Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo): time 0.001388/0.001388, allocations: 92.7 kB / 19.43 MB, free: 336 kB / 13.93 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo): time 0.00162/0.00162, allocations: 161.3 kB / 22.75 MB, free: 1.656 MB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo): time 1.461/1.461, allocations: 177.1 MB / 203.1 MB, free: 5.605 MB / 186.7 MB " [Timeout remaining time 178] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream 1.4.0/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream 1.4.0/package.mo): time 1.022/1.022, allocations: 118.6 MB / 378.2 MB, free: 1.48 MB / 346.7 MB " [Timeout remaining time 179] Using package ThermofluidStream with version 1.4.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream 1.4.0/package.mo) Using package Modelica with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo) Using package Complex with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo) Using package ModelicaServices with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo) Running command: translateModel(ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8,tolerance=1e-06,outputFormat="mat",numberOfIntervals=2500,variableFilter="CPUtime|EventCounter|NonlinearSystems.simulation.1..Calls|NonlinearSystems.simulation.1..Iterations|NonlinearSystems.simulation.1..Jacobians|NonlinearSystems.simulation.1..Residues|PI1.T|der.PI1.x.|PI1.initType|PI1.k|PI1.u|PI1.x|PI1.x_start|PI1.y|PI1.y_start|PI2.T|der.PI2.x.|PI2.initType|PI2.k|PI2.u|PI2.x|PI2.x_start|PI2.y|PI2.y_start|Time|conductionElement.A|conductionElement.L|conductionElement.M|conductionElement.Q_flow|conductionElement.T|conductionElement.T_0|conductionElement.T_e|conductionElement.T_heatPort|conductionElement.U|conductionElement.U_internal|conductionElement.V|conductionElement.clip_p_out|conductionElement.deltaE_system|der.conductionElement.h.|conductionElement.dp|conductionElement.dr_corr|conductionElement.h|conductionElement.h_0|conductionElement.h_in|conductionElement.h_in_norm|conductionElement.h_out|conductionElement.heatPort.Q_flow|conductionElement.heatPort.T|conductionElement.init|conductionElement.initM_flow|der.conductionElement.inlet.m_flow.|conductionElement.inlet.m_flow|conductionElement.inlet.r|conductionElement.inlet.state.T|der.conductionElement.inlet.state.T.|conductionElement.inlet.state.p|conductionElement.k|conductionElement.k_internal|conductionElement.k_par|conductionElement.m_acceleration_0|conductionElement.m_flow|conductionElement.m_flowStateSelect|conductionElement.m_flow_0|conductionElement.m_flow_assert|conductionElement.outlet.m_flow|conductionElement.outlet.r|conductionElement.outlet.state.T|conductionElement.outlet.state.p|conductionElement.p_in|conductionElement.p_min|conductionElement.p_out|conductionElement.rho|conductionElement.rho_min|conductionElement.state.T|conductionElement.state.p|differenceSensor_Tp.T|differenceSensor_Tp.TA|differenceSensor_Tp.TB|differenceSensor_Tp.TC|differenceSensor_Tp.T_0|differenceSensor_Tp.T_out|differenceSensor_Tp.digits|differenceSensor_Tp.direct_T|differenceSensor_Tp.direct_p|differenceSensor_Tp.init|differenceSensor_Tp.inletA.m_flow|differenceSensor_Tp.inletA.r|differenceSensor_Tp.inletA.state.T|differenceSensor_Tp.inletA.state.p|differenceSensor_Tp.inletB.m_flow|differenceSensor_Tp.inletB.r|differenceSensor_Tp.inletB.state.T|differenceSensor_Tp.inletB.state.p|differenceSensor_Tp.p|differenceSensor_Tp.pA|differenceSensor_Tp.pB|differenceSensor_Tp.p_0|dropOfCommons.L|dropOfCommons.assertionLevel|dropOfCommons.g|dropOfCommons.instanceNameColor.1.|dropOfCommons.instanceNameColor.2.|dropOfCommons.instanceNameColor.3.|dropOfCommons.k_volume_damping|dropOfCommons.m_flow_reg|dropOfCommons.omega_reg|dropOfCommons.p_min|dropOfCommons.rho_min|evaporator.A|evaporator.G|evaporator.M_A|evaporator.M_B|evaporator.Q_flow_A|evaporator.Q_flow_B|evaporator.V_Hex|evaporator.crossFlow|evaporator.deltaE_system|evaporator.inletA.m_flow|evaporator.inletA.r|evaporator.inletA.state.T|evaporator.inletA.state.p|evaporator.inletB.m_flow|evaporator.inletB.r|evaporator.inletB.state.T|evaporator.inletB.state.d|evaporator.inletB.state.h|evaporator.inletB.state.p|evaporator.inletB.state.phase|evaporator.k_wall|evaporator.m_flow_0_A|evaporator.m_flow_0_B|evaporator.m_flow_assert|evaporator.nCells|evaporator.nCellsParallel|evaporator.outletA.m_flow|evaporator.outletA.r|evaporator.outletA.state.T|evaporator.outletA.state.p|evaporator.outletB.m_flow|evaporator.outletB.r|evaporator.outletB.state.T|evaporator.outletB.state.d|evaporator.outletB.state.h|evaporator.outletB.state.p|evaporator.outletB.state.phase|evaporator.summary.Q_flow_A|evaporator.summary.Q_flow_B|evaporator.summary.Tin_A|evaporator.summary.Tin_B|evaporator.summary.Tout_A|evaporator.summary.Tout_B|evaporator.summary.dT_A|evaporator.summary.dT_B|evaporator.summary.dh_A|evaporator.summary.dh_B|evaporator.summary.efficiency|evaporator.summary.hin_A|evaporator.summary.hin_B|evaporator.summary.hout_A|evaporator.summary.hout_B|evaporator.thermalConductor.10..G|evaporator.thermalConductor.10..Q_flow|evaporator.thermalConductor.10..dT|evaporator.thermalConductor.10..port_a.Q_flow|evaporator.thermalConductor.10..port_a.T|evaporator.thermalConductor.10..port_b.Q_flow|evaporator.thermalConductor.10..port_b.T|evaporator.thermalConductor.1..G|evaporator.thermalConductor.1..Q_flow|evaporator.thermalConductor.1..dT|evaporator.thermalConductor.1..port_a.Q_flow|evaporator.thermalConductor.1..port_a.T|evaporator.thermalConductor.1..port_b.Q_flow|evaporator.thermalConductor.1..port_b.T|evaporator.thermalConductor.2..G|evaporator.thermalConductor.2..Q_flow|evaporator.thermalConductor.2..dT|evaporator.thermalConductor.2..port_a.Q_flow|evaporator.thermalConductor.2..port_a.T|evaporator.thermalConductor.2..port_b.Q_flow|evaporator.thermalConductor.2..port_b.T|evaporator.thermalConductor.3..G|evaporator.thermalConductor.3..Q_flow|evaporator.thermalConductor.3..dT|evaporator.thermalConductor.3..port_a.Q_flow|evaporator.thermalConductor.3..port_a.T|evapo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reservoir.h_in|reservoir.h_out|reservoir.h_start|reservoir.height|reservoir.height_0|reservoir.height_min|reservoir.inlet.m_flow|reservoir.inlet.r|reservoir.inlet.state.T|reservoir.inlet.state.p|reservoir.k_volume_damping|reservoir.m_flow_assert|reservoir.m_flow_in|reservoir.m_flow_out|reservoir.medium.MM|reservoir.medium.R_s|reservoir.medium.T|reservoir.medium.T_degC|reservoir.medium.T_start|reservoir.medium.X.1.|reservoir.medium.cp|reservoir.medium.d|der.reservoir.medium.d.|der.reservoir.medium.h.|der.reservoir.medium.u.|reservoir.medium.h|reservoir.medium.p|reservoir.medium.p_bar|reservoir.medium.preferredMediumStates|reservoir.medium.standardOrderComponents|reservoir.medium.state.T|reservoir.medium.state.p|reservoir.medium.u|reservoir.outlet.m_flow|reservoir.outlet.r|reservoir.outlet.state.T|reservoir.outlet.state.p|reservoir.p_env|reservoir.p_env_par|reservoir.p_in|reservoir.p_start|reservoir.r|reservoir.r_damping|reservoir.r_in|reservoir.r_out|reservoir.state_in.T|reservoir.state_in.p|reservoir.state_out.T|reservoir.state_out.p|sink1.L|der.sink1.inlet.m_flow.|sink1.inlet.m_flow|sink1.inlet.r|sink1.inlet.state.T|sink1.inlet.state.d|sink1.inlet.state.h|sink1.inlet.state.p|sink1.inlet.state.phase|sink1.p|sink1.p0|sink1.p0_par|sink1.p0_var|sink1.r|source1.L|source1.T0|source1.T0_par|source1.T0_var|source1.h0|source1.h0_par|der.source1.outlet.m_flow.