (sim)Compile → Simulate
AESAES.Coursework.ThermSys_component_models.Controlled_AHU_case_002 (sim)Compile → Simulate
AESAES.Devel_test_models.Test_air_circ_002 (sim)Compile → Simulate
AESAES.Devel_test_models.Test_air_circ_003 (sim)Compile → Simulate
AESAES.Devel_test_models.Test_air_circ_004 (sim)Compile → Simulate
AESAES.Devel_test_models.Test_liquid_circuit_007_net01 (sim)Simulate → Compile
AESAES.Devel_test_models.Test_liquid_circuit_008_net02 (sim)Simulate → Compile
AixLibAixLib.Controls.HVACAgentBasedControl.Examples.BuildingHeatingSystems.BuildingHeating (sim)Failed → FrontEnd
AixLibAixLib.Controls.HVACAgentBasedControl.Examples.BuildingHeatingSystems.BuildingHeating_usePoke (sim)Failed → FrontEnd
AixLibAixLib.Controls.HVACAgentBasedControl.Examples.BuildingHeatingSystems.BuildingWithPV (sim)Failed → FrontEnd
AixLibAixLib.Controls.OBC.CDL.Discrete.Validation.TriggeredMovingMean (sim)Compile → Simulate
AixLibAixLib.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Simulate → FrontEnd
AixLibAixLib.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Simulate
AixLibAixLib.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
AixLibAixLib.Fluid.Movers.Compressors.Examples.RotaryCompressorPressureHeatLosses (sim)Compile → Simulate
AixLibAixLib.Fluid.Pools.Examples.IndoorSwimmingPool (sim)Compile → Simulate
AixLibAixLib.Fluid.Pools.Examples.IndoorSwimmingPoolExternalHeatingSystem (sim)Compile → Simulate
AixLibAixLib.Systems.ModularAHU.Examples.DemandControlledAHU (sim)Failed → FrontEnd
AixLibAixLib.ThermalZones.ReducedOrder.Examples.ComparisonThermalZoneMoistAndDryAir (sim)Failed → FrontEnd
AixLibAixLib.ThermalZones.ReducedOrder.Examples.SimpleRoomFourElementsTraceSubstance (sim)BackEnd → Simulate
AixLibAixLib.ThermalZones.ReducedOrder.Examples.SimpleRoomTwoElementsNonConstantTGround (sim)BackEnd → Simulate
AixLibAixLib.ThermalZones.ReducedOrder.Examples.ThermalZone (sim)Failed → FrontEnd
AixLibAixLib.ThermalZones.ReducedOrder.Examples.ThermalZoneAirExchange (sim)Failed → FrontEnd
AixLibAixLib.ThermalZones.ReducedOrder.Examples.ThermalZoneMoistAir (sim)Failed → FrontEnd
AixLibAixLib.ThermalZones.ReducedOrder.Examples.ThermalZoneMoistCO2AirExchange (sim)Failed → FrontEnd
AixLibAixLib.ThermalZones.ReducedOrder.Validation.ASHRAE140.FiveElements.TestCase960 (sim)Failed → FrontEnd
BodylightBodylight.Chemical.Examples.TwoConcentrationCompartments (sim)FrontEnd → BackEnd
BoundaryInitBlocksBoundaryInitBlocks.Examples.Tests.ThermoHydroMSL.CL_Simulation_OFF_BWD (sim)Compile → Simulate
BoundaryInitBlocksBoundaryInitBlocks.Examples.Tests.ThermoHydroMSL.CL_Simulation_ON_BWD (sim)Compile → Simulate
BoundaryInitBlocksBoundaryInitBlocks.Examples.Tests.ThermoHydroMSL.SmallSignal_ON_BWD (sim)Compile → Simulate
BoundaryInitBlocksBoundaryInitBlocks.Examples.Tests.ThermoHydroMSL.SteadyState_OFF_BWD (sim)Compile → Simulate
BoundaryInitBlocksBoundaryInitBlocks.Examples.Tests.ThermoHydroMSL.SteadyState_ON_BWD (sim)Compile → Simulate
BuildSysProBuildSysPro.IBPSA.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Simulate
BuildSysProBuildSysPro.IBPSA.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
BuildingSystemsBuildingSystems.Applications.DistrictSimulation.DistrictBerlinKreuzberg (sim)FrontEnd → Failed
BuildingSystemsBuildingSystems.Buildings.Examples.BuildingThermalMultiZone (sim)Failed → FrontEnd
BuildingSystemsBuildingSystems.Buildings.Zones.Examples.SingleZoneThermal3x3x3 (sim)
BuildingSystemsBuildingSystems.Buildings.Zones.Examples.SingleZoneThermal3x3x3ViewFactors (sim)
BuildingSystemsBuildingSystems.Buildings.Zones.Examples.SingleZoneThermal3x3x3WithOpenings (sim)
BuildingSystemsBuildingSystems.Buildings.Zones.Examples.SingleZoneVentilated (sim)FrontEnd → Compile
BuildingSystemsBuildingSystems.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Simulate → FrontEnd
BuildingSystemsBuildingSystems.Electrical.DC.Loads.Examples.LinearizedLoad (sim)Simulate → Compile
BuildingSystemsBuildingSystems.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Simulate
BuildingSystemsBuildingSystems.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
BuildingSystemsBuildingSystems.ThermalZones.ReducedOrder.Examples.SimpleRoomFourElementsTraceSubstance (sim)BackEnd → Simulate
BuildingSystemsBuildingSystems.ThermalZones.ReducedOrder.Examples.SimpleRoomTwoElementsNonConstantTGround (sim)BackEnd → Simulate
Buildings_12Buildings.Applications.DataCenters.ChillerCooled.Equipment.Validation.IntegratedPrimaryLoadSide (sim)SimCode → Failed
Buildings_12Buildings.Applications.DataCenters.ChillerCooled.Equipment.Validation.IntegratedPrimarySecondary (sim)SimCode → Failed
Buildings_12Buildings.Controls.OBC.CDL.Discrete.Validation.TriggeredMovingMean (sim)Compile → Verify
Buildings_12Buildings.DHC.Plants.Cooling.Subsystems.Examples.CoolingTowersParallel (sim)Templates → FrontEnd
Buildings_12Buildings.DHC.Plants.Cooling.Subsystems.Examples.CoolingTowersWithBypass (sim)Templates → FrontEnd
Buildings_12Buildings.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Verify → FrontEnd
Buildings_12Buildings.Electrical.DC.Lines.Examples.DCLinesLinearized (sim)Simulate → Verify
Buildings_12Buildings.Electrical.DC.Loads.Examples.LinearizedLoad (sim)Simulate → Verify
Buildings_12Buildings.Fluid.DXSystems.Cooling.BaseClasses.Examples.UACp (sim)Compile → Verify
Buildings_12Buildings.Fluid.HeatExchangers.Examples.DryCoilCounterFlowMassFlow (sim)Templates → FrontEnd
Buildings_12Buildings.Fluid.HeatExchangers.Examples.DryCoilCounterFlowPControl (sim)Compile → FrontEnd
Buildings_12Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowMassFlow (sim)Templates → FrontEnd
Buildings_12Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPControl (sim)Compile → FrontEnd
Buildings_12Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIControlAutoTuning (sim)Compile → FrontEnd
Buildings_12Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIDControlAutoTuning (sim)Compile → FrontEnd
Buildings_12Buildings.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Verify
Buildings_12Buildings.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
Buildings_12Buildings.Templates.Components.Validation.Fans (sim)FrontEnd → Verify
Buildings_12Buildings.ThermalZones.Detailed.BaseClasses.Examples.InfraredRadiationExchange (sim)SimCode → Failed
Buildings_12Buildings.ThermalZones.Detailed.BaseClasses.Examples.InfraredRadiationGainDistribution (sim)SimCode → Failed
Buildings_12Buildings.ThermalZones.Detailed.BaseClasses.Examples.MixedAirHeatMassBalance (sim)SimCode → Failed
Buildings_12Buildings.ThermalZones.Detailed.BaseClasses.Examples.RadiationTemperature (sim)SimCode → Failed
Buildings_12Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier (sim)SimCode → Failed
Buildings_12Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingSpring (sim)Templates → FrontEnd
Buildings_12Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingSummer (sim)Templates → FrontEnd
Buildings_12Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingWinter (sim)Templates → FrontEnd
Buildings_12Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.Unconditioned (sim)Templates → FrontEnd
Buildings_12Buildings.Utilities.IO.Python_3_8.Functions.Examples.Exchange (sim)Compile → Templates
Buildings_13Buildings.Applications.DataCenters.ChillerCooled.Equipment.Validation.IntegratedPrimaryLoadSide (sim)SimCode → Failed
Buildings_13Buildings.Applications.DataCenters.ChillerCooled.Equipment.Validation.IntegratedPrimarySecondary (sim)SimCode → Failed
Buildings_13Buildings.Controls.OBC.CDL.Discrete.Validation.TriggeredMovingMean (sim)Compile → Simulate
Buildings_13Buildings.Controls.OBC.Utilities.Validation.OptimalStartCoolingNegativeStartTime (sim)FrontEnd → Simulate
Buildings_13Buildings.Controls.OBC.Utilities.Validation.OptimalStartCoolingPositiveStartTime (sim)FrontEnd → Simulate
Buildings_13Buildings.Controls.OBC.Utilities.Validation.OptimalStartHeating (sim)FrontEnd → Simulate
