Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.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 0.001738/0.001738, allocations: 88.72 kB / 19.44 MB, free: 356 kB / 13.93 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo): time 0.002056/0.002056, allocations: 157.7 kB / 22.75 MB, free: 1.684 MB / 18.57 MB " [Timeout remaining time 180] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo): time 1.458/1.458, allocations: 177.1 MB / 203.1 MB, free: 5.598 MB / 186.7 MB " [Timeout remaining time 178] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/package.mo): time 0.9971/0.9971, allocations: 118.6 MB / 378.2 MB, free: 1.473 MB / 346.7 MB " [Timeout remaining time 179] Using package ThermofluidStream with version 1.4.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/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.Boundaries.Tests.TankSelfDraining2,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|Time|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.H0|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Hf|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.MM|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.R_s|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Tlimit|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.3.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.4.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.5.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.6.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.7.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.2.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.3.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.4.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.5.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.6.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.7.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.H0|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Hf|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.MM|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.R_s|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Tlimit|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.3.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.4.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.5.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.6.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.7.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.3.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.4.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.5.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.6.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.7.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow.2.|acceleration.a.1.|acceleration.a.2.|acceleration.a.3.|acceleration.ax|acceleration.ay|acceleration.az|acceleration.setFromInputs|checkValve.L|checkValve.Xi_in.1.|checkValve.Xi_in.2.|checkValve.Xi_out.1.|checkValve.Xi_out.2.|checkValve.clip_p_out|checkValve.dp|checkValve.dr_corr|checkValve.h_in|checkValve.h_out|checkValve.initM_flow|der.checkValve.inlet.m_flow.|checkValve.inlet.m_flow|checkValve.inlet.r|checkValve.inlet.state.T|checkValve.inlet.state.X.1.|checkValve.inlet.state.X.2.|checkValve.inlet.state.p|checkValve.m_acceleration_0|checkValve.m_flow|checkValve.m_flowStateSelect|checkValve.m_flow_0|checkValve.m_flow_ref|checkValve.outlet.m_flow|checkValve.outlet.r|checkValve.outlet.state.T|checkValve.outlet.state.X.1.|checkValve.outlet.state.X.2.|checkValve.outlet.state.p|checkValve.p_in|checkValve.p_min|checkValve.p_out|checkValve.p_ref|dropOfCommons.L|dropOfCommons.assertionLevel|dropOfCommons.g|dropOfComm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translateModel(ThermofluidStream.Boundaries.Tests.TankSelfDraining2,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|Time|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.H0|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Hf|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.MM|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.R_s|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Tlimit|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.3.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.4.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.5.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.6.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh.7.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.2.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.3.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.4.