|source1.outlet.m_flow|source1.outlet.r|source1.outlet.state.T|source1.outlet.state.d|source1.outlet.state.h|source1.outlet.state.p|source1.outlet.state.phase|source1.p0|source1.p0_par",fileNamePrefix="ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8") [Timeout 660] "Notification: Performance of FrontEnd - loaded program: time 1.473e-06/1.473e-06, allocations: 0 / 483.1 MB, free: 24.03 MB / 426.7 MB Notification: Performance of FrontEnd - Absyn->SCode: time 2.001e-05/2.148e-05, allocations: 2.312 kB / 483.1 MB, free: 24.02 MB / 426.7 MB Notification: Performance of NFInst.instantiate(ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8): time 0.1581/0.1581, allocations: 118.3 MB / 0.5873 GB, free: 10.17 MB / 0.5105 GB Notification: Performance of NFInst.instExpressions: time 0.07942/0.2375, allocations: 54.48 MB / 0.6405 GB, free: 3.508 MB / 0.5573 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.002478/0.24, allocations: 95.12 kB / 0.6406 GB, free: 3.414 MB / 0.5573 GB Notification: Performance of NFTyping.typeComponents: time 0.003472/0.2435, allocations: 0.9694 MB / 0.6415 GB, free: 2.438 MB / 0.5573 GB Notification: Performance of NFTyping.typeBindings: time 0.2602/0.5037, allocations: 5.317 MB / 0.6467 GB, free: 10.85 MB / 0.5573 GB Notification: Performance of NFTyping.typeClassSections: time 0.01587/0.5196, allocations: 6.522 MB / 0.6531 GB, free: 10.55 MB / 0.5573 GB Notification: Performance of NFFlatten.flatten: time 0.008793/0.5284, allocations: 9.484 MB / 0.6624 GB, free: 7.824 MB / 0.5573 GB Notification: Performance of NFFlatten.resolveConnections: time 0.002215/0.5306, allocations: 0.9671 MB / 0.6633 GB, free: 23.57 MB / 0.573 GB Notification: Performance of NFEvalConstants.evaluate: time 0.06319/0.5938, allocations: 46.51 MB / 0.7087 GB, free: 18.88 MB / 0.573 GB Notification: Performance of NFSimplifyModel.simplify: time 0.006709/0.6005, allocations: 3.581 MB / 0.7122 GB, free: 17.89 MB / 0.573 GB Notification: Performance of NFPackage.collectConstants: time 0.00163/0.6021, allocations: 0.5535 MB / 0.7128 GB, free: 17.89 MB / 0.573 GB Notification: Performance of NFFlatten.collectFunctions: time 0.04406/0.6462, allocations: 17.41 MB / 0.7298 GB, free: 2.977 MB / 0.573 GB Notification: Performance of NFScalarize.scalarize: time 0.00286/0.649, allocations: 1.334 MB / 0.7311 GB, free: 2.305 MB / 0.573 GB Notification: Performance of NFVerifyModel.verify: time 0.006487/0.6555, allocations: 2.274 MB / 0.7333 GB, free: 0.6914 MB / 0.573 GB Notification: Performance of NFConvertDAE.convert: time 0.09008/0.7456, allocations: 31.06 MB / 0.7636 GB, free: 5.426 MB / 0.6042 GB Notification: Performance of FrontEnd - DAE generated: time 7.174e-06/0.7456, allocations: 0 / 0.7636 GB, free: 5.426 MB / 0.6042 GB Notification: Performance of FrontEnd: time 1.743e-06/0.7456, allocations: 4 kB / 0.7636 GB, free: 5.422 MB / 0.6042 GB Notification: Performance of Transformations before backend: time 0.0001782/0.7458, allocations: 0 / 0.7636 GB, free: 5.422 MB / 0.6042 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 1130 * Number of variables: 1130 Notification: Performance of Generate backend data structure: time 0.03381/0.7796, allocations: 8.316 MB / 0.7718 GB, free: 14.06 MB / 0.6198 GB Notification: Performance of prepare preOptimizeDAE: time 4.469e-05/0.7796, allocations: 8.031 kB / 0.7718 GB, free: 14.05 MB / 0.6198 GB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.02319/0.8028, allocations: 3.399 MB / 0.7751 GB, free: 10.97 MB / 0.6198 GB Notification: Performance of preOpt evaluateParameters (simulation): time 0.009496/0.8123, allocations: 3.967 MB / 0.779 GB, free: 7.836 MB / 0.6198 GB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0007219/0.8131, allocations: 379.5 kB / 0.7793 GB, free: 7.449 MB / 0.6198 GB Notification: Performance of preOpt expandDerOperator (simulation): time 0.001645/0.8147, allocations: 443.8 kB / 0.7797 GB, free: 7.016 MB / 0.6198 GB Notification: Performance of preOpt clockPartitioning (simulation): time 0.02072/0.8354, allocations: 8.718 MB / 0.7883 GB, free: 14 MB / 0.6355 GB Notification: Performance of preOpt findStateOrder (simulation): time 8.848e-05/0.8355, allocations: 0 / 0.7883 GB, free: 14 MB / 0.6355 GB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.0006067/0.8361, allocations: 168 kB / 0.7884 GB, free: 13.84 MB / 0.6355 GB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.0001472/0.8363, allocations: 140 kB / 0.7885 GB, free: 13.7 MB / 0.6355 GB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.02163/0.8579, allocations: 8.735 MB / 0.7971 GB, free: 4.969 MB / 0.6355 GB Warning: The model contains alias variables with redundant start and/or conflicting nominal values. It is recommended to resolve the conflicts, because otherwise the system could be hard to solve. To print the conflicting alias sets and the chosen candidates please use -d=aliasConflicts. Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.05578/0.9137, allocations: 21.63 MB / 0.8182 GB, free: 15.22 MB / 0.6667 GB Notification: Performance of preOpt comSubExp (simulation): time 0.01573/0.9294, allocations: 5.822 MB / 0.8239 GB, free: 9.414 MB / 0.6667 GB Notification: Performance of preOpt resolveLoops (simulation): time 0.008914/0.9383, allocations: 3.95 MB / 0.8277 GB, free: 5.461 MB / 0.6667 GB Notification: Performance of preOpt evalFunc (simulation): time 0.005009/0.9433, allocations: 1.25 MB / 0.829 GB, free: 4.227 MB / 0.6667 GB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.000109/0.9434, allocations: 97.77 kB / 0.8291 GB, free: 4.121 MB / 0.6667 GB Notification: Performance of pre-optimization done (n=499): time 8.065e-06/0.9435, allocations: 0 / 0.8291 GB, free: 4.121 MB / 0.6667 GB Notification: Performance of matching and sorting (n=505): time 0.07422/1.018, allocations: 23.05 MB / 0.8516 GB, free: 13.02 MB / 0.698 GB Notification: Performance of inlineWhenForInitialization (initialization): time 0.0001958/1.018, allocations: 150.1 kB / 0.8517 GB, free: 12.85 MB / 0.698 GB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.007464/1.025, allocations: 3.215 MB / 0.8548 GB, free: 9.648 MB / 0.698 GB Notification: Performance of collectPreVariables (initialization): time 0.001136/1.026, allocations: 105.6 kB / 0.8549 GB, free: 9.539 MB / 0.698 GB Notification: Performance of collectInitialEqns (initialization): time 0.002618/1.029, allocations: 2.046 MB / 0.8569 GB, free: 7.484 MB / 0.698 GB Notification: Performance of collectInitialBindings (initialization): time 0.002773/1.032, allocations: 1.757 MB / 0.8587 GB, free: 5.75 MB / 0.698 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.002069/1.034, allocations: 1.004 MB / 0.8596 GB, free: 4.734 MB / 0.698 GB Notification: Performance of setup shared object (initialization): time 0.0001697/1.034, allocations: 305.1 kB / 0.8599 GB, free: 4.434 MB / 0.698 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.008301/1.042, allocations: 3.818 MB / 0.8637 GB, free: 0.5977 MB / 0.698 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.01052/1.053, allocations: 4.623 MB / 0.8682 GB, free: 11.69 MB / 0.7136 GB Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[10].deltaE_system = $START.evaporator.thermalElementA[10].deltaE_system (0.0 = $START.evaporator.thermalElementA[10].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[9].deltaE_system = $START.evaporator.thermalElementA[9].deltaE_system (0.0 = $START.evaporator.thermalElementA[9].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[8].deltaE_system = $START.evaporator.thermalElementA[8].deltaE_system (0.0 = $START.evaporator.thermalElementA[8].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[7].deltaE_system = $START.evaporator.thermalElementA[7].deltaE_system (0.0 = $START.evaporator.thermalElementA[7].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[6].deltaE_system = $START.evaporator.thermalElementA[6].deltaE_system (0.0 = $START.evaporator.thermalElementA[6].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[5].deltaE_system = $START.evaporator.thermalElementA[5].deltaE_system (0.0 = $START.evaporator.thermalElementA[5].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[4].deltaE_system = $START.evaporator.thermalElementA[4].deltaE_system (0.0 = $START.evaporator.thermalElementA[4].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[3].deltaE_system = $START.evaporator.thermalElementA[3].deltaE_system (0.0 = $START.evaporator.thermalElementA[3].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[2].deltaE_system = $START.evaporator.thermalElementA[2].deltaE_system (0.0 = $START.evaporator.thermalElementA[2].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[1].deltaE_system = $START.evaporator.thermalElementA[1].deltaE_system (0.0 = $START.evaporator.thermalElementA[1].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[10].deltaE_system = $START.evaporator.thermalElementB[10].deltaE_system (0.0 = $START.evaporator.thermalElementB[10].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[9].deltaE_system = $START.evaporator.thermalElementB[9].deltaE_system (0.0 = $START.evaporator.thermalElementB[9].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[8].deltaE_system = $START.evaporator.thermalElementB[8].deltaE_system (0.0 = $START.evaporator.thermalElementB[8].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[7].deltaE_system = $START.evaporator.thermalElementB[7].deltaE_system (0.0 = $START.evaporator.thermalElementB[7].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[6].deltaE_system = $START.evaporator.thermalElementB[6].deltaE_system (0.0 = $START.evaporator.thermalElementB[6].