Buildings_13Buildings.Controls.OBC.Utilities.Validation.OptimalStartHeatingCooling (sim)FrontEnd → Simulate
Buildings_13Buildings.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Simulate → FrontEnd
Buildings_13Buildings.Fluid.DXSystems.Cooling.BaseClasses.Examples.UACp (sim)Compile → Simulate
Buildings_13Buildings.Fluid.HeatExchangers.Examples.DryCoilCounterFlowMassFlow (sim)Templates → FrontEnd
Buildings_13Buildings.Fluid.HeatExchangers.Examples.DryCoilCounterFlowPControl (sim)Compile → FrontEnd
Buildings_13Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowMassFlow (sim)Templates → FrontEnd
Buildings_13Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPControl (sim)Compile → FrontEnd
Buildings_13Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIControlAutoTuning (sim)Compile → FrontEnd
Buildings_13Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIControlAutoTuningFailure (sim)Compile → FrontEnd
Buildings_13Buildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIDControlAutoTuning (sim)Compile → FrontEnd
Buildings_13Buildings.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Simulate
Buildings_13Buildings.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
Buildings_13Buildings.Templates.Components.Validation.Fans (sim)FrontEnd → Simulate
Buildings_13Buildings.ThermalZones.Detailed.BaseClasses.Examples.InfraredRadiationExchange (sim)SimCode → Failed
Buildings_13Buildings.ThermalZones.Detailed.BaseClasses.Examples.InfraredRadiationGainDistribution (sim)SimCode → Failed
Buildings_13Buildings.ThermalZones.Detailed.BaseClasses.Examples.MixedAirHeatMassBalance (sim)SimCode → Failed
Buildings_13Buildings.ThermalZones.Detailed.BaseClasses.Examples.RadiationTemperature (sim)SimCode → Failed
Buildings_13Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier (sim)SimCode → Failed
Buildings_13Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingSpring (sim)Templates → FrontEnd
Buildings_13Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingSummer (sim)Templates → FrontEnd
Buildings_13Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingWinter (sim)Templates → FrontEnd
Buildings_13Buildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.Unconditioned (sim)Templates → FrontEnd
Buildings_13Buildings.Utilities.IO.Python_3_12.Functions.Examples.Exchange (sim)Compile → Templates
Buildings_latestBuildings.Applications.DataCenters.ChillerCooled.Equipment.Validation.IntegratedPrimaryLoadSide (sim)SimCode → Failed
Buildings_latestBuildings.Applications.DataCenters.ChillerCooled.Equipment.Validation.IntegratedPrimarySecondary (sim)SimCode → Failed
Buildings_latestBuildings.Controls.OBC.CDL.Discrete.Validation.TriggeredMovingMean (sim)Compile → Verify
Buildings_latestBuildings.Controls.OBC.Utilities.Validation.OptimalStartCoolingNegativeStartTime (sim)FrontEnd → Simulate
Buildings_latestBuildings.Controls.OBC.Utilities.Validation.OptimalStartCoolingPositiveStartTime (sim)FrontEnd → Simulate
Buildings_latestBuildings.Controls.OBC.Utilities.Validation.OptimalStartHeating (sim)FrontEnd → Simulate
Buildings_latestBuildings.Controls.OBC.Utilities.Validation.OptimalStartHeatingCooling (sim)FrontEnd → Simulate
Buildings_latestBuildings.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Verify → FrontEnd
Buildings_latestBuildings.Electrical.DC.Lines.Examples.DCLinesLinearized (sim)Simulate → Verify
Buildings_latestBuildings.Electrical.DC.Loads.Examples.LinearizedLoad (sim)Simulate → Verify
Buildings_latestBuildings.Fluid.DXSystems.Cooling.BaseClasses.Examples.UACp (sim)Compile → Verify
Buildings_latestBuildings.Fluid.HeatExchangers.Examples.DryCoilCounterFlowMassFlow (sim)Templates → FrontEnd
Buildings_latestBuildings.Fluid.HeatExchangers.Examples.DryCoilCounterFlowPControl (sim)Compile → FrontEnd
Buildings_latestBuildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowMassFlow (sim)Templates → FrontEnd
Buildings_latestBuildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPControl (sim)Compile → FrontEnd
Buildings_latestBuildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIControlAutoTuning (sim)Compile → FrontEnd
Buildings_latestBuildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIControlAutoTuningFailure (sim)Compile → FrontEnd
Buildings_latestBuildings.Fluid.HeatExchangers.Examples.WetCoilCounterFlowPIDControlAutoTuning (sim)Compile → FrontEnd
Buildings_latestBuildings.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Verify
Buildings_latestBuildings.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
Buildings_latestBuildings.Templates.Components.Validation.Fans (sim)FrontEnd → Verify
Buildings_latestBuildings.Templates.Plants.Controls.HeatPumps.Subsequences.Validation.EventSequencingSingle (sim)FrontEnd → Simulate
Buildings_latestBuildings.ThermalZones.Detailed.BaseClasses.Examples.InfraredRadiationExchange (sim)SimCode → Failed
Buildings_latestBuildings.ThermalZones.Detailed.BaseClasses.Examples.InfraredRadiationGainDistribution (sim)SimCode → Failed
Buildings_latestBuildings.ThermalZones.Detailed.BaseClasses.Examples.MixedAirHeatMassBalance (sim)SimCode → Failed
Buildings_latestBuildings.ThermalZones.Detailed.BaseClasses.Examples.RadiationTemperature (sim)SimCode → Failed
Buildings_latestBuildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier (sim)SimCode → Failed
Buildings_latestBuildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingSpring (sim)Templates → FrontEnd
Buildings_latestBuildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingSummer (sim)Templates → FrontEnd
Buildings_latestBuildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingSummer_Autosizing (sim)Templates → FrontEnd
Buildings_latestBuildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingWinter (sim)Templates → FrontEnd
Buildings_latestBuildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.IdealHeatingCoolingWinter_Autosizing (sim)Templates → FrontEnd
Buildings_latestBuildings.ThermalZones.EnergyPlus_24_2_0.Examples.SmallOffice.Unconditioned (sim)Templates → FrontEnd
Buildings_latestBuildings.Utilities.IO.Python_3_12.Functions.Examples.Exchange (sim)Compile → Templates
ChemicalChemical.Obsolete.Examples.CheckSubstancesData.StandardElectrochemicalCell (sim)Templates → Simulate
ChemicalChemical.Obsolete.Examples.CheckSubstancesData.StandardElectrochemicalCell2 (sim)Templates → Simulate
ChemicalChemical.Obsolete.Examples.CheckSubstancesData.StandardLeadAcidPotential (sim)Templates → Simulate
ChemicalChemical.Obsolete.Examples.WaterElectrolysis (sim)FrontEnd → Simulate
Chemical_masterChemical.Obsolete.Examples.CheckSubstancesData.StandardElectrochemicalCell (sim)Templates → Simulate
Chemical_masterChemical.Obsolete.Examples.CheckSubstancesData.StandardElectrochemicalCell2 (sim)Templates → Simulate
Chemical_masterChemical.Obsolete.Examples.CheckSubstancesData.StandardLeadAcidPotential (sim)Templates → Simulate
Chemical_masterChemical.Obsolete.Examples.WaterElectrolysis (sim)FrontEnd → Simulate
ClaRaClaRa.Basics.ControlVolumes.GasVolumes.Check.TestFlueGasCell_N_cv (sim)FrontEnd → Compile
ClaRaClaRa.Basics.ControlVolumes.GasVolumes.Check.TestFlueGasCell_chem (sim)Compile → Verify
ClaRaClaRa.Basics.ControlVolumes.SolidVolumes.Check.Test_NTU_CounterParallelCross_Comparison (sim)FrontEnd → Simulate
ClaRaClaRa.Components.Adapters.Check.RowOfScalar2VectorHeatPorts (sim)FrontEnd → Compile
ClaRaClaRa.Components.Control.PredictorModels_3508.Check.TestPredictor (sim)Simulate performance 0.33 → 0:01:10
ClaRaClaRa.Components.Electrical.Check.TestAsynchronousMotor (sim)Verify → Compile
ClaRaClaRa.Components.FlueGasCleaning.Denitrification.Check.Test_Denitrification (sim)FrontEnd → Verify
ClaRaClaRa.Components.FlueGasCleaning.E_Filter.Check.test_E_Filter (sim)Compile → Simulate
ClaRaClaRa.Components.Furnace.Check.Test_CombustionChamber_vs_Burner_control (sim)FrontEnd → Compile
ClaRaClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying (sim)FrontEnd → Compile
ClaRaClaRa.Components.HeatExchangers.Check.Test_FlatTubeFinnedHEXvle2gas_L4 (sim)Failed → Compile
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2gas_L3_1ph_BU (sim)FrontEnd → Compile
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_1ph_BU_ntu (sim)BackEnd → Simulate
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_1ph_BU_simple (sim)BackEnd → Verify
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_1ph_kA (sim)BackEnd → Compile
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_BU_ntu (sim)FrontEnd → Templates
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_BU_simple (sim)SimCode → Verify
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CH_ntu (sim)FrontEnd → Templates
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CH_simple (sim)BackEnd → Verify
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CH_simple_shutoff (sim)SimCode → Simulate
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CU_ntu (sim)FrontEnd → Compile
ClaRaClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CU_simple (sim)BackEnd → Simulate
ClaRaClaRa.Components.HeatExchangers.Check.Test_PlateHEXvle2vle_L3_2ph_ntu (sim)FrontEnd → Compile
ClaRaClaRa.Components.HeatExchangers.Check.Test_PlateHEXvle2vle_L4 (sim)FrontEnd → Compile
ClaRaClaRa.Components.HeatExchangers.Check.Test_RegenerativeAirPreheater (sim)FrontEnd → Compile
ClaRaClaRa.Components.MechanicalSeparation.Check.TestBalanceTank (sim)Templates → Verify
ClaRaClaRa.Components.MechanicalSeparation.Check.TestBottle (sim)BackEnd → Verify
ClaRaClaRa.Components.MechanicalSeparation.Check.TestDrum (sim)BackEnd → Compile
ClaRaClaRa.Components.MechanicalSeparation.Check.TestFeedWaterTank_1Separator (sim)BackEnd → Verify
ClaRaClaRa.Components.MechanicalSeparation.Check.TestSeparator_L3 (sim)SimCode → Verify
ClaRaClaRa.Components.Mills.PhysicalMills.Volumes.Check.TestDryer (sim)Simulate performance 54.69 → 0.31
ClaRaClaRa.Components.Sensors.Check.TestGasSensors (sim)Compile → Verify
ClaRaClaRa.Components.TurboMachines.Pumps.Check.TestPumpModels (sim)Compile → Verify
ClaRaClaRa.Components.TurboMachines.Pumps.Check.TestPump_L2_OffDesign (sim)BackEnd → Verify
ClaRaClaRa.Components.TurboMachines.Turbines.Check.testTurbineVLE_L1 (sim)Simulate performance 0:04:00 → 7.55
ClaRaClaRa.Components.VolumesValvesFittings.Fittings.Check.TestFuelSplit (sim)Compile → Verify
ClaRaClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex (sim)Templates → Verify
ClaRaClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_Junction (sim)Compile → Verify
ClaRaClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_MixAndSplit (sim)BackEnd → Compile
ClaRaClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_SplitFuelSlagFlueGas_L2 (sim)Templates → Verify
ClaRaClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_SprayInjector (sim)BackEnd → Compile
ClaRaClaRa.Components.VolumesValvesFittings.Pipes.Check.FlowReversal.Test_Pipe_L4_Advanced (sim)FrontEnd → Compile
ClaRaClaRa.Components.VolumesValvesFittings.Pipes.Check.MassDefect.Test_Pipe_L2_Simple (sim)SimCode → Verify
ClaRaClaRa.Components.VolumesValvesFittings.Pipes.Check.OnePhaseFlow.Test_Pipe_L1_TML_LongDistanceAndGravitationalPressureDrop (sim)FrontEnd → Templates
ClaRaClaRa.Components.VolumesValvesFittings.Pipes.Check.OnePhaseFlow.Test_Pipe_L4_Simple (sim)FrontEnd → Compile
ClaRaClaRa.Components.VolumesValvesFittings.Pipes.Check.OnePhaseFlow.Test_Tube_FlueGas_L2_Simple (sim)FrontEnd → Compile
ClaRaClaRa.Components.VolumesValvesFittings.Pipes.Check.ThickWallScenarios.Test_Pipe_L1_TML_insulatedWall (sim)FrontEnd → Templates
ClaRaClaRa.Components.VolumesValvesFittings.Pipes.Check.TwoPhaseFlow.Test_Pipe_L4_Simple (sim)FrontEnd → Simulate
ClaRaClaRa.Components.VolumesValvesFittings.Valves.Check.TestThreeWayGasValve (sim)Compile → Verify
ClaRaClaRa.Examples.SteamCycle_01 (sim)FrontEnd → Compile
ClaRaClaRa.Examples.SteamCycle_02 (sim)FrontEnd → Compile
ClaRaClaRa.Examples.SteamPowerPlant_01 (sim)FrontEnd → Compile
ClaRaClaRa.Examples.SteamPowerPlant_CombinedComponents_01 (sim)FrontEnd → Compile
ClaRaClaRa.Examples.VapourCycle_01 (sim)Failed → Compile
ClaRaClaRa.StaticCycles.Check.TestStacy2 (sim)Compile → Verify
ClaRaClaRa.Visualisation.Check.IllustrateVisualisation (sim)FrontEnd → Compile
ClaRaClaRa.Visualisation.Check.TestHEXdisplay (sim)FrontEnd → Simulate
ClaRa_devClaRa.Basics.ControlVolumes.GasVolumes.Check.TestFlueGasCell_N_cv (sim)FrontEnd → Compile
ClaRa_devClaRa.Basics.ControlVolumes.GasVolumes.Check.TestFlueGasCell_chem (sim)Compile → Verify
ClaRa_devClaRa.Basics.ControlVolumes.SolidVolumes.Check.Test_NTU_CounterParallelCross_Comparison (sim)FrontEnd → Simulate
ClaRa_devClaRa.Components.Adapters.Check.RowOfScalar2VectorHeatPorts (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.Electrical.Check.TestAsynchronousMotor (sim)Verify → Compile
ClaRa_devClaRa.Components.FlueGasCleaning.Denitrification.Check.Test_Denitrification (sim)FrontEnd → Verify
ClaRa_devClaRa.Components.FlueGasCleaning.E_Filter.Check.test_E_Filter (sim)Compile → Simulate
ClaRa_devClaRa.Components.Furnace.Check.Test_CombustionChamber_vs_Burner_control (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_FlatTubeFinnedHEXvle2gas_L4 (sim)Failed → Compile
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2gas_L3_1ph_BU (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_1ph_BU_ntu (sim)BackEnd → Simulate
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_1ph_BU_simple (sim)BackEnd → Verify
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_1ph_kA (sim)BackEnd → Compile
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_BU_ntu (sim)FrontEnd → Templates
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_BU_simple (sim)SimCode → Verify
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CH_ntu (sim)FrontEnd → Templates
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CH_simple (sim)BackEnd → Verify
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CH_simple_shutoff (sim)SimCode → Simulate
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CU_ntu (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_HEXvle2vle_L3_2ph_CU_simple (sim)BackEnd → Simulate
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_PlateHEXvle2vle_L3_2ph_ntu (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_PlateHEXvle2vle_L4 (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.HeatExchangers.Check.Test_RegenerativeAirPreheater (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.MechanicalSeparation.Check.TestBalanceTank (sim)Templates → Verify
ClaRa_devClaRa.Components.MechanicalSeparation.Check.TestBottle (sim)BackEnd → Verify
ClaRa_devClaRa.Components.MechanicalSeparation.Check.TestDrum (sim)BackEnd → Compile
ClaRa_devClaRa.Components.MechanicalSeparation.Check.TestFeedWaterTank_1Separator (sim)BackEnd → Verify
ClaRa_devClaRa.Components.MechanicalSeparation.Check.TestSeparator_L3 (sim)SimCode → Verify
ClaRa_devClaRa.Components.Mills.PhysicalMills.Volumes.Check.TestDryer (sim)Simulate performance 55.95 → 0.29
ClaRa_devClaRa.Components.Sensors.Check.TestGasSensors (sim)Compile → Verify
ClaRa_devClaRa.Components.TurboMachines.Pumps.Check.TestPumpModels (sim)Compile → Verify
ClaRa_devClaRa.Components.TurboMachines.Pumps.Check.TestPump_L2_OffDesign (sim)BackEnd → Verify
ClaRa_devClaRa.Components.TurboMachines.Turbines.Check.testTurbineVLE_L1 (sim)Simulate performance 0:04:00 → 7.83
ClaRa_devClaRa.Components.VolumesValvesFittings.Fittings.Check.TestFuelSplit (sim)Compile → Verify
ClaRa_devClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex (sim)Templates → Verify
ClaRa_devClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_Junction (sim)Compile → Verify
ClaRa_devClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_MixAndSplit (sim)BackEnd → Compile
ClaRa_devClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_SplitFuelSlagFlueGas_L2 (sim)Templates → Verify
