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 0.001455/0.001455, allocations: 105.5 kB / 18.95 MB, free: 1.184 MB / 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 0.001597/0.001597, allocations: 219.8 kB / 22.25 MB, free: 3.566 MB / 13.93 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 1.608/1.608, allocations: 230.6 MB / 256 MB, free: 9.602 MB / 202.7 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 1.121/1.121, allocations: 154.1 MB / 466.6 MB, free: 3.285 MB / 362.7 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 0.002804/0.002804, allocations: 83.88 kB / 0.6445 GB, free: 27.57 MB / 490.7 MB Notification: Performance of FrontEnd - Absyn->SCode: time 0.1702/0.173, allocations: 88.76 MB / 0.7312 GB, free: 2.605 MB / 0.5417 GB Notification: Performance of NFInst.instantiate(ThermofluidStream.Media.additionalMedia.Incompressible.Tests.TestLiqLoopJP8): time 0.5809/0.7539, allocations: 118.8 MB / 0.8472 GB, free: 4.305 MB / 0.6355 GB Notification: Performance of NFInst.instExpressions: time 0.06912/0.823, allocations: 54.59 MB / 0.9005 GB, free: 8.02 MB / 0.6511 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.002921/0.8259, allocations: 98.38 kB / 0.9006 GB, free: 7.965 MB / 0.6511 GB Notification: Performance of NFTyping.typeComponents: time 0.003549/0.8295, allocations: 0.9592 MB / 0.9015 GB, free: 7.469 MB / 0.6511 GB Notification: Performance of NFTyping.typeBindings: time 0.0192/0.8487, allocations: 5.213 MB / 0.9066 GB, free: 4.781 MB / 0.6511 GB Notification: Performance of NFTyping.typeClassSections: time 0.02135/0.87, allocations: 6.428 MB / 0.9129 GB, free: 500 kB / 0.6511 GB Notification: Performance of NFFlatten.flatten: time 0.01161/0.8816, allocations: 9.115 MB / 0.9218 GB, free: 11 MB / 0.6667 GB Notification: Performance of NFFlatten.resolveConnections: time 0.002078/0.8837, allocations: 0.9524 MB / 0.9227 GB, free: 10.38 MB / 0.6667 GB Notification: Performance of NFEvalConstants.evaluate: time 0.08313/0.9668, allocations: 44.74 MB / 0.9664 GB, free: 15.71 MB / 0.7136 GB Notification: Performance of NFSimplifyModel.simplify: time 0.008951/0.9758, allocations: 4.004 MB / 0.9703 GB, free: 11.69 MB / 0.7136 GB Notification: Performance of NFPackage.collectConstants: time 0.002227/0.978, allocations: 0.5508 MB / 0.9709 GB, free: 11.14 MB / 0.7136 GB Notification: Performance of NFFlatten.collectFunctions: time 0.04393/1.022, allocations: 17.36 MB / 0.9878 GB, free: 9.742 MB / 0.7292 GB Notification: Performance of NFScalarize.scalarize: time 0.002913/1.025, allocations: 1.319 MB / 0.9891 GB, free: 8.418 MB / 0.7292 GB Notification: Performance of NFVerifyModel.verify: time 0.006516/1.031, allocations: 2.684 MB / 0.9917 GB, free: 5.723 MB / 0.7292 GB Notification: Performance of NFConvertDAE.convert: time 0.07929/1.111, allocations: 30.23 MB / 1.021 GB, free: 7.438 MB / 0.7605 GB Notification: Performance of FrontEnd - DAE generated: time 6.202e-06/1.111, allocations: 0 / 1.021 GB, free: 7.438 MB / 0.7605 GB Notification: Performance of FrontEnd: time 1.733e-06/1.111, allocations: 0 / 1.021 GB, free: 7.438 MB / 0.7605 GB Notification: Performance of Transformations before backend: time 0.0003251/1.111, allocations: 0 / 1.021 GB, free: 7.438 MB / 0.7605 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 0.03328/1.144, allocations: 8.37 MB / 1.029 GB, free: 14.98 MB / 0.7761 GB Notification: Performance of prepare preOptimizeDAE: time 4.853e-05/1.144, allocations: 16.02 kB / 1.029 GB, free: 14.97 MB / 0.7761 GB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.02296/1.167, allocations: 