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[5].deltaE_system = $START.evaporator.thermalElementB[5].deltaE_system (0.0 = $START.evaporator.thermalElementB[5].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[4].deltaE_system = $START.evaporator.thermalElementB[4].deltaE_system (0.0 = $START.evaporator.thermalElementB[4].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[3].deltaE_system = $START.evaporator.thermalElementB[3].deltaE_system (0.0 = $START.evaporator.thermalElementB[3].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[2].deltaE_system = $START.evaporator.thermalElementB[2].deltaE_system (0.0 = $START.evaporator.thermalElementB[2].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[1].deltaE_system = $START.evaporator.thermalElementB[1].deltaE_system (0.0 = $START.evaporator.thermalElementB[1].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: conductionElement.deltaE_system = $START.conductionElement.deltaE_system (0.0 = $START.conductionElement.deltaE_system) Notification: Performance of analyzeInitialSystem (initialization): time 0.02022/1.073, allocations: 8.908 MB / 0.8769 GB, free: 2.57 MB / 0.7136 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 2.417e-05/1.073, allocations: 4 kB / 0.8769 GB, free: 2.566 MB / 0.7136 GB Notification: Performance of matching and sorting (n=623) (initialization): time 0.02511/1.098, allocations: 10.21 MB / 0.8868 GB, free: 8.379 MB / 0.7292 GB Notification: Performance of prepare postOptimizeDAE: time 3.959e-05/1.098, allocations: 12 kB / 0.8869 GB, free: 8.367 MB / 0.7292 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.02182/1.12, allocations: 8.988 MB / 0.8956 GB, free: 15.3 MB / 0.7448 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.003653/1.124, allocations: 1.096 MB / 0.8967 GB, free: 14.17 MB / 0.7448 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.00665/1.13, allocations: 1.222 MB / 0.8979 GB, free: 13 MB / 0.7448 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.228/1.358, allocations: 22.58 MB / 0.92 GB, free: 304.7 MB / 0.7448 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.005194/1.364, allocations: 416.8 kB / 0.9203 GB, free: 304.7 MB / 0.7448 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0008406/1.364, allocations: 276.3 kB / 0.9206 GB, free: 304.7 MB / 0.7448 GB Warning: The initial conditions are over specified. The following 21 initial equations are redundant, so they are removed from the initialization system: evaporator.thermalElementA[10].deltaE_system = $START.evaporator.thermalElementA[10].deltaE_system evaporator.thermalElementA[9].deltaE_system = $START.evaporator.thermalElementA[9].deltaE_system evaporator.thermalElementA[8].deltaE_system = $START.evaporator.thermalElementA[8].deltaE_system evaporator.thermalElementA[7].deltaE_system = $START.evaporator.thermalElementA[7].deltaE_system evaporator.thermalElementA[6].deltaE_system = $START.evaporator.thermalElementA[6].deltaE_system evaporator.thermalElementA[5].deltaE_system = $START.evaporator.thermalElementA[5].deltaE_system evaporator.thermalElementA[4].deltaE_system = $START.evaporator.thermalElementA[4].deltaE_system evaporator.thermalElementA[3].deltaE_system = $START.evaporator.thermalElementA[3].deltaE_system evaporator.thermalElementA[2].deltaE_system = $START.evaporator.thermalElementA[2].deltaE_system evaporator.thermalElementA[1].deltaE_system = $START.evaporator.thermalElementA[1].deltaE_system evaporator.thermalElementB[10].deltaE_system = $START.evaporator.thermalElementB[10].deltaE_system evaporator.thermalElementB[9].deltaE_system = $START.evaporator.thermalElementB[9].deltaE_system evaporator.thermalElementB[8].deltaE_system = $START.evaporator.thermalElementB[8].deltaE_system evaporator.thermalElementB[7].deltaE_system = $START.evaporator.thermalElementB[7].deltaE_system evaporator.thermalElementB[6].deltaE_system = $START.evaporator.thermalElementB[6].deltaE_system evaporator.thermalElementB[5].deltaE_system = $START.evaporator.thermalElementB[5].deltaE_system evaporator.thermalElementB[4].deltaE_system = $START.evaporator.thermalElementB[4].deltaE_system evaporator.thermalElementB[3].deltaE_system = $START.evaporator.thermalElementB[3].deltaE_system evaporator.thermalElementB[2].deltaE_system = $START.evaporator.thermalElementB[2].deltaE_system evaporator.thermalElementB[1].deltaE_system = $START.evaporator.thermalElementB[1].deltaE_system conductionElement.deltaE_system = $START.conductionElement.deltaE_system. Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.008087/1.373, allocations: 5.268 MB / 0.9258 GB, free: 304.6 MB / 0.7448 GB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.006422/1.379, allocations: 4.604 MB / 0.9303 GB, free: 302.9 MB / 0.7448 GB Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[10].deltaE_system = $START.evaporator.thermalElementA[10].deltaE_system (0.0 = $START.evaporator.thermalElementA[10].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[9].deltaE_system = $START.evaporator.thermalElementA[9].deltaE_system (0.0 = $START.evaporator.thermalElementA[9].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[8].deltaE_system = $START.evaporator.thermalElementA[8].deltaE_system (0.0 = $START.evaporator.thermalElementA[8].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[7].deltaE_system = $START.evaporator.thermalElementA[7].deltaE_system (0.0 = $START.evaporator.thermalElementA[7].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[6].deltaE_system = $START.evaporator.thermalElementA[6].deltaE_system (0.0 = $START.evaporator.thermalElementA[6].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[5].deltaE_system = $START.evaporator.thermalElementA[5].deltaE_system (0.0 = $START.evaporator.thermalElementA[5].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[4].deltaE_system = $START.evaporator.thermalElementA[4].deltaE_system (0.0 = $START.evaporator.thermalElementA[4].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[3].deltaE_system = $START.evaporator.thermalElementA[3].deltaE_system (0.0 = $START.evaporator.thermalElementA[3].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[2].deltaE_system = $START.evaporator.thermalElementA[2].deltaE_system (0.0 = $START.evaporator.thermalElementA[2].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementA[1].deltaE_system = $START.evaporator.thermalElementA[1].deltaE_system (0.0 = $START.evaporator.thermalElementA[1].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[10].deltaE_system = $START.evaporator.thermalElementB[10].deltaE_system (0.0 = $START.evaporator.thermalElementB[10].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[9].deltaE_system = $START.evaporator.thermalElementB[9].deltaE_system (0.0 = $START.evaporator.thermalElementB[9].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[8].deltaE_system = $START.evaporator.thermalElementB[8].deltaE_system (0.0 = $START.evaporator.thermalElementB[8].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[7].deltaE_system = $START.evaporator.thermalElementB[7].deltaE_system (0.0 = $START.evaporator.thermalElementB[7].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[6].deltaE_system = $START.evaporator.thermalElementB[6].deltaE_system (0.0 = $START.evaporator.thermalElementB[6].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[5].deltaE_system = $START.evaporator.thermalElementB[5].deltaE_system (0.0 = $START.evaporator.thermalElementB[5].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[4].deltaE_system = $START.evaporator.thermalElementB[4].deltaE_system (0.0 = $START.evaporator.thermalElementB[4].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[3].deltaE_system = $START.evaporator.thermalElementB[3].deltaE_system (0.0 = $START.evaporator.thermalElementB[3].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[2].deltaE_system = $START.evaporator.thermalElementB[2].deltaE_system (0.0 = $START.evaporator.thermalElementB[2].