ClaRa_devClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_SprayInjector (sim)BackEnd → Compile
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.FlowReversal.Test_Pipe_L4_Advanced (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.MassDefect.Test_Pipe_L2_Simple (sim)SimCode → Verify
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.OnePhaseFlow.Test_Pipe_L1_TML_LongDistanceAndGravitationalPressureDrop (sim)FrontEnd → Templates
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.OnePhaseFlow.Test_Pipe_L4_Simple (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.OnePhaseFlow.Test_Tube_FlueGas_L2_Simple (sim)FrontEnd → Compile
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.ThickWallScenarios.Test_Pipe_L1_TML_insulatedWall (sim)FrontEnd → Templates
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.TwoPhaseFlow.Test_Pipe_L4_Simple (sim)FrontEnd → Simulate
ClaRa_devClaRa.Components.VolumesValvesFittings.Pipes.Check.WatterHammer.Benchmark_KitagawaExperiment (sim)FrontEnd → Simulate
ClaRa_devClaRa.Components.VolumesValvesFittings.Valves.Check.TestThreeWayGasValve (sim)Compile → Verify
ClaRa_devClaRa.Examples.SteamCycle_01 (sim)FrontEnd → Compile
ClaRa_devClaRa.Examples.SteamCycle_02 (sim)FrontEnd → Compile
ClaRa_devClaRa.Examples.SteamPowerPlant_01 (sim)FrontEnd → Compile
ClaRa_devClaRa.Examples.SteamPowerPlant_CombinedComponents_01 (sim)FrontEnd → Compile
ClaRa_devClaRa.Examples.VapourCycle_01 (sim)Failed → Compile
ClaRa_devClaRa.StaticCycles.Check.TestStacy2 (sim)Compile → Verify
ClaRa_devClaRa.Visualisation.Check.IllustrateVisualisation (sim)FrontEnd → Compile
ClaRa_devClaRa.Visualisation.Check.TestHEXdisplay (sim)FrontEnd → Simulate
DynawoDynawo.Examples.Wind.IEC.Neplan.WPP4ACurrentSource2020 (sim)BackEnd → FrontEnd
DynawoDynawo.Examples.Wind.IEC.Neplan.WPP4ACurrentSource2020FOCB (sim)BackEnd → FrontEnd
DynawoDynawo.Examples.Wind.IEC.Neplan.WPP4ACurrentSource2020UDip (sim)BackEnd → FrontEnd
Dynawo_devDynawo.Examples.BESS.WECC.BESSCurrentSource (sim)FrontEnd → Verify
Dynawo_devDynawo.Examples.Photovoltaics.WECC.PVVoltageSource2 (sim)Verify → Simulate
ExternalMediaExternalMedia.Test.CoolProp.CO2.TestBasePropertiesImplicit (sim)Simulate performance 19.27 → 10.62
ExternalMediaExternalMedia.Test.CoolProp.CO2_Tabular.TestBasePropertiesImplicit (sim)Compile → Simulate
GreenhousesGreenhouses.Examples.GlobalSystem_1 (sim)FrontEnd → Compile
HanserModelicaHanserModelica.Electrical.Rectifier (sim)Simulate → Compile
HanserModelicaHanserModelica.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
IBPSA_latestIBPSA.Controls.OBC.CDL.Discrete.Validation.TriggeredMovingMean (sim)Compile → Simulate
IBPSA_latestIBPSA.Controls.OBC.Utilities.Validation.OptimalStartCoolingNegativeStartTime (sim)FrontEnd → Simulate
IBPSA_latestIBPSA.Controls.OBC.Utilities.Validation.OptimalStartCoolingPositiveStartTime (sim)FrontEnd → Simulate
IBPSA_latestIBPSA.Controls.OBC.Utilities.Validation.OptimalStartHeating (sim)FrontEnd → Simulate
IBPSA_latestIBPSA.Controls.OBC.Utilities.Validation.OptimalStartHeatingCooling (sim)FrontEnd → Simulate
IBPSA_latestIBPSA.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Simulate → FrontEnd
IBPSA_latestIBPSA.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Simulate
IBPSA_latestIBPSA.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
IDEASIDEAS.Controls.OBC.CDL.Discrete.Validation.TriggeredMovingMean (sim)Compile → Simulate
IDEASIDEAS.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Simulate → FrontEnd
IDEASIDEAS.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Simulate
IDEASIDEAS.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
IDEASIDEAS.ThermalZones.ReducedOrder.Examples.SimpleRoomFourElementsTraceSubstance (sim)BackEnd → Simulate
IDEASIDEAS.ThermalZones.ReducedOrder.Examples.SimpleRoomTwoElementsNonConstantTGround (sim)BackEnd → Simulate
IDEAS_devIDEAS.Controls.OBC.CDL.Discrete.Validation.TriggeredMovingMean (sim)Compile → Simulate
IDEAS_devIDEAS.Electrical.AC.ThreePhasesUnbalanced.Validation.IEEETests.Test4NodesFeeder.UnbalancedStepDown.DY (sim)Simulate → FrontEnd
IDEAS_devIDEAS.Fluid.HeatPumps.Validation.ReciprocatingWaterToWater_Static (sim)Compile → Simulate
IDEAS_devIDEAS.Fluid.MixingVolumes.Validation.MixingVolume (sim)Compile → Simulate
IDEAS_devIDEAS.ThermalZones.ReducedOrder.Examples.SimpleRoomFourElementsTraceSubstance (sim)BackEnd → Simulate
IDEAS_devIDEAS.ThermalZones.ReducedOrder.Examples.SimpleRoomTwoElementsNonConstantTGround (sim)BackEnd → Simulate
ModelicaTest_3.2.3ModelicaTest.Blocks.FilterTests.AllOptions (sim)FrontEnd → Compile
ModelicaTest_3.2.3ModelicaTest.Blocks.FilterTests.Basic (sim)FrontEnd → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.Dissipation.Verifications.PressureLoss.StraightPipe.dp_overall_DPMFLOW (sim)Simulate performance 19.22 → 0.08
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpCharacteristics (sim)Compile → Simulate
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDCMotor (sim)Compile → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefault (sim)Simulate → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefaultLV (sim)Simulate → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpVariableSpeed (sim)Compile → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Sources.TestSources (sim)BackEnd → Templates
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Valves.TestDelayedValve (sim)Compile → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Vessels.TestInitialization (sim)Compile → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.TestComponents.Vessels.TestVolume (sim)Compile → Verify
ModelicaTest_3.2.3ModelicaTest.Fluid.TestExamplesVariants.InverseParameterization_laminar (sim)Simulate → Compile
ModelicaTest_3.2.3ModelicaTest.Media.TestsWithFluid.MediaTestModels.IdealGases.SimpleNaturalGas (sim)Compile → Templates
ModelicaTest_3.2.3ModelicaTest.Media.TestsWithFluid.MediaTestModels.IdealGases.SimpleNaturalGasFixedComposition (sim)Compile → SimCode
ModelicaTest_3.2.3ModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearColdWater (sim)Compile → Verify
ModelicaTest_3.2.3ModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearWater_pT (sim)Compile → Verify
ModelicaTest_3.2.3ModelicaTest.Media.TestsWithFluid.MediaTestModels.Water.ConstantPropertyLiquidWater (sim)FrontEnd → BackEnd
ModelicaTest_4.0.0ModelicaTest.Blocks.FilterTests.AllOptions (sim)FrontEnd → Compile
ModelicaTest_4.0.0ModelicaTest.Blocks.FilterTests.Basic (sim)FrontEnd → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.Dissipation.Verifications.PressureLoss.StraightPipe.dp_overall_DPMFLOW (sim)Simulate performance 20.55 → 0.08
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Fittings.TestJunctionIdeal (sim)Simulate performance 0:01:04 → 0.22
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Fittings.TestJunctionVolume (sim)Compile → Simulate
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpCharacteristics (sim)Compile → Simulate
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDCMotor (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefault (sim)Simulate → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefaultLV (sim)Simulate → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpVariableSpeed (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Pipes.IdealMixing1 (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Sensors.TestTemperature1 (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Sources.TestSources (sim)BackEnd → Templates
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Valves.TestDelayedValve (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Vessels.TestInitialization (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestComponents.Vessels.TestVolume (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Fluid.TestExamplesVariants.InverseParameterization_laminar (sim)Simulate → Compile