2.743 MB / 1.032 GB, free: 12.22 MB / 0.7761 GB Notification: Performance of preOpt evaluateParameters (simulation): time 0.01062/1.178, allocations: 3.784 MB / 1.036 GB, free: 8.363 MB / 0.7761 GB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0006332/1.179, allocations: 387.5 kB / 1.036 GB, free: 7.969 MB / 0.7761 GB Notification: Performance of preOpt expandDerOperator (simulation): time 0.00212/1.181, allocations: 423.9 kB / 1.037 GB, free: 7.555 MB / 0.7761 GB Notification: Performance of preOpt clockPartitioning (simulation): time 0.02447/1.205, allocations: 8.712 MB / 1.045 GB, free: 14.53 MB / 0.7917 GB Notification: Performance of preOpt findStateOrder (simulation): time 0.0001579/1.205, allocations: 0 / 1.045 GB, free: 14.53 MB / 0.7917 GB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.001506/1.207, allocations: 173.1 kB / 1.045 GB, free: 14.36 MB / 0.7917 GB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.0001829/1.207, allocations: 139.8 kB / 1.045 GB, free: 14.23 MB / 0.7917 GB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.02424/1.231, allocations: 8.747 MB / 1.054 GB, free: 5.469 MB / 0.7917 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 0.05814/1.289, allocations: 21.47 MB / 1.075 GB, free: 15.41 MB / 0.823 GB Notification: Performance of preOpt comSubExp (simulation): time 0.01603/1.305, allocations: 5.817 MB / 1.081 GB, free: 9.586 MB / 0.823 GB Notification: Performance of preOpt resolveLoops (simulation): time 0.009814/1.315, allocations: 3.943 MB / 1.084 GB, free: 5.637 MB / 0.823 GB Notification: Performance of preOpt evalFunc (simulation): time 0.005187/1.32, allocations: 1.242 MB / 1.086 GB, free: 4.395 MB / 0.823 GB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.0001847/1.321, allocations: 89.77 kB / 1.086 GB, free: 4.297 MB / 0.823 GB Notification: Performance of pre-optimization done (n=499): time 2.473e-05/1.321, allocations: 0 / 1.086 GB, free: 4.297 MB / 0.823 GB Notification: Performance of matching and sorting (n=505): time 0.07459/1.395, allocations: 22.72 MB / 1.108 GB, free: 13.47 MB / 0.8542 GB Notification: Performance of inlineWhenForInitialization (initialization): time 0.0001416/1.395, allocations: 146.1 kB / 1.108 GB, free: 13.3 MB / 0.8542 GB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.007031/1.402, allocations: 3.211 MB / 1.111 GB, free: 10.11 MB / 0.8542 GB Notification: Performance of collectPreVariables (initialization): time 0.001372/1.404, allocations: 101.7 kB / 1.111 GB, free: 10 MB / 0.8542 GB Notification: Performance of collectInitialEqns (initialization): time 0.002492/1.406, allocations: 2.054 MB / 1.113 GB, free: 7.934 MB / 0.8542 GB Notification: Performance of collectInitialBindings (initialization): time 0.003088/1.409, allocations: 1.781 MB / 1.115 GB, free: 6.137 MB / 0.8542 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.004051/1.413, allocations: 1.004 MB / 1.116 GB, free: 5.121 MB / 0.8542 GB Notification: Performance of setup shared object (initialization): time 0.0001756/1.414, allocations: 305.1 kB / 1.116 GB, free: 4.82 MB / 0.8542 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.009375/1.423, allocations: 3.819 MB / 1.12 GB, free: 0.9805 MB / 0.8542 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.01099/1.434, allocations: 4.628 MB / 1.125 GB, free: 12.07 MB / 0.8698 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 0.02285/1.457, allocations: 8.899 MB / 1.133 GB, free: 2.859 MB / 0.8698 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 4.085e-05/1.457, allocations: 4 kB / 1.133 GB, free: 2.855 MB / 0.8698 GB Notification: Performance of matching and sorting (n=623) (initialization): time 0.02987/1.487, allocations: 10.04 MB / 1.143 GB, free: 8.688 MB / 0.8855 GB Notification: Performance of prepare postOptimizeDAE: time 5.499e-05/1.487, allocations: 16.78 kB / 1.143 GB, free: 8.672 MB / 0.8855 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.02491/1.512, allocations: 8.99 MB / 1.152 GB, free: 15.56 MB / 0.9011 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.003298/1.515, allocations: 0.9796 MB / 1.153 GB, free: 14.54 MB / 0.9011 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.006665/1.522, allocations: 1.221 MB / 1.154 GB, free: 13.32 MB / 0.9011 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.387/1.909, allocations: 22.52 MB / 1.176 GB, free: 313.2 MB / 0.9011 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.005924/1.914, allocations: 408.1 kB / 1.176 GB, free: 313.2 MB / 0.9011 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.001683/1.916, allocations: 282 kB / 1.177 GB, free: 313.2 MB / 0.9011 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 0.01274/1.929, allocations: 5.264 MB / 1.182 GB, free: 312.5 MB / 0.9011 GB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.01059/1.939, allocations: 4.601 MB / 1.186 GB, free: 310.3 MB / 0.9011 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 0.01892/1.958, allocations: 8.858 MB / 1.195 GB, free: 306.6 MB / 0.9011 GB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 4.569e-05/1.958, allocations: 5.656 kB / 1.195 GB, free: 306.6 MB / 0.9011 GB Notification: Performance of matching and sorting (n=623) (initialization_lambda0): time 0.02392/1.982, allocations: 9.992 MB / 1.205 GB, free: 303.1 MB / 0.9011 GB Notification: Performance of prepare postOptimizeDAE: time 5.248e-05/1.982, allocations: 14.16 kB / 1.205 GB, free: 303.1 MB / 0.9011 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.01875/2.001, allocations: 8.952 MB / 1.213 GB, free: 299.9 MB / 0.9011 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.00242/2.004, allocations: 0.9772 MB / 1.214 GB, free: 299.6 MB / 0.9011 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.00588/2.009, allocations: 1.216 MB / 1.216 GB, free: 299.5 MB / 0.9011 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.01592/2.025, allocations: 22.53 MB / 1.238 GB, free: 277.3 MB / 0.9011 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.007304/2.033, allocations: 401.8 kB / 1.238 GB, free: 276.9 MB / 0.9011 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.002235/2.035, allocations: 279.8 kB / 1.238 GB, free: 276.6 MB / 0.9011 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 0.003396/2.038, allocations: 0.5819 MB / 1.239 GB, free: 276 MB / 0.9011 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.002529/2.041, allocations: 474 kB / 1.239 GB, free: 275.8 MB / 0.9011 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.0294/2.07, allocations: 15.07 MB / 1.254 GB, free: 261.1 MB / 0.9011 GB Notification: Performance of postOpt inlineArrayEqn (simulation): time 0.02083/2.091, allocations: 9.737 MB / 1.263 GB, free: 251.3 MB / 0.9011 GB Notification: Performance of postOpt constantLinearSystem (simulation): time 7.543e-05/2.091, allocations: 15.98 kB / 1.264 GB, free: 251.3 MB / 0.9011 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 0.0001851/2.091, allocations: 31.89 kB / 1.264 GB, free: 251.3 MB / 0.9011 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 0.03729/2.129, allocations: 17.33 MB / 1.28 GB, free: 234.1 MB / 0.9011 