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: evaporator.thermalElementB[1].deltaE_system = $START.evaporator.thermalElementB[1].deltaE_system (0.0 = $START.evaporator.thermalElementB[1].deltaE_system) Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: conductionElement.deltaE_system = $START.conductionElement.deltaE_system (0.0 = $START.conductionElement.deltaE_system) Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 0.01523/1.394, allocations: 8.848 MB / 0.9389 GB, free: 299.1 MB / 0.7448 GB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 2.529e-05/1.394, allocations: 5.625 kB / 0.9389 GB, free: 299.1 MB / 0.7448 GB Notification: Performance of matching and sorting (n=623) (initialization_lambda0): time 0.0194/1.414, allocations: 10.18 MB / 0.9488 GB, free: 295.6 MB / 0.7448 GB Notification: Performance of prepare postOptimizeDAE: time 2.482e-05/1.414, allocations: 12.47 kB / 0.9488 GB, free: 295.6 MB / 0.7448 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.01501/1.429, allocations: 8.948 MB / 0.9576 GB, free: 292.4 MB / 0.7448 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.002707/1.431, allocations: 1.103 MB / 0.9587 GB, free: 292.1 MB / 0.7448 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.005042/1.436, allocations: 1.213 MB / 0.9598 GB, free: 292 MB / 0.7448 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.0144/1.451, allocations: 22.59 MB / 0.9819 GB, free: 272.4 MB / 0.7448 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.005207/1.456, allocations: 400.8 kB / 0.9823 GB, free: 272.2 MB / 0.7448 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0009113/1.457, allocations: 276.4 kB / 0.9826 GB, free: 271.9 MB / 0.7448 GB Warning: The initial conditions are over specified. The following 21 initial equations are redundant, so they are removed from the initialization_lambda0 system: evaporator.thermalElementA[10].deltaE_system = $START.evaporator.thermalElementA[10].deltaE_system evaporator.thermalElementA[9].deltaE_system = $START.evaporator.thermalElementA[9].deltaE_system evaporator.thermalElementA[8].deltaE_system = $START.evaporator.thermalElementA[8].deltaE_system evaporator.thermalElementA[7].deltaE_system = $START.evaporator.thermalElementA[7].deltaE_system evaporator.thermalElementA[6].deltaE_system = $START.evaporator.thermalElementA[6].deltaE_system evaporator.thermalElementA[5].deltaE_system = $START.evaporator.thermalElementA[5].deltaE_system evaporator.thermalElementA[4].deltaE_system = $START.evaporator.thermalElementA[4].deltaE_system evaporator.thermalElementA[3].deltaE_system = $START.evaporator.thermalElementA[3].deltaE_system evaporator.thermalElementA[2].deltaE_system = $START.evaporator.thermalElementA[2].deltaE_system evaporator.thermalElementA[1].deltaE_system = $START.evaporator.thermalElementA[1].deltaE_system evaporator.thermalElementB[10].deltaE_system = $START.evaporator.thermalElementB[10].deltaE_system evaporator.thermalElementB[9].deltaE_system = $START.evaporator.thermalElementB[9].deltaE_system evaporator.thermalElementB[8].deltaE_system = $START.evaporator.thermalElementB[8].deltaE_system evaporator.thermalElementB[7].deltaE_system = $START.evaporator.thermalElementB[7].deltaE_system evaporator.thermalElementB[6].deltaE_system = $START.evaporator.thermalElementB[6].deltaE_system evaporator.thermalElementB[5].deltaE_system = $START.evaporator.thermalElementB[5].deltaE_system evaporator.thermalElementB[4].deltaE_system = $START.evaporator.thermalElementB[4].deltaE_system evaporator.thermalElementB[3].deltaE_system = $START.evaporator.thermalElementB[3].deltaE_system evaporator.thermalElementB[2].deltaE_system = $START.evaporator.thermalElementB[2].deltaE_system evaporator.thermalElementB[1].deltaE_system = $START.evaporator.thermalElementB[1].deltaE_system conductionElement.deltaE_system = $START.conductionElement.deltaE_system. Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 81 * Number of states: 0 () * Number of discrete variables: 22 (multiSensor_Tpm4.outlet.state.phase,multiSensor_Tpm3.outlet.state.phase,source1.outlet.state.phase,evaporator.thermalElementB[10].state.phase,evaporator.thermalElementB[9].state.phase,evaporator.thermalElementB[9].outlet.state.phase,evaporator.thermalElementB[8].state.phase,evaporator.thermalElementB[8].outlet.state.phase,evaporator.thermalElementB[7].state.phase,evaporator.thermalElementB[7].outlet.state.phase,evaporator.thermalElementB[6].state.phase,evaporator.thermalElementB[6].outlet.state.phase,evaporator.thermalElementB[5].state.phase,evaporator.thermalElementB[5].outlet.state.phase,evaporator.thermalElementB[4].state.phase,evaporator.thermalElementB[4].outlet.state.phase,evaporator.thermalElementB[3].state.phase,evaporator.thermalElementB[3].outlet.state.phase,evaporator.thermalElementB[2].state.phase,evaporator.thermalElementB[2].outlet.state.phase,evaporator.thermalElementB[1].state.phase,evaporator.thermalElementB[1].outlet.state.phase) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (471): * Single equations (assignments): 435 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 22 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 14 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 13 systems {(1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,14,100.0%), (1,12,100.0%), (1,1,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 1 system {(1,7)} Notification: Performance of prepare postOptimizeDAE: time 0.001353/1.458, allocations: 0.5728 MB / 0.9831 GB, free: 271.4 MB / 0.7448 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.001626/1.46, allocations: 0.5972 MB / 0.9837 GB, free: 271.1 MB / 0.7448 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.02221/1.482, allocations: 15.07 MB / 0.9984 GB, free: 256.6 MB / 0.7448 GB Notification: Performance of postOpt inlineArrayEqn (simulation): time 0.01417/1.496, allocations: 9.74 MB / 1.008 GB, free: 246.8 MB / 0.7448 GB Notification: Performance of postOpt constantLinearSystem (simulation): time 2.138e-05/1.496, allocations: 8 kB / 1.008 GB, free: 246.8 MB / 0.7448 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 4.227e-05/1.496, allocations: 27.91 kB / 1.008 GB, free: 246.7 MB / 0.7448 GB Warning: The model contains alias variables with redundant start and/or conflicting nominal values. It is recommended to resolve the conflicts, because otherwise the system could be hard to solve. To print the conflicting alias sets and the chosen candidates please use -d=aliasConflicts. Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.02585/1.522, allocations: 17.37 MB / 1.025 GB, free: 229.6 MB / 0.7448 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 0.01414/1.536, allocations: 9.44 MB / 1.034 GB, free: 220.1 MB / 0.7448 GB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.004678/1.541, allocations: 1.08 MB / 1.035 GB, free: 219 MB / 0.7448 GB Notification: Performance of postOpt tearingSystem (simulation): time 0.003021/1.544, allocations: 1.133 MB / 1.036 GB, free: 217.8 MB / 0.7448 GB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.0005262/1.545, allocations: 171.8 kB / 1.036 GB, free: 217.7 MB / 0.7448 GB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.01423/1.559, allocations: 23.13 MB / 1.059 GB, free: 193.4 MB / 0.7448 GB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 2.204e-06/1.559, allocations: 0 / 1.059 GB, free: 193.4 MB / 0.7448 GB Notification: Performance of postOpt symbolicJacobian (simulation): time 0.02331/1.582, allocations: 15.2 MB / 1.074 GB, free: 178 MB / 0.7448 GB Notification: Performance of postOpt removeConstants (simulation): time 0.00277/1.585, allocations: 1.349 MB / 1.075 GB, free: 176.7 MB / 0.7448 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.0007005/1.586, allocations: 108 kB / 1.075 GB, free: 176.6 MB / 0.7448 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.003376/1.589, allocations: 457 kB / 1.076 GB, free: 176.2 MB / 0.7448 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.0006672/1.59, allocations: 387.2 kB / 1.076 GB, free: 175.8 MB / 0.7448 GB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.0004113/1.59, allocations: 199.9 kB / 1.076 GB, free: 175.6 MB / 0.7448 GB Notification: Performance of sorting global known variables: time 0.00282/1.593, allocations: 2.178 MB / 1.078 GB, free: 173.4 MB / 0.7448 GB Notification: Performance of sort global known variables: time 6e-08/1.593, allocations: 0 / 1.078 GB, free: 173.4 MB / 0.7448 GB Notification: Performance of remove unused functions: time 0.01604/1.609, allocations: 3.585 MB / 1.082 GB, free: 170.1 MB / 0.7448 GB Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 4 * Number of states: 27 (evaporator.thermalElementB[1].h,evaporator.thermalElementB[2].h,evaporator.thermalElementB[3].h,evaporator.thermalElementB[4].h,evaporator.thermalElementB[5].h,evaporator.thermalElementB[6].h,evaporator.thermalElementB[7].h,evaporator.thermalElementB[8].h,evaporator.thermalElementB[9].h,evaporator.thermalElementB[10].h,evaporator.thermalElementA[1].h,evaporator.thermalElementA[2].h,evaporator.thermalElementA[3].h,evaporator.thermalElementA[4].h,evaporator.thermalElementA[5].h,evaporator.thermalElementA[6].h,evaporator.thermalElementA[7].h,evaporator.thermalElementA[8].h,evaporator.thermalElementA[9].h,evaporator.thermalElementA[10].h,pump.m_flow,conductionElement.h,reservoir.M,reservoir.U_med,flowResistance2.inlet.m_flow,PI1.x,PI2.x) * Number