ModelicaTest_4.0.0ModelicaTest.Fluid.TestExamplesVariants.InverseParameterization_turbulent (sim)Simulate → Compile
ModelicaTest_4.0.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.Incompressible.Essotherm650 (sim)BackEnd → Verify
ModelicaTest_4.0.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.Incompressible.Glycol47 (sim)BackEnd → Verify
ModelicaTest_4.0.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearColdWater (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearWater_pT (sim)Compile → Verify
ModelicaTest_4.0.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.Water.ConstantPropertyLiquidWater (sim)FrontEnd → BackEnd
ModelicaTest_4.1.0ModelicaTest.Blocks.FilterTests.AllOptions (sim)FrontEnd → Compile
ModelicaTest_4.1.0ModelicaTest.Blocks.FilterTests.Basic (sim)FrontEnd → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.Dissipation.Verifications.PressureLoss.StraightPipe.dp_overall_DPMFLOW (sim)Simulate performance 20.17 → 0.09
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Fittings.TestJunctionIdeal (sim)Simulate performance 0:01:03 → 0.18
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Fittings.TestJunctionVolume (sim)Compile → Simulate
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpCharacteristics (sim)Compile → Simulate
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDCMotor (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefault (sim)Simulate → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefaultLV (sim)Simulate → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpVariableSpeed (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Pipes.IdealMixing1 (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Sensors.TestTemperature1 (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Sources.TestSources (sim)BackEnd → Templates
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Valves.TestDelayedValve (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Vessels.TestInitialization (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Vessels.TestSimpleTank (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestComponents.Vessels.TestVolume (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Fluid.TestExamplesVariants.InverseParameterization_laminar (sim)Simulate → Compile
ModelicaTest_4.1.0ModelicaTest.Fluid.TestExamplesVariants.InverseParameterization_turbulent (sim)Simulate → Compile
ModelicaTest_4.1.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.Incompressible.Essotherm650 (sim)BackEnd → Verify
ModelicaTest_4.1.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.Incompressible.Glycol47 (sim)BackEnd → Verify
ModelicaTest_4.1.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearColdWater (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearWater_pT (sim)Compile → Verify
ModelicaTest_4.1.0ModelicaTest.Media.TestsWithFluid.MediaTestModels.Water.ConstantPropertyLiquidWater (sim)FrontEnd → BackEnd
ModelicaTest_trunkModelicaTest.Blocks.FilterTests.AllOptions (sim)FrontEnd → Compile
ModelicaTest_trunkModelicaTest.Blocks.FilterTests.Basic (sim)FrontEnd → Verify
ModelicaTest_trunkModelicaTest.Electrical.Machines.Examples.InductionMachines.IMC_YDarc (sim)FrontEnd → Templates
ModelicaTest_trunkModelicaTest.Electrical.Machines.Examples.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
ModelicaTest_trunkModelicaTest.Fluid.Dissipation.Verifications.PressureLoss.StraightPipe.dp_overall_DPMFLOW (sim)Simulate performance 20.32 → 0.08
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Fittings.TestJunctionIdeal (sim)Simulate performance 0:01:06 → 0.19
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Fittings.TestJunctionVolume (sim)Compile → Simulate
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpCharacteristics (sim)Compile → Simulate
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDCMotor (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefault (sim)Simulate → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpDefaultLV (sim)Simulate → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Machines.TestWaterPumpVariableSpeed (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Pipes.IdealMixing1 (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Sensors.TestTemperature1 (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Sources.TestSources (sim)BackEnd → Templates
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Valves.TestDelayedValve (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Vessels.TestInitialization (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Vessels.TestSimpleTank (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestComponents.Vessels.TestVolume (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Fluid.TestExamplesVariants.InverseParameterization_laminar (sim)Simulate → Compile
ModelicaTest_trunkModelicaTest.Fluid.TestExamplesVariants.InverseParameterization_turbulent (sim)Simulate → Compile
ModelicaTest_trunkModelicaTest.Magnetic.FundamentalWave.Examples.BasicMachines.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
ModelicaTest_trunkModelicaTest.Media.TestsWithFluid.MediaTestModels.Incompressible.Essotherm650 (sim)BackEnd → Verify
ModelicaTest_trunkModelicaTest.Media.TestsWithFluid.MediaTestModels.Incompressible.Glycol47 (sim)BackEnd → Verify
ModelicaTest_trunkModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearColdWater (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Media.TestsWithFluid.MediaTestModels.LinearFluid.LinearWater_pT (sim)Compile → Verify
ModelicaTest_trunkModelicaTest.Media.TestsWithFluid.MediaTestModels.Water.ConstantPropertyLiquidWater (sim)FrontEnd → BackEnd
Modelica_3.2.3Modelica.Electrical.Analog.Examples.ControlledSwitchWithArc (sim)FrontEnd → Verify
Modelica_3.2.3Modelica.Electrical.Analog.Examples.SwitchWithArc (sim)FrontEnd → Verify
Modelica_3.2.3Modelica.Electrical.Machines.Examples.AsynchronousInductionMachines.AIMC_Inverter (sim)FrontEnd → Verify
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMEE_DOL (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMEE_Generator (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMEE_Rectifier (sim)FrontEnd → Templates
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMPM_Inverter (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMPM_VoltageSource (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMR_DOL (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Electrical.Machines.Examples.SynchronousInductionMachines.SMR_Inverter (sim)FrontEnd → Verify
Modelica_3.2.3Modelica.Electrical.MultiPhase.Examples.Rectifier (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse.HalfControlledBridge2Pulse (sim)Verify → Simulate
Modelica_3.2.3Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse.ThyristorBridge2Pulse_R (sim)Verify → Simulate
Modelica_3.2.3Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse.ThyristorBridge2Pulse_RL (sim)Verify → Simulate
Modelica_3.2.3Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse.ThyristorBridge2Pulse_RLV (sim)Verify → Simulate
Modelica_3.2.3Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse.ThyristorCenterTap2Pulse_R (sim)Verify → Simulate
Modelica_3.2.3Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse.ThyristorCenterTap2Pulse_RL (sim)Verify → Simulate
Modelica_3.2.3Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse.ThyristorCenterTap2Pulse_RLV (sim)Verify → Simulate
Modelica_3.2.3Modelica.Electrical.Spice3.Examples.CascodeCircuit (sim)Verify → Compile
Modelica_3.2.3Modelica.Fluid.Examples.AST_BatchPlant.Test.OneTank (sim)FrontEnd → Simulate
Modelica_3.2.3Modelica.Fluid.Examples.Tanks.EmptyTanks (sim)Compile → Verify
Modelica_3.2.3Modelica.Fluid.Examples.Tanks.TanksWithOverflow (sim)Compile → Verify
Modelica_3.2.3Modelica.Fluid.Examples.Tanks.ThreeTanks (sim)Compile → Verify