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 0.01846/2.147, allocations: 9.432 MB / 1.29 GB, free: 224.6 MB / 0.9011 GB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.005058/2.152, allocations: 1.085 MB / 1.291 GB, free: 223.6 MB / 0.9011 GB Notification: Performance of postOpt tearingSystem (simulation): time 0.002745/2.155, allocations: 1.019 MB / 1.292 GB, free: 222.5 MB / 0.9011 GB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.00118/2.156, allocations: 175.8 kB / 1.292 GB, free: 222.3 MB / 0.9011 GB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.01493/2.171, allocations: 23.06 MB / 1.314 GB, free: 198 MB / 0.9011 GB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 3.105e-06/2.171, allocations: 0 / 1.314 GB, free: 198 MB / 0.9011 GB Notification: Performance of postOpt symbolicJacobian (simulation): time 0.02867/2.2, allocations: 15.05 MB / 1.329 GB, free: 182.9 MB / 0.9011 GB Notification: Performance of postOpt removeConstants (simulation): time 0.004003/2.204, allocations: 1.344 MB / 1.33 GB, free: 181.6 MB / 0.9011 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.001915/2.206, allocations: 112 kB / 1.331 GB, free: 181.4 MB / 0.9011 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.005075/2.211, allocations: 446 kB / 1.331 GB, free: 181 MB / 0.9011 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.001467/2.212, allocations: 383.3 kB / 1.331 GB, free: 180.6 MB / 0.9011 GB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.001171/2.213, allocations: 203.8 kB / 1.332 GB, free: 180.4 MB / 0.9011 GB Notification: Performance of sorting global known variables: time 0.003742/2.217, allocations: 2.178 MB / 1.334 GB, free: 178.3 MB / 0.9011 GB Notification: Performance of sort global known variables: time 7e-08/2.217, allocations: 0 / 1.334 GB, free: 178.3 MB / 0.9011 GB Notification: Performance of remove unused functions: time 0.02061/2.238, allocations: 3.566 MB / 1.337 GB, free: 174.9 MB / 0.9011 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 0.05051/2.288, allocations: 12.69 MB / 1.35 GB, free: 162.8 MB / 0.9011 GB Notification: Performance of simCode: created initialization part: time 0.03183/2.32, allocations: 16.73 MB / 1.366 GB, free: 145.6 MB / 0.9011 GB Notification: Performance of simCode: created event and clocks part: time 1.06e-05/2.32, allocations: 5 kB / 1.366 GB, free: 145.6 MB / 0.9011 GB Notification: Performance of simCode: created simulation system equations: time 0.01098/2.331, allocations: 6.432 MB / 1.372 GB, free: 139 MB / 0.9011 GB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.01424/2.345, allocations: 2.549 MB / 1.375 GB, free: 136.5 MB / 0.9011 GB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.03126/2.376, allocations: 15.21 MB / 1.389 GB, free: 121.3 MB / 0.9011 GB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.005051/2.382, allocations: 3.273 MB / 1.393 GB, free: 118 MB / 0.9011 GB Notification: Performance of simCode: alias equations: time 0.01233/2.394, allocations: 5.649 MB / 1.398 GB, free: 112.5 MB / 0.9011 GB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.002953/2.397, allocations: 0.5381 MB / 1.399 GB, free: 112 MB / 0.9011 GB Notification: Performance of SimCode: time 1.192e-06/2.397, allocations: 0 / 1.399 GB, free: 112 MB / 0.9011 GB Notification: Performance of Templates: time 0.5809/2.978, allocations: 177.6 MB / 1.572 GB, free: 272.3 MB / 0.9011 GB " [Timeout remaining time 657] 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/jenkins1/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: 66.55345763009973]