of discrete variables: 52 (evaporator.thermalElementB[1].outlet.state.phase,evaporator.thermalElementB[2].outlet.state.phase,evaporator.thermalElementB[3].outlet.state.phase,evaporator.thermalElementB[4].outlet.state.phase,evaporator.thermalElementB[5].outlet.state.phase,evaporator.thermalElementB[6].outlet.state.phase,evaporator.thermalElementB[7].outlet.state.phase,evaporator.thermalElementB[8].outlet.state.phase,evaporator.thermalElementB[9].outlet.state.phase,multiSensor_Tpm3.outlet.state.phase,multiSensor_Tpm4.outlet.state.phase,$cse1.phase,$cse2,$cse3.phase,$cse4,$cse9.phase,$cse10.phase,$cse11,$cse13.phase,$cse14,$cse16.phase,$cse17,$cse20.phase,$cse21,$cse24.phase,$cse25,$cse28.phase,$cse29,$cse32.phase,$cse33,$cse36.phase,$cse37,$cse40.phase,$cse41,$cse44.phase,$cse45,$cse48.phase,$cse49,$cse52.phase,$cse53,$cse68.phase,evaporator.thermalElementB[1].state.phase,evaporator.thermalElementB[2].state.phase,evaporator.thermalElementB[3].state.phase,evaporator.thermalElementB[4].state.phase,evaporator.thermalElementB[5].state.phase,evaporator.thermalElementB[6].state.phase,evaporator.thermalElementB[7].state.phase,evaporator.thermalElementB[8].state.phase,evaporator.thermalElementB[9].state.phase,evaporator.thermalElementB[10].state.phase,$cse69) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (463): * Single equations (assignments): 412 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 36 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 15 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 13 systems {(1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,3,100.0%), (1,12,100.0%), (1,14,100.0%), (1,1,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 2 systems {(1,6), (1,3)} Notification: Performance of Backend phase and start with SimCode phase: time 0.0475/1.656, allocations: 12.84 MB / 1.094 GB, free: 157.7 MB / 0.7448 GB Notification: Performance of simCode: created initialization part: time 0.0296/1.686, allocations: 16.74 MB / 1.111 GB, free: 140.6 MB / 0.7448 GB Notification: Performance of simCode: created event and clocks part: time 1.4e-05/1.686, allocations: 4.938 kB / 1.111 GB, free: 140.6 MB / 0.7448 GB Notification: Performance of simCode: created simulation system equations: time 0.01022/1.696, allocations: 6.434 MB / 1.117 GB, free: 133.9 MB / 0.7448 GB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.01218/1.708, allocations: 2.717 MB / 1.12 GB, free: 131.3 MB / 0.7448 GB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.0234/1.732, allocations: 14.79 MB / 1.134 GB, free: 116.5 MB / 0.7448 GB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.002564/1.734, allocations: 3.265 MB / 1.137 GB, free: 113.2 MB / 0.7448 GB Notification: Performance of simCode: alias equations: time 0.009941/1.744, allocations: 5.651 MB / 1.143 GB, free: 107.8 MB / 0.7448 GB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.001713/1.746, allocations: 0.5469 MB / 1.143 GB, free: 107.2 MB / 0.7448 GB Notification: Performance of SimCode: time 1.312e-06/1.746, allocations: 0 / 1.143 GB, free: 107.2 MB / 0.7448 GB Notification: Performance of Templates: time 0.4087/2.155, allocations: 169.8 MB / 1.309 GB, free: 270.2 MB / 0.7448 GB " [Timeout remaining time 658] make -j1 -f ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.makefile [Timeout 660] (rm -f ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.pipe ; mkfifo ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.pipe ; head -c 1048576 < ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.pipe >> ../files/ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.sim & ./ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8 -abortSlowSimulation -alarm=1200 -emit_protected -lv LOG_STATS > ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.pipe 2>&1) [Timeout 1200] diffSimulationResults("ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat","/mnt/ReferenceFiles/ThermofluidStream-main-regression/ReferenceData/ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_ref.mat","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8.diff",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) [Timeout 660] "Error: Could not read variable CPUtime in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable CPUtime from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable EventCounter in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable EventCounter from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Calls in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Calls from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Iterations in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Iterations from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Jacobians in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Jacobians from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Residues in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Residues from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable conductionElement.inlet.state.der(T) in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable conductionElement.inlet.state.der(T) from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable dropOfCommons.instanceNameColor[1] in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable dropOfCommons.instanceNameColor[1] from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable dropOfCommons.instanceNameColor[2] in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable dropOfCommons.instanceNameColor[2] from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable dropOfCommons.instanceNameColor[3] in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable dropOfCommons.instanceNameColor[3] from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.crossFlow in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.crossFlow from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[10].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[10].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[10].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[10].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[1].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[1].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[1].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[1].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[2].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[2].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[2].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[2].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[3].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[3].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[3].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[3].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[4].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[4].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[4].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[4].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[5].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[5].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[5].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[5].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[6].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[6].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[6].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[6].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[7].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[7].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[7].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[7].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[8].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[8].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[8].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[8].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[9].Re_exp in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[9].Re_exp from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementA[9].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementA[9].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[10].