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_DOL_MultiPhase (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMC_Inverter (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.AIMS_Start_MultiPhase (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMEE_DOL (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMEE_Generator (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMEE_Generator_MultiPhase (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMEE_Rectifier (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMPM_Inverter (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMPM_Inverter_MultiPhase (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMPM_VoltageSource (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMR_Inverter (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SMR_Inverter_MultiPhase (sim)FrontEnd → Compile
Modelica_3.2.3Modelica.Media.Examples.ReferenceAir.MoistAir1 (sim)Simulate performance 59.80 → 4.67
Modelica_3.2.3Modelica.Media.Examples.ReferenceAir.MoistAir2 (sim)Simulate performance 0:02:05 → 8.83
Modelica_4.0.0Modelica.Electrical.Analog.Examples.ControlledSwitchWithArc (sim)FrontEnd → Verify
Modelica_4.0.0Modelica.Electrical.Analog.Examples.SwitchWithArc (sim)FrontEnd → Verify
Modelica_4.0.0Modelica.Electrical.Machines.Examples.InductionMachines.IMC_YDarc (sim)FrontEnd → Templates
Modelica_4.0.0Modelica.Electrical.Machines.Examples.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_4.0.0Modelica.Electrical.Machines.Examples.Transformers.Rectifier12pulse (sim)Compile → Simulate
Modelica_4.0.0Modelica.Electrical.Machines.Examples.Transformers.Rectifier6pulse (sim)Simulate performance 0.03 → 0:04:00
Modelica_4.0.0Modelica.Electrical.Polyphase.Examples.Rectifier (sim)Simulate performance 0.03 → 0:04:00
Modelica_4.0.0Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierBridge2Pulse.ThyristorBridge2Pulse_RLV (sim)Verify → Simulate
Modelica_4.0.0Modelica.Electrical.Spice3.Examples.CascodeCircuit (sim)Verify → Compile
Modelica_4.0.0Modelica.Fluid.Examples.AST_BatchPlant.Test.OneTank (sim)FrontEnd → Simulate
Modelica_4.0.0Modelica.Fluid.Examples.Tanks.EmptyTanks (sim)Compile → Verify
Modelica_4.0.0Modelica.Fluid.Examples.Tanks.TanksWithOverflow (sim)Compile → Verify
Modelica_4.0.0Modelica.Fluid.Examples.Tanks.ThreeTanks (sim)Compile → Verify
Modelica_4.0.0Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_4.0.0Modelica.Media.Examples.ReferenceAir.MoistAir1 (sim)Simulate performance 0:01:00 → 4.63
Modelica_4.0.0Modelica.Media.Examples.ReferenceAir.MoistAir2 (sim)Simulate performance 0:02:03 → 8.60
Modelica_4.1.0Modelica.Electrical.Analog.Examples.ControlledSwitchWithArc (sim)FrontEnd → Verify
Modelica_4.1.0Modelica.Electrical.Analog.Examples.DemoPowerSupply (sim)FrontEnd → Verify
Modelica_4.1.0Modelica.Electrical.Analog.Examples.DemoPowerSupplyWithBuffer (sim)FrontEnd → Verify
Modelica_4.1.0Modelica.Electrical.Analog.Examples.Lines.LightningSegmentedTransmissionLine (sim)BackEnd → Compile
Modelica_4.1.0Modelica.Electrical.Analog.Examples.SwitchWithArc (sim)FrontEnd → Verify
Modelica_4.1.0Modelica.Electrical.Machines.Examples.InductionMachines.IMC_YDarc (sim)FrontEnd → Templates
Modelica_4.1.0Modelica.Electrical.Machines.Examples.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_4.1.0Modelica.Electrical.Machines.Examples.Transformers.Rectifier12pulse (sim)Compile → Simulate
Modelica_4.1.0Modelica.Electrical.Machines.Examples.Transformers.Rectifier6pulse (sim)Simulate performance 0.03 → 0:04:00
Modelica_4.1.0Modelica.Electrical.Polyphase.Examples.Rectifier (sim)Simulate performance 0.04 → 0:04:00
Modelica_4.1.0Modelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse.ThyristorCenterTap2Pulse_RLV (sim)Verify → Simulate
Modelica_4.1.0Modelica.Electrical.QuasiStatic.SinglePhase.Examples.MultipleResonance (sim)Compile → Verify
Modelica_4.1.0Modelica.Electrical.Spice3.Examples.CascodeCircuit (sim)Verify → Compile
Modelica_4.1.0Modelica.Fluid.Examples.AST_BatchPlant.Test.OneTank (sim)FrontEnd → Simulate
Modelica_4.1.0Modelica.Fluid.Examples.Tanks.EmptyTanks (sim)Compile → Verify
Modelica_4.1.0Modelica.Fluid.Examples.Tanks.TanksWithOverflow (sim)Compile → Verify
Modelica_4.1.0Modelica.Fluid.Examples.Tanks.ThreeTanks (sim)Compile → Verify
Modelica_4.1.0Modelica.Magnetic.FundamentalWave.Examples.BasicMachines.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_4.1.0Modelica.Mechanics.Rotational.Examples.HeatLosses (sim)Simulate → Compile
Modelica_4.1.0Modelica.Media.Examples.ReferenceAir.MoistAir1 (sim)Simulate performance 0:01:00 → 4.65
Modelica_4.1.0Modelica.Media.Examples.ReferenceAir.MoistAir2 (sim)Simulate performance 0:02:02 → 8.81
Modelica_trunkModelica.Electrical.Analog.Examples.ControlledSwitchWithArc (sim)FrontEnd → Verify
Modelica_trunkModelica.Electrical.Analog.Examples.DemoPowerSupply (sim)FrontEnd → Verify
Modelica_trunkModelica.Electrical.Analog.Examples.DemoPowerSupplyWithBuffer (sim)FrontEnd → Verify
Modelica_trunkModelica.Electrical.Analog.Examples.Lines.LightningSegmentedTransmissionLine (sim)BackEnd → Compile
Modelica_trunkModelica.Electrical.Analog.Examples.SwitchWithArc (sim)FrontEnd → Verify
Modelica_trunkModelica.Electrical.Machines.Examples.InductionMachines.IMC_YDarc (sim)FrontEnd → Templates
Modelica_trunkModelica.Electrical.Machines.Examples.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_trunkModelica.Electrical.Machines.Examples.Transformers.Rectifier12pulse (sim)Compile → Simulate
Modelica_trunkModelica.Electrical.Machines.Examples.Transformers.Rectifier6pulse (sim)Simulate performance 0.03 → 0:04:00
Modelica_trunkModelica.Electrical.Polyphase.Examples.Rectifier (sim)Simulate performance 0.05 → 0:04:00
Modelica_trunkModelica.Electrical.PowerConverters.Examples.ACDC.RectifierCenterTap2Pulse.ThyristorCenterTap2Pulse_RLV (sim)Verify → Simulate
Modelica_trunkModelica.Electrical.QuasiStatic.SinglePhase.Examples.MultipleResonance (sim)Compile → Verify
Modelica_trunkModelica.Electrical.Spice3.Examples.CascodeCircuit (sim)Verify → Compile
Modelica_trunkModelica.Fluid.Examples.AST_BatchPlant.Test.OneTank (sim)FrontEnd → Simulate
Modelica_trunkModelica.Fluid.Examples.Tanks.EmptyTanks (sim)Compile → Verify
Modelica_trunkModelica.Fluid.Examples.Tanks.TanksWithOverflow (sim)Compile → Verify
Modelica_trunkModelica.Fluid.Examples.Tanks.ThreeTanks (sim)Compile → Verify
Modelica_trunkModelica.Magnetic.FundamentalWave.Examples.BasicMachines.SynchronousMachines.SMEE_LoadDump (sim)FrontEnd → Templates
Modelica_trunkModelica.Mechanics.Rotational.Examples.HeatLosses (sim)Simulate → Compile
Modelica_trunkModelica.Media.Examples.ReferenceAir.MoistAir1 (sim)Simulate performance 0:01:00 → 4.69
Modelica_trunkModelica.Media.Examples.ReferenceAir.MoistAir2 (sim)Simulate performance 0:02:01 → 8.94
OpenHPLOpenHPL.Examples.WithOpenIPSL.SimpleGen (sim)Simulate performance 0:04:00 → 0.03
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainControllableMotor.VariableVoltageFrequencyMotorTypeI (sim)Compile → Simulate
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorVSDStartup.MultiDomainMotorCIMStartUpComparison (sim)Simulate performance 0.06 → 0:04:00
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorVSDStartup.MultiDomainMotorStartUpComparison (sim)Simulate performance 0.06 → 0:04:00
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorVSDStartup.MultiDomainMotorTypeIIIStartUpComparison (sim)Simulate performance 0.05 → 0:04:00
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorVSDStartup.MultiDomainMotorTypeIStartUpComparison (sim)Compile → Simulate
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorVSDStartup.MultiDomainMotorTypeVStartUpComparison (sim)Simulate performance 0.05 → 0:04:00
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorValidation.MultiDomainCIM (sim)Compile → Simulate
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorValidation.MultiDomainMotor (sim)Compile → Simulate
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorValidation.MultiDomainTypeIII (sim)Compile → Simulate
OpenIMDML_mainOpenIMDML.Examples.MultiDomainExamples.MultiDomainThreePhaseInductionMotors.MultiDomainThreePhaseMotorValidation.MultiDomainTypeV (sim)Compile → Simulate
OpenIMDML_mainOpenIMDML.Examples.NonMultiDomainExamples.NonMultiDomainThreePhaseInductionMotors.NonMultiDomainThreePhaseMotorValidation.NonMultiDomainCIM5 (sim)Simulate performance 0.08 → 0:04:00
OpenIMDML_mainOpenIMDML.Examples.NonMultiDomainExamples.NonMultiDomainThreePhaseInductionMotors.NonMultiDomainThreePhaseMotorValidation.NonMultiDomainCIM6 (sim)Simulate performance 0.04 → 0:04:00
OpenIPSLOpenIPSL.Examples.AKD.System.AKD (sim)Simulate performance 0.41 → 0:04:00
OpenIPSLOpenIPSL.Examples.DAEMode.N44_Base_Case_Systems.Nordic44_Base_Case_StateEvents (sim)Compile performance 37.35 → 21.80
OpenIPSLOpenIPSL.Examples.DAEMode.N44_Original_Systems.Nordic44_Original_Case_Bus_Fault (sim)Compile performance 35.50 → 0:01:00
OpenIPSLOpenIPSL.Examples.DAEMode.N44_Original_Systems.Nordic44_Original_Case_Line_Opening (sim)Compile performance 35.14 → 0:01:00
OpenIPSLOpenIPSL.Examples.IEEE9.IEEE_9_Buses (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.IEEE9.IEEE_9_Buses_Statcom (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.KundurSMIB.SMIB (sim)Simulate performance 0.04 → 0:04:00
OpenIPSLOpenIPSL.Examples.KundurSMIB.SMIB_AVR (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.KundurSMIB.SMIB_AVR_PSS (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.N44.Base_Case.Nordic44_Base_Case (sim)Compile performance 36.51 → 0:01:06
OpenIPSLOpenIPSL.Examples.NamsskoganGrid.Grid_Model (sim)Simulate performance 0.08 → 0:04:00
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.FifthOrder_AVRIII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRI (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRIII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.SixthOrder_AVRII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.SixthOrder_AVRIII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.ThirdOrder_AVRII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.ThreeArea.ThirdOrder_AVRIII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.FifthOrder_AVRI (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.FifthOrder_AVRII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.FourthOrder_AVRI (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.FourthOrder_AVRII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.SixthOrder_AVRI (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.SixthOrder_AVRII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.ThirdOrder_AVRI (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.PSATSystems.TwoArea.ThirdOrder_AVRII (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.Tutorial.Example_1.Example_1 (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.Tutorial.Example_3.Example_3 (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.TwoAreas.Two_Areas_PSAT (sim)Compile → Simulate
OpenIPSLOpenIPSL.Examples.TwoAreas.Two_Areas_PSSE_AVR (sim)Compile → Simulate
OpenIPSLOpenIPSL.Tests.Controls.PSSE.PSS.PSS2A (sim)FrontEnd → Simulate
OpenIPSLOpenIPSL.Tests.Machines.PSAT.InductiveMotorV_SIMBOpenline_Test (sim)Compile → Simulate
OpenIPSLOpenIPSL.Tests.ThreePhase.IEEE13 (sim)Simulate performance 34.29 → 0:01:39
OpenIPSL_2.0.0OpenIPSL.Examples.AKD.System.AKD (sim)Simulate performance 0.37 → 0:04:00
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.N44_Base_Case_Systems.Nordic44_Base_Case_StateEvents (sim)Simulate performance 26.91 → 0:04:02
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.N44_Base_Case_Systems.Nordic44_Base_Case_StateEvents2 (sim)Simulate performance 29.91 → 0:04:02
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.N44_Base_Case_Systems.Nordic44_Base_Case_StateEvents3 (sim)Compile performance 0:05:45 → 0:03:17 Simulate performance 39.73 → 0:03:11
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.N44_Original_Systems.Nordic44_Original_Case_Bus_Fault (sim)Simulate performance 15.37 → 0:03:31
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.N44_Original_Systems.Nordic44_Original_Case_Line_Opening (sim)Simulate performance 11.99 → 0:03:29
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.SMIB_Examples.Example_1.Network1 (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.SMIB_Examples.Example_1.Network2 (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.SMIB_Examples.Example_1.Network3 (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.SMIB_Examples.Example_1Mod.Network (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.DAEMode.SMIB_Examples.Example_2.Network (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.IEEE14.IEEE_14_Buses (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.IEEE9.IEEE_9_Buses (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.IEEE9.IEEE_9_Buses_Statcom (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.KundurSMIB.SMIB (sim)Simulate performance 0.06 → 0:04:00
OpenIPSL_2.0.0OpenIPSL.Examples.KundurSMIB.SMIB_AVR (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.KundurSMIB.SMIB_AVR_PSS (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.N44.Base_Case.Nordic44_Base_Case (sim)Simulate performance 27.99 → 0:04:02
OpenIPSL_2.0.0OpenIPSL.Examples.N44.Original.Nordic44_Original_Case (sim)Simulate performance 16.36 → 0:03:26
OpenIPSL_2.0.0OpenIPSL.Examples.NamsskoganGrid.Grid_Model (sim)Simulate performance 0.11 → 0:04:00
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.FifthOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.SixthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.SixthOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.ThirdOrder_AVRII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.ThreeArea.ThirdOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.FifthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.FifthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.FourthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.FourthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.SixthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.SixthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.ThirdOrder_AVRI (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.PSATSystems.TwoArea.ThirdOrder_AVRII (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.Tutorial.Example_1.Example_1 (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.Tutorial.Example_3.Example_3 (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.TwoAreas.Two_Areas_PSAT (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Examples.TwoAreas.Two_Areas_PSSE_AVR (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Tests.Controls.PSAT.OEL.AVRTypeII_OEL_Test (sim)Simulate → Compile
OpenIPSL_2.0.0OpenIPSL.Tests.Controls.PSSE.PSS.PSS2A (sim)FrontEnd → Simulate
OpenIPSL_2.0.0OpenIPSL.Tests.Machines.PSAT.InductiveMotorV_SIMBOpenline_Test (sim)Compile → Simulate
OpenIPSL_2.0.0OpenIPSL.Tests.ThreePhase.IEEE13 (sim)Simulate performance 30.81 → 0:01:41
OpenIPSL_devOpenIPSL.Examples.AKD.System.AKD (sim)Simulate performance 0.33 → 0:04:00
OpenIPSL_devOpenIPSL.Examples.DAEMode.N44_Original_Systems.Nordic44_Original_Case_Line_Opening (sim)Compile performance 35.30 → 0:01:01
OpenIPSL_devOpenIPSL.Examples.IEEE9.IEEE_9_Buses (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.IEEE9.IEEE_9_Buses_Statcom (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.KundurSMIB.SMIB (sim)Simulate performance 0.04 → 0:04:00
OpenIPSL_devOpenIPSL.Examples.KundurSMIB.SMIB_AVR (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.KundurSMIB.SMIB_AVR_PSS (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.N44.Base_Case.Nordic44_Base_Case (sim)Compile performance 36.47 → 0:01:07
OpenIPSL_devOpenIPSL.Examples.N44.Original.Nordic44_Original_Case (sim)Compile performance 35.33 → 0:01:01
OpenIPSL_devOpenIPSL.Examples.NamsskoganGrid.Grid_Model (sim)Simulate performance 0.08 → 0:04:00