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[10].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[10].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[10].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[10].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[10].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[1].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[1].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[1].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[1].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[1].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[1].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[2].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[2].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[2].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[2].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[2].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[2].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[3].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[3].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[3].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[3].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[3].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[3].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[4].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[4].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[4].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[4].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[4].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[4].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[5].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[5].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[5].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[5].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[5].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[5].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[6].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[6].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[6].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[6].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[6].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[6].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[7].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[7].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[7].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[7].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[7].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[7].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[8].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[8].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[8].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[8].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[8].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[8].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[9].Re_exp_cond in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[9].Re_exp_cond from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[9].Re_exp_evap in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[9].Re_exp_evap from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable evaporator.thermalElementB[9].U_min in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable evaporator.thermalElementB[9].U_min from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable reservoir.der(m_flow_in) in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable reservoir.der(m_flow_in) from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! Error: Could not read variable source1.outlet.der(m_flow) in file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat. Warning: Get data of variable source1.outlet.der(m_flow) from file ThermofluidStream_ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8_res.mat failed! " [Timeout remaining time 660] "" Variables in the reference:CPUtime,EventCounter,NonlinearSystems.simulation[1].Calls,NonlinearSystems.simulation[1].Iterations,NonlinearSystems.simulation[1].Jacobians,NonlinearSystems.simulation[1].Residues,PI1.T,der(PI1.x),PI1.initType,PI1.k,PI1.u,PI1.x,PI1.x_start,PI1.y,PI1.y_start,PI2.T,der(PI2.x),PI2.initType,PI2.k,PI2.u,PI2.x,PI2.x_start,PI2.y,PI2.y_start,Time,conductionElement.A,conductionElement.L,conductionElement.M,conductionElement.Q_flow,conductionElement.T,conductionElement.T_0,conductionElement.T_e,conductionElement.T_heatPort,conductionElement.U,conductionElement.U_internal,conductionElement.V,conductionElement.clip_p_out,conductionElement.deltaE_system,der(conductionElement.h),conductionElement.dp,conductionElement.dr_corr,conductionElement.h,conductionElement.h_0,conductionElement.h_in,conductionElement.h_in_norm,conductionElement.h_out,conductionElement.heatPort.Q_flow,conductionElement.heatPort.T,conductionElement.init,conductionElement.initM_flow,der(conductionElement.inlet.m_flow),conductionElement.inlet.m_flow,conductionElement.inlet.r,conductionElement.inlet.state.T,der(conductionElement.inlet.state.T),conductionElement.inlet.state.p,conductionElement.k,conductionElement.k_internal,conductionElement.k_par,conductionElement.m_acceleration_0,conductionElement.m_flow,conductionElement.m_flowStateSelect,conductionElement.m_flow_0,conductionElement.m_flow_assert,conductionElement.outlet.m_flow,conductionElement.outlet.r,conductionElement.outlet.state.T,conductionElement.outlet.state.p,conductionElement.p_in,conductionElement.p_min,conductionElement.p_out,conductionElement.rho,conductionElement.rho_min,conductionElement.state.T,conductionElement.state.p,differenceSensor_Tp.T,differenceSensor_Tp.TA,differenceSensor_Tp.TB,differenceSensor_Tp.TC,differenceSensor_Tp.T_0,differenceSensor_Tp.T_out,differenceSensor_Tp.digits,differenceSensor_Tp.direct_T,differenceSensor_Tp.direct_p,differenceSensor_Tp.init,differenceSensor_Tp.inletA.m_flow,differenceSensor_Tp.inletA.r,differenceSensor_Tp.inletA.state.T,differenceSensor_Tp.inletA.state.p,differenceSensor_Tp.inletB.m_flow,differenceSensor_Tp.inletB.r,differenceSensor_Tp.inletB.state.T,differenceSensor_Tp.inletB.state.p,differenceSensor_Tp.p,differenceSensor_Tp.pA,differenceSensor_Tp.pB,differenceSensor_Tp.p_0,dropOfCommons.L,dropOfCommons.assertionLevel,dropOfCommons.g,dropOfCommons.instanceNameColor[1],dropOfCommons.instanceNameColor[2],dropOfCommons.instanceNameColor[3],dropOfCommons.k_volume_damping,dropOfCommons.m_flow_reg,dropOfCommons.omega_reg,dropOfCommons.p_min,dropOfCommons.rho_min,evaporator.A,evaporator.G,evaporator.M_A,evaporator.M_B,evaporator.Q_flow_A,evaporator.Q_flow_B,evaporator.V_Hex,evaporator.crossFlow,evaporator.deltaE_system,evaporator.inletA.m_flow,evaporator.inletA.r,evaporator.inletA.state.T,evaporator.inletA.state.p,evaporator.inletB.m_flow,evaporator.inletB.r,evaporator.inletB.state.T,evaporator.inletB.state.d,evaporator.inletB.state.h,evaporator.inletB.state.p,evaporator.inletB.state.phase,evaporator.k_wall,evaporator.m_flow_0_A,evaporator.m_flow_0_B,evaporator.m_flow_assert,evaporator.nCells,evaporator.nCellsParallel,evaporator.outletA.m_flow,evaporator.outletA.r,evaporator.outletA.state.T,evaporator.outletA.state.p,evaporator.outletB.m_flow,evaporator.outletB.r,evaporator.outletB.state.T,evaporator.outletB.state.d,evaporator.outletB.state.h,evaporator.outletB.state.p,evaporator.outletB.state.phase,evaporator.summary.Q_flow_A,evaporator.summary.Q_flow_B,evaporator.summary.Tin_A,evaporator.summary.Tin_B,evaporator.summary.Tout_A,evaporator.summary.Tout_B,evaporator.summary.dT_A,evaporator.summary.dT_B,evaporator.summary.dh_A,evaporator.summary.dh_B,evaporator.summary.efficiency,evaporator.summary.hin_A,evaporator.summary.hin_B,evaporator.summary.hout_A,evaporator.summary.hout_B,evaporator.thermalConductor[10].G,evaporator.thermalConductor[10].Q_flow,evaporator.thermalConductor[10].dT,evaporator.thermalConductor[10].port_a.Q_flow,evaporator.thermalConductor[10].port_a.T,evaporator.thermalConductor[10].port_b.Q_flow,evaporator.thermalConductor[10].port_b.T,evaporator.thermalConductor[1].G,evaporator.thermalConductor[1].Q_flow,evaporator.thermalConductor[1].dT,evaporator.thermalConductor[1].port_a.Q_flow,evaporator.thermalConductor[1].port_a.T,evaporator.thermalConductor[1].port_b.Q_flow,evaporator.thermalConductor[1].port_b.T,evaporator.thermalConductor[2].G,evaporator.thermalConductor[2].Q_flow,evaporator.thermalConductor[2].dT,evaporator.thermalConductor[2].port_a.Q_flow,evaporator.thermalConductor[2].port_a.T,evaporator.thermalConductor[2].port_b.Q_flow,evaporator.thermalConductor[2].port_b.T,evaporator.thermalConductor[3].G,evaporator.thermalConductor[3].Q_flow,evaporator.thermalConductor[3].dT,evaporator.thermalConductor[3].port_a.Q_flow,evaporator.thermalConductor[3].port_a.T,evaporator.thermalConductor[3].port_b.Q_flow,evaporator.thermalConductor[3].port_b.T,evaporator.thermalConductor[4].G,evaporator.thermalConductor[4].Q_flow,evaporator.thermalConductor[4].dT,evaporator.thermalConductor[4].port_a.Q_flow,evaporator.thermalConductor[4].port_a.T,evaporator.thermalConductor[4].port_b.Q_flow,evaporator.thermalConductor[4].port_b.T,evaporator.thermalConductor[5].G,evaporator.thermalConductor[5].Q_flow,evaporator.thermalConductor[5].dT,evaporator.thermalConductor[5].port_a.Q_flow,evaporator.thermalConductor[5].port_a.T,evaporator.thermalConductor[5].port_b.Q_flow,evaporator.thermalConductor[5].port_b.T,evaporator.thermalConductor[6].G,evaporator.thermalConductor[6].Q_flow,evaporator.thermalConductor[6].dT,evaporator.thermalConductor[6].port_a.Q_flow,evaporator.thermalConductor[6].port_a.T,evaporator.thermalConductor[6].port_b.Q_flow,evaporator.thermalConductor[6].port_b.T,evaporator.thermalConductor[7].G,evaporator.thermalConductor[7].Q_flow,evaporator.thermalConductor[7].dT,evaporator.thermalConductor[7].port_a.Q_flow,evaporator.thermalConductor[7].port_a.T,evaporator.thermalConductor[7].port_b.Q_flow,evaporator.thermalConductor[7].port_b.T,evaporator.thermalConductor[8].G,evaporator.thermalConductor[8].Q_flow,evaporator.thermalConductor[8].dT,evaporator.thermalConductor[8].port_a.Q_flow,evaporator.thermalConductor[8].port_a.T,evaporator.thermalConductor[8].port_b.Q_flow,evaporator.thermalConductor[8].port_b.T,evaporator.thermalConductor[9].G,evaporator.thermalConductor[9].Q_flow,evaporator.thermalConductor[9].dT,evaporator.thermalConductor[9].port_a.Q_flow,evaporator.thermalConductor[9].port_a.T,evaporator.thermalConductor[9].port_b.Q_flow,evaporator.thermalConductor[9].port_b.T,evaporator.thermalElementA[10].A,evaporator.thermalElementA[10].L,evaporator.thermalElementA[10].M,evaporator.thermalElementA[10].Q_flow,evaporator.thermalElementA[10].Re_exp,evaporator.thermalElementA[10].T,evaporator.thermalElementA[10].T_0,evaporator.thermalElementA[10].T_e,evaporator.thermalElementA[10].T_heatPort,evaporator.thermalElementA[10].U,evaporator.thermalElementA[10].U_min,evaporator.thermalElementA[10].U_nom,evaporator.thermalElementA[10].V,evaporator.thermalElementA[10].clip_p_out,evaporator.thermalElementA[10].deltaE_system,der(evaporator.thermalElementA[10].h),evaporator.thermalElementA[10].dp,evaporator.thermalElementA[10].dr_corr,evaporator.thermalElementA[10].h,evaporator.thermalElementA[10].h_0,evaporator.thermalElementA[10].h_in,evaporator.thermalElementA[10].h_in_norm,evaporator.thermalElementA[10].h_out,evaporator.thermalElementA[10].heatPort.Q_flow,evaporator.thermalElementA[10].heatPort.T,evaporator.thermalElementA[10].init,evaporator.thermalElementA[10].initM_flow,der(evaporator.thermalElementA[10].inlet.m_flow),evaporator.thermalElementA[10].inlet.m_flow,evaporator.thermalElementA[10].inlet.r,evaporator.thermalElementA[10].inlet.state.T,evaporator.thermalElementA[10].inlet.state.p,evaporator.thermalElementA[10].k,evaporator.thermalElementA[10].m_acceleration_0,evaporator.thermalElementA[10].m_flow,evaporator.thermalElementA[10].m_flowStateSelect,evaporator.thermalElementA[10].m_flow_0,evaporator.thermalElementA[10].m_flow_assert,evaporator.thermalElementA[10].m_flow_nom,evaporator.thermalElementA[10].nCellsParallel,evaporator.thermalElementA[10].outlet.m_flow,evaporator.thermalElementA[10].outlet.r,evaporator.thermalElementA[10].outlet.state.T,evaporator.thermalElementA[10].outlet.state.p,evaporator.thermalElementA[10].p_in,evaporator.thermalElementA[10].p_min,evaporator.thermalElementA[10].p_out,evaporator.thermalElementA[10].rho,evaporator.thermalElementA[10].rho_min,evaporator.thermalElementA[10].state.T,evaporator.thermalElementA[10].state.p,evaporator.thermalElementA[1].A,evaporator.thermalElementA[1].L,evaporator.thermalElementA[1].M,evaporator.thermalElementA[1].Q_flow,evaporator.thermalElementA[1].Re_exp,evaporator.thermalElementA[1].T,evaporator.thermalElementA[1].T_0,evaporator.thermalElementA[1].T_e,evaporator.thermalElementA[1].T_heatPort,evaporator.thermalElementA[1].U,evaporator.thermalElementA[1].U_min,evaporator.thermalElementA[1].U_nom,evaporator.thermalElementA[1].V,evaporator.thermalElementA[1].clip_p_out,evaporator.thermalElementA[1].deltaE_system,der(evaporator.thermalElementA[1].h),evaporator.thermalElementA[1].dp,evaporator.thermalElementA[1].dr_corr,evaporator.thermalElementA[1].h,evaporator.thermalElementA[1].h_0,evaporator.thermalElementA[1].h_in,evaporator.thermalElementA[1].h_in_norm,evaporator.thermalElementA[1].h_out,evaporator.thermalElementA[1].heatPort.Q_flow,evaporator.thermalElementA[1].heatPort.T,evaporator.thermalElementA[1].init,evaporator.thermalElementA[1].initM_flow,der(evaporator.thermalElementA[1].inlet.m_flow),evaporator.thermalElementA[1].inlet.m_flow,evaporator.thermalElementA[1].inlet.r,evaporator.thermalElementA[1].inlet.state.T,evaporator.thermalElementA[1].inlet.state.p,evaporator.thermalElementA[1].k,evaporator.thermalElementA[1].m_acceleration_0,evaporator.thermalElementA[1].m_flow,evaporator.thermalElementA[1].m_flowStateSelect,evaporator.thermalElementA[1].m_flow_0,evaporator.therm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ance2.dr_corr,flowResistance2.h_in,flowResistance2.h_out,flowResistance2.initM_flow,der(flowResistance2.inlet.m_flow),flowResistance2.inlet.m_flow,flowResistance2.inlet.r,flowResistance2.inlet.state.T,flowResistance2.inlet.state.d,flowResistance2.inlet.state.h,flowResistance2.inlet.state.p,flowResistance2.inlet.state.phase,flowResistance2.l,flowResistance2.m_acceleration_0,flowResistance2.m_flow,flowResistance2.m_flowStateSelect,flowResistance2.m_flow_0,flowResistance2.mu_in,flowResistance2.outlet.m_flow,flowResistance2.outlet.r,flowResistance2.outlet.state.T,flowResistance2.outlet.state.d,flowResistance2.outlet.state.h,flowResistance2.outlet.state.p,flowResistance2.outlet.state.phase,flowResistance2.p_in,flowResistance2.p_min,flowResistance2.p_out,flowResistance2.perimeter,flowResistance2.perimeterInput,flowResistance2.phi,flowResistance2.pressureDropSignificantDigits,flowResistance2.r,flowResistance2.rho_in,flowResistance2.rho_min,flowResistance2.shape,heat.y,heating_element.Q_flow,heating_element.T_ref,heating_element.alpha,heating_element.port.Q_flow,heating_element.port.T,inlet_temp.y,limiter1.homotopyType,limiter1.simplifiedExpr,limiter1.strict,limiter1.u,limiter1.uMax,limiter1.uMin,limiter1.y,limiter2.homotopyType,limiter2.simplifiedExpr,limiter2.strict,limiter2.u,limiter2.uMax,limiter2.uMin,limiter2.y,multiSensor_Tpm1.T,multiSensor_Tpm1.TC,multiSensor_Tpm1.T_0,multiSensor_Tpm1.T_out,multiSensor_Tpm1.digits,multiSensor_Tpm1.direct_T,multiSensor_Tpm1.direct_m_flow,multiSensor_Tpm1.direct_p,multiSensor_Tpm1.init,multiSensor_Tpm1.inlet.m_flow,multiSensor_Tpm1.inlet.r,multiSensor_Tpm1.inlet.state.T,multiSensor_Tpm1.inlet.state.p,multiSensor_Tpm1.m_flow,multiSensor_Tpm1.m_flow_0,multiSensor_Tpm1.outlet.m_flow,multiSensor_Tpm1.outlet.r,multiSensor_Tpm1.outlet.state.T,multiSensor_Tpm1.outlet.state.p,multiSensor_Tpm1.p,multiSensor_Tpm1.p_0,multiSensor_Tpm2.T,multiSensor_Tpm2.TC,multiSensor_Tpm2.T_0,multiSensor_Tpm2.digits,multiSensor_Tpm2.direct_T,multiSensor_Tpm2.direct_m_flow,multiSensor_Tpm2.direct_p,multiSensor_Tpm2.init,multiSensor_Tpm2.inlet.m_flow,multiSensor_Tpm2.inlet.r,multiSensor_Tpm2.inlet.state.T,multiSensor_Tpm2.inlet.state.p,multiSensor_Tpm2.m_flow,multiSensor_Tpm2.m_flow_0,multiSensor_Tpm2.outlet.m_flow,multiSensor_Tpm2.outlet.r,multiSensor_Tpm2.outlet.state.T,multiSensor_Tpm2.outlet.state.p,multiSensor_Tpm2.p,multiSensor_Tpm2.p_0,multiSensor_Tpm3.T,multiSensor_Tpm3.TC,multiSensor_Tpm3.T_0,multiSensor_Tpm3.digits,multiSensor_Tpm3.direct_T,multiSensor_Tpm3.direct_m_flow,multiSensor_Tpm3.direct_p,multiSensor_Tpm3.init,multiSensor_Tpm3.inlet.m_flow,multiSensor_Tpm3.inlet.r,multiSensor_Tpm3.inlet.state.T,multiSensor_Tpm3.inlet.state.d,multiSensor_Tpm3.inlet.state.h,multiSensor_Tpm3.inlet.state.p,multiSensor_Tpm3.inlet.state.phase,multiSensor_Tpm3.m_flow,multiSensor_Tpm3.m_flow_0,multiSensor_Tpm3.outlet.m_flow,multiSensor_Tpm3.outlet.r,multiSensor_Tpm3.outlet.state.T,multiSensor_Tpm3.outlet.state.d,multiSensor