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.FifthOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.FourthOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.SixthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.SixthOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.ThirdOrder_AVRII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.ThreeArea.ThirdOrder_AVRIII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.FifthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.FifthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.FourthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.FourthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.SixthOrder_AVRI (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.SixthOrder_AVRII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.ThirdOrder_AVRI (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.PSATSystems.TwoArea.ThirdOrder_AVRII (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.Tutorial.Example_1.Example_1 (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.Tutorial.Example_3.Example_3 (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.TwoAreas.Two_Areas_PSAT (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Examples.TwoAreas.Two_Areas_PSSE_AVR (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Tests.Controls.PSAT.OEL.AVRTypeII_OEL_Test (sim)Simulate → Compile
OpenIPSL_devOpenIPSL.Tests.Controls.PSSE.PSS.PSS2A (sim)FrontEnd → Simulate
OpenIPSL_devOpenIPSL.Tests.Machines.PSAT.InductiveMotorV_SIMBOpenline_Test (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Tests.Machines.PSSE.GENTPJ (sim)Compile → Simulate
OpenIPSL_devOpenIPSL.Tests.ThreePhase.IEEE13 (sim)Simulate performance 32.18 → 0:01:41
PhotoVoltaicsPhotoVoltaics.Examples.SimpleCell (sim)Compile → Simulate
PhotoVoltaicsPhotoVoltaics.Examples.SimpleCellIrradianceCharacteristic (sim)Compile → Simulate
PhotoVoltaicsPhotoVoltaics.Examples.SimpleCellTemperatureCharacteristic (sim)Compile → Simulate
PhotoVoltaicsPhotoVoltaics.Examples.SimpleCellVoltageSource (sim)Compile → Simulate
PhotoVoltaicsPhotoVoltaics.Examples.SimpleModule (sim)Compile → Simulate
PhotoVoltaicsPhotoVoltaics.Examples.SimpleModuleShadow (sim)Compile → Simulate
PhotoVoltaicsPhotoVoltaics.Examples.SimpleModuleSymmetric (sim)Compile → Simulate
PhotoVoltaicsPhotoVoltaics.Examples.SimplePlantSymmetric (sim)Compile → Simulate
PlanarMechanicsPlanarMechanics.Examples.KinematicLoop (sim)BackEnd → Templates
PlanarMechanicsPlanarMechanics.Examples.KinematicLoop_DynamicStateSelection (sim)BackEnd → Templates
PlanarMechanicsPlanarMechanics.Examples.SpringDemo (sim)Templates → Compile
PowerGridsPowerGrids.Controls.Test.TestRampTrackingFilter (sim)FrontEnd → Verify
PowerGridsPowerGrids.Electrical.Test.SynchronousMachine4Windings (sim)Compile → Verify
PowerGridsPowerGrids.Electrical.Test.SynchronousMachine4WindingsNoLoad (sim)Compile → Verify
PowerGridsPowerGrids.Electrical.Test.SynchronousMachine4WindingsNoLoadAccurate (sim)Verify → Compile
PowerGridsPowerGrids.Electrical.Test.SynchronousMachine4WindingsNoLoadExact (sim)Verify → Compile
PowerGrids_devPowerGrids.Controls.Test.TestRampTrackingFilter (sim)FrontEnd → Verify
PowerGrids_devPowerGrids.Electrical.PowerFlow.Test.SmallSystem (sim)Compile → Simulate
PowerGrids_symb_jacPowerGrids.Controls.Test.TestRampTrackingFilter (sim)FrontEnd → Verify
PowerSystemsPowerSystems.Examples.AC1ph_DC.Elementary.Rectifier (sim)FrontEnd → Simulate
PowerSystemsPowerSystems.Examples.AC1ph_DC.Inverters.InverterAvToGrid (sim)FrontEnd → Simulate
PowerSystemsPowerSystems.Examples.AC1ph_DC.Inverters.Rectifier (sim)FrontEnd → Simulate
PowerSystemsPowerSystems.Examples.AC3ph.Generation.Vsource (sim)Simulate → Compile
PowerSystemsPowerSystems.Examples.AC3ph.Generation.WindGeneratorLine (sim)Templates → Simulate
PowerSystemsPowerSystems.Examples.AC3ph.Inverters.InverterAvToGrid (sim)FrontEnd → Simulate
PowerSystemsPowerSystems.Examples.AC3ph.Inverters.Rectifier (sim)Compile → Simulate
PowerSystemsPowerSystems.Examples.AC3ph.Transmission.DoubleRXlineTG (sim)FrontEnd → Compile
PowerSystems_latestPowerSystems.Examples.AC1ph_DC.Elementary.Rectifier (sim)FrontEnd → Simulate
PowerSystems_latestPowerSystems.Examples.AC1ph_DC.Inverters.InverterAvToGrid (sim)FrontEnd → Simulate
PowerSystems_latestPowerSystems.Examples.AC1ph_DC.Inverters.Rectifier (sim)FrontEnd → Simulate
PowerSystems_latestPowerSystems.Examples.AC3ph.Generation.Vsource (sim)Simulate → Compile
PowerSystems_latestPowerSystems.Examples.AC3ph.Generation.WindGeneratorLine (sim)Templates → Verify
PowerSystems_latestPowerSystems.Examples.AC3ph.Inverters.InverterAvToGrid (sim)FrontEnd → Simulate
PowerSystems_latestPowerSystems.Examples.AC3ph.Inverters.Rectifier (sim)Compile → Simulate
PowerSystems_latestPowerSystems.Examples.AC3ph.Transmission.DoubleRXlineTG (sim)FrontEnd → Compile
PowerSystems_latestPowerSystems.Examples.Introductory.SimulationSteadyInitial (sim)Simulate → Verify
SOFCPoliMiSOFCPoliMi.Tests.BenchmarkCammarataIndex1 (sim)BackEnd → FrontEnd
SOFCPoliMiSOFCPoliMi.Tests.BenchmarkCammarataIndex1reduced (sim)BackEnd → FrontEnd
ScalableTestGrids_nooptScalableTestGrids.Models.Type2.Type2_tapNoEv_N_6_M_4 (sim)Failed → FrontEnd
ScalableTestSuiteScalableTestSuite.Electrical.DistributionSystemAC.ScaledExperiments.DistributionSystemLinearIndividual_N_56_M_56 (sim)Failed → FrontEnd
ScalableTestSuite_nooptScalableTestSuite.Electrical.DistributionSystemDC.ScaledExperiments.DistributionSystemModelica_N_80_M_80 (sim)Templates performance 0:01:22 → 0:02:22
TAeZoSysPro_testsuiteTAeZoSysPro_testsuite.FluidDynamics.Components.Machines.test_ControlledVolumeFlowPump (sim)FrontEnd → Compile
TILMedia_AddOn_TestsTILMedia_AddOn_Tests.Liquid.LiquidFunctions (sim)FrontEnd → Simulate
ThermoPowerThermoPower.Test.GasComponents.TestGT_ISO (sim)Compile → Simulate
ThermoPower_4.0.0-devThermoPower.Examples.BraytonCycle.ClosedLoopSimulator (sim)Templates → Simulate
ThermoPower_4.0.0-devThermoPower.Examples.BraytonCycle.OpenLoopSimulator (sim)Templates → Compile
ThermoPower_4.0.0-devThermoPower.Test.GasComponents.TestGT_ISO (sim)Compile → Simulate
ThermoSysProThermoSysPro.Examples.SimpleExamples.TestSensors (sim)Compile → Simulate
ThermoSysProThermoSysPro.Fluid.Examples.Book.SimpleExamples.HeatExchanger.DynamicWaterHeater.NegativeFlow (sim)FrontEnd → BackEnd
ThermoSysProThermoSysPro.Fluid.Examples.Book.SimpleExamples.HeatExchanger.DynamicWaterHeater.ZeroFlow (sim)FrontEnd → BackEnd
ThermoSysProThermoSysPro.Fluid.Examples.Book.SimpleExamples.PressureLoss.TestCheckValve (sim)Templates → Compile
ThermoSysProThermoSysPro.Fluid.Examples.Book.SimpleExamples.PressureLoss.TestPipePressureLoss (sim)Templates → Simulate
ThermoSysProThermoSysPro.Fluid.Examples.SimpleExamples.TestDiffusion_DynamicOnePhaseFlowPipe (sim)Simulate performance 0:02:53 → 0.03
ThermoSysProThermoSysPro.Fluid.Examples.SimpleExamples.TestPressurizer (sim)FrontEnd → BackEnd
ThermoSysProThermoSysPro.Fluid.Examples.SimpleExamples.TestSensors (sim)Compile → Simulate
ThermofluidStreamThermofluidStream.Examples.Utilities.Tests.Piston (sim)FrontEnd → SimCode
ThermofluidStreamThermofluidStream.Topology.Tests.TestJunctionNM (sim)FrontEnd → Compile
ThermofluidStreamThermofluidStream.Undirected.FlowControl.Tests.TanValve (sim)FrontEnd → Compile
ThermofluidStreamThermofluidStream.Undirected.Topology.Tests.TestConnectors (sim)FrontEnd → Simulate
ThermofluidStream_devThermofluidStream.Examples.Utilities.Tests.Piston (sim)FrontEnd → SimCode
ThermofluidStream_devThermofluidStream.Topology.Tests.TestJunctionNM (sim)FrontEnd → Compile
ThermofluidStream_devThermofluidStream.Undirected.FlowControl.Tests.TanValve (sim)FrontEnd → Compile
ThermofluidStream_devThermofluidStream.Undirected.Topology.Tests.TestConnectors (sim)FrontEnd → Simulate
TransiEntTransiEnt.Basics.Blocks.Check.TestSplineLim (sim)Compile → Simulate