_Tpm3.outlet.state.h,multiSensor_Tpm3.outlet.state.p,multiSensor_Tpm3.outlet.state.phase,multiSensor_Tpm3.p,multiSensor_Tpm3.p_0,multiSensor_Tpm4.T,multiSensor_Tpm4.TC,multiSensor_Tpm4.T_0,multiSensor_Tpm4.digits,multiSensor_Tpm4.direct_T,multiSensor_Tpm4.direct_m_flow,multiSensor_Tpm4.direct_p,multiSensor_Tpm4.init,multiSensor_Tpm4.inlet.m_flow,multiSensor_Tpm4.inlet.r,multiSensor_Tpm4.inlet.state.T,multiSensor_Tpm4.inlet.state.d,multiSensor_Tpm4.inlet.state.h,multiSensor_Tpm4.inlet.state.p,multiSensor_Tpm4.inlet.state.phase,multiSensor_Tpm4.m_flow,multiSensor_Tpm4.m_flow_0,multiSensor_Tpm4.outlet.m_flow,multiSensor_Tpm4.outlet.r,multiSensor_Tpm4.outlet.state.T,multiSensor_Tpm4.outlet.state.d,multiSensor_Tpm4.outlet.state.h,multiSensor_Tpm4.outlet.state.p,multiSensor_Tpm4.outlet.state.phase,multiSensor_Tpm4.p,multiSensor_Tpm4.p_0,pump.J_p,pump.L,pump.Q_t,pump.W_t,pump.clip_p_out,der(pump.m_flow),pump.dh,pump.dp,pump.dr_corr,pump.eta,pump.h_in,pump.h_out,pump.initM_flow,pump.initOmega,der(pump.inlet.m_flow),pump.inlet.m_flow,pump.inlet.r,pump.inlet.state.T,pump.inlet.state.p,pump.m_acceleration_0,pump.m_flow,pump.m_flowStateSelect,pump.m_flow_0,pump.m_flow_reg,pump.max_rel_volume,pump.omega,pump.omegaStateSelect,pump.omega_0,pump.omega_dot_0,pump.omega_input,pump.omega_reg,pump.outlet.m_flow,pump.outlet.r,pump.outlet.state.T,pump.outlet.state.p,pump.outputQuantity,pump.p_in,pump.p_min,pump.p_out,pump.phi,pump.phi_0,pump.rho_min,pump.tau,pump.tau_normalized,pump.tau_st,pump.v_in,pump.v_out,refFlow_setPoint1.y,refFlow_setPoint2.y,reservoir.A,reservoir.A_surf,reservoir.L,reservoir.M,reservoir.Q_flow,reservoir.T_heatPort,reservoir.T_start,reservoir.U,reservoir.U_med,reservoir.V,reservoir.W_v,reservoir.d,reservoir.density_derp_h,der(reservoir.M),der(reservoir.U_med),der(reservoir.V),der(reservoir.m_flow_in),der(reservoir.m_flow_out),reservoir.g,reservoir.h_in,reservoir.h_out,reservoir.h_start,reservoir.height,reservoir.height_0,reservoir.height_min,reservoir.inlet.m_flow,reservoir.inlet.r,reservoir.inlet.state.T,reservoir.inlet.state.p,reservoir.k_volume_damping,reservoir.m_flow_assert,reservoir.m_flow_in,reservoir.m_flow_out,reservoir.medium.MM,reservoir.medium.R_s,reservoir.medium.T,reservoir.medium.T_degC,reservoir.medium.T_start,reservoir.medium.X[1],reservoir.medium.cp,reservoir.medium.d,der(reservoir.medium.d),der(reservoir.medium.h),der(reservoir.medium.u),reservoir.medium.h,reservoir.medium.p,reservoir.medium.p_bar,reservoir.medium.preferredMediumStates,reservoir.medium.standardOrderComponents,reservoir.medium.state.T,reservoir.medium.state.p,reservoir.medium.u,reservoir.outlet.m_flow,reservoir.outlet.r,reservoir.outlet.state.T,reservoir.outlet.state.p,reservoir.p_env,reservoir.p_env_par,reservoir.p_in,reservoir.p_start,reservoir.r,reservoir.r_damping,reservoir.r_in,reservoir.r_out,reservoir.state_in.T,reservoir.state_in.p,reservoir.state_out.T,reservoir.state_out.p,sink1.L,der(sink1.inlet.m_flow),sink1.inlet.m_flow,sink1.inlet.r,sink1.inlet.state.T,sink1.inlet.state.d,sink1.inlet.state.h,sink1.inlet.state.p,sink1.inlet.state.phase,sink1.p,sink1.p0,sink1.p0_par,sink1.p0_var,sink1.r,source1.L,source1.T0,source1.T0_par,source1.T0_var,source1.h0,source1.h0_par,der(source1.outlet.m_flow),source1.outlet.m_flow,source1.outlet.r,source1.outlet.state.T,source1.outlet.state.d,source1.outlet.state.h,source1.outlet.state.p,source1.outlet.state.phase,source1.p0,source1.p0_par Variables in the result:$cse9.T,$cse9.d,$cse9.h,$cse9.p,$cse9.phase,PI1.T,PI1.initType,PI1.k,PI1.u,PI1.x,PI1.x_start,PI1.y,PI1.y_start,PI2.T,PI2.initType,PI2.k,PI2.u,PI2.x,PI2.x_start,PI2.y,PI2.y_start,conductionElement.A,conductionElement.L,conductionElement.M,conductionElement.Q_flow,conductionElement.T,conductionElement.T_0,conductionElement.T_e,conductionElement.T_heatPort,conductionElement.U,conductionElement.U_internal,conductionElement.V,conductionElement.clip_p_out,conductionElement.deltaE_system,conductionElement.dp,conductionElement.dr_corr,conductionElement.h,conductionElement.h_0,conductionElement.h_in,conductionElement.h_in_norm,conductionElement.h_out,conductionElement.heatPort.Q_flow,conductionElement.heatPort.T,conductionElement.init,conductionElement.initM_flow,conductionElement.inlet.m_flow,conductionElement.inlet.r,conductionElement.inlet.state.T,conductionElement.inlet.state.p,conductionElement.k,conductionElement.k_internal,conductionElement.k_par,conductionElement.m_acceleration_0,conductionElement.m_flow,conductionElement.m_flowStateSelect,conductionElement.m_flow_0,conductionElement.m_flow_assert,conductionElement.outlet.m_flow,conductionElement.outlet.r,conductionElement.outlet.state.T,conductionElement.outlet.state.p,conductionElement.p_in,conductionElement.p_min,conductionElement.p_out,conductionElement.rho,conductionElement.rho_min,conductionElement.state.T,conductionElement.state.p,der(PI1.x),der(PI2.x),der(conductionElement.h),der(evaporator.thermalElementA[10].h),der(evaporator.thermalElementA[1].h),der(evaporator.thermalElementA[2].h),der(evaporator.thermalElementA[3].h),der(evaporator.thermalElementA[4].h),der(evaporator.thermalElementA[5].h),der(evaporator.thermalElementA[6].h),der(evaporator.thermalElementA[7].h),der(evaporator.thermalElementA[8].h),der(evaporator.thermalElementA[9].h),der(evaporator.thermalElementB[10].h),der(evaporator.thermalElementB[1].h),der(evaporator.thermalElementB[2].h),der(evaporator.thermalElementB[3].h),der(evaporator.thermalElementB[4].h),der(evaporator.thermalElementB[5].h),der(evaporator.thermalElementB[6].h),der(evaporator.thermalElementB[7].h),der(evaporator.thermalElementB[8].h),der(evaporator.thermalElementB[9].h),der(flowResistance2.inlet.m_flow),der(pump.m_flow),der(reservoir.M),der(reservoir.U_med),der(reservoir.V),der(reservoir.medium.d),der(reservoir.medium.h),der(reservoir.medium.u),differenceSensor_Tp.T,differenceSensor_Tp.TA,differenceSensor_Tp.TB,differenceSensor_Tp.TC,differenceSensor_Tp.T_0,differenceSensor_Tp.T_out,differenceSensor_Tp.digits,differenceSensor_Tp.direct_T,differenceSensor_Tp.direct_p,differenceSensor_Tp.init,differenceSensor_Tp.inletA.m_flow,differenceSensor_Tp.inletA.r,differenceSensor_Tp.inletA.state.T,differenceSensor_Tp.inletA.state.p,differenceSensor_Tp.inletB.m_flow,differenceSensor_Tp.inletB.r,differenceSensor_Tp.inletB.state.T,differenceSensor_Tp.inletB.state.p,differenceSensor_Tp.p,differenceSensor_Tp.pA,differenceSensor_Tp.pB,differenceSensor_Tp.p_0,dropOfCommons.L,dropOfCommons.assertionLevel,dropOfCommons.g,dropOfCommons.k_volume_damping,dropOfCommons.m_flow_reg,dropOfCommons.omega_reg,dropOfCommons.p_min,dropOfCommons.rho_min,evaporator.A,evaporator.G,evaporator.M_A,evaporator.M_B,evaporator.Q_flow_A,evaporator.Q_flow_B,evaporator.V_Hex,evaporator.deltaE_system,evaporator.inletA.m_flow,evaporator.inletA.r,evaporator.inletA.state.T,evaporator.inletA.state.p,evaporator.inletA_m_flow,evaporator.inletA_r,evaporator.inletA_state.T,evaporator.inletA_state.p,evaporator.inletB.m_flow,evaporator.inletB.r,evaporator.inletB.state.T,evaporator.inletB.state.d,evaporator.inletB.state.h,evaporator.inletB.state.p,evaporator.inletB.state.phase,evaporator.inletB_m_flow,evaporator.inletB_r,evaporator.inletB_state.T,evaporator.inletB_state.d,evaporator.inletB_state.h,evaporator.inletB_state.p,evaporator.inletB_state.phase,evaporator.k_wall,evaporator.m_flow_0_A,evaporator.m_flow_0_B,evaporator.m_flow_assert,evaporator.nCells,evaporator.nCellsParallel,evaporator.outletA.m_flow,evaporator.outletA.r,evaporator.outletA.state.T,evaporator.outletA.state.p,evaporator.outletA_m_flow,evaporator.outletA_r,evaporator.outletA_state.T,evaporator.outletA_state.p,evaporator.outletB.m_flow,evaporator.outletB.r,evaporator.outletB.state.T,evaporator.outletB.state.d,evaporator.outletB.state.h,evaporator.outletB.state.p,evaporator.outletB.state.phase,evaporator.outletB_m_flow,evaporator.outletB_r,evaporator.outletB_state.T,evaporator.outletB_state.d,evaporator.outletB_state.h,evaporator.outletB_state.p,evaporator.outletB_state.phase,evaporator.summary.Q_flow_A,evaporator.summary.Q_flow_B,evaporator.summary.Tin_A,evaporator.summary.Tin_B,evaporator.summary.Tout_A,evaporator.summary.Tout_B,evaporator.summary.dT_A,evaporator.summary.dT_B,evaporator.summary.dh_A,evaporator.summary.dh_B,evaporator.summary.efficiency,evaporator.summary.hin_A,evaporator.summary.hin_B,evaporator.summary.hout_A,evaporator.summary.hout_B,evaporator.thermalConductor[10].G,evaporato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[Calling sys.exit(0), Time elapsed: 58.52582130895462]