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.5.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.6.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow.7.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.H0|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Hf|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.MM|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.R_s|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Tlimit|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.3.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.4.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.5.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.6.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh.7.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.3.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.4.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.5.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.6.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow.7.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh.2.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow.1.|_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow.2.|acceleration.a.1.|acceleration.a.2.|acceleration.a.3.|acceleration.ax|acceleration.ay|acceleration.az|acceleration.setFromInputs|checkValve.L|checkValve.Xi_in.1.|checkValve.Xi_in.2.|checkValve.Xi_out.1.|checkValve.Xi_out.2.|checkValve.clip_p_out|checkValve.dp|checkValve.dr_corr|checkValve.h_in|checkValve.h_out|checkValve.initM_flow|der.checkValve.inlet.m_flow.|checkValve.inlet.m_flow|checkValve.inlet.r|checkValve.inlet.state.T|checkValve.inlet.state.X.1.|checkValve.inlet.state.X.2.|checkValve.inlet.state.p|checkValve.m_acceleration_0|checkValve.m_flow|checkValve.m_flowStateSelect|checkValve.m_flow_0|checkValve.m_flow_ref|checkValve.outlet.m_flow|checkValve.outlet.r|checkValve.outlet.state.T|checkValve.outlet.state.X.1.|checkValve.outlet.state.X.2.|checkValve.outlet.state.p|checkValve.p_in|checkValve.p_min|checkValve.p_out|checkValve.p_ref|dropOfCommons.L|dropOfCommons.assertionLevel|dropOfCommons.g|dropOfComm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low.|sink1.inlet.m_flow|sink1.inlet.r|sink1.inlet.state.T|sink1.inlet.state.X.1.|sink1.inlet.state.X.2.|sink1.inlet.state.p|sink1.p|sink1.p0|sink1.p0_par|sink1.r|sink2.L|der.sink2.inlet.m_flow.|sink2.inlet.m_flow|sink2.inlet.r|sink2.inlet.state.T|sink2.inlet.state.X.1.|sink2.inlet.state.X.2.|sink2.inlet.state.p|sink2.p|sink2.p0|sink2.p0_par|sink2.r|source.L|source.T0|source.T0_par|source.Xi0.1.|source.Xi0.2.|source.Xi0_par.1.|source.Xi0_par.2.|source.h0|source.h0_par|der.source.outlet.m_flow.|source.outlet.m_flow|source.outlet.r|source.outlet.state.T|source.outlet.state.X.1.|source.outlet.state.X.2.|source.outlet.state.p|source.p0|source.p0_par|source1.L|source1.T0|source1.T0_par|source1.Xi0.1.|source1.Xi0.2.|source1.Xi0_par.1.|source1.Xi0_par.2.|source1.h0|source1.h0_par|der.source1.outlet.m_flow.|source1.outlet.m_flow|source1.outlet.r|source1.outlet.state.T|source1.outlet.state.X.1.|source1.outlet.state.X.2.|source1.outlet.state.p|source1.p0|source1.p0_par|tank.A|tank.Area|tank.AxLimit|tank.AzLimit|tank.D|tank.D1|tank.D2|tank.D3|tank.D4|tank.K|tank.L|tank.M|tank.MXi.1.|tank.MXi.2.|tank.M_liq_start|tank.M_outlets|tank.N_inlets|tank.Q_flow|tank.T_heatPort|tank.T_start|tank.ThresholdEmpty|tank.ThresholdFull|tank.U|tank.U_med|tank.V|tank.V_liquid|tank.V_ref|tank.W_v|tank.Xi_0.1.|tank.Xi_0.2.|tank.Xi_in.1,1.|tank.Xi_in.1,2.|tank.Xi_in.2,1.|tank.Xi_in.2,2.|tank.Xi_out.1,1.|tank.Xi_out.1,2.|tank.Xi_out.2,1.|tank.Xi_out.2,2.|tank.centerOfMass.1.|tank.centerOfMass.2.|tank.centerOfMass.3.|tank.d|tank.density_derp_h|der.tank.M.|der.tank.MXi.1..|der.tank.MXi.2..|der.tank.U_med.|tank.eps_geometry|tank.fEmpty|tank.fFull|tank.gasDensity|tank.h_in.1.|tank.h_in.2.|tank.h_out.1.|tank.h_out.2.|tank.h_start|tank.initialize_LiquidMass|tank.initialize_Xi|tank.initialize_energy|tank.initialize_pressure|tank.inletPositions.1,1.|tank.inletPositions.1,2.|tank.inletPositions.1,3.|tank.inletPositions.2,1.|tank.inletPositions.2,2.|tank.inletPositions.2,3.|der.tank.inlet.1..m_flow.|tank.inlet.1..m_flow|tank.inlet.1..r|tank.inlet.1..state.T|tank.inlet.1..state.X.1.|tank.inlet.1..state.X.2.|tank.inlet.1..state.p|der.tank.inlet.2..m_flow.|tank.inlet.2..m_flow|tank.inlet.2..r|tank.inlet.2..state.T|tank.inlet.2..state.X.1.|tank.inlet.2..state.X.2.|tank.inlet.2..state.p|tank.k_volume_damping|tank.liquidDensity|tank.m_flow_assert|tank.m_flow_in.1.|tank.m_flow_in.2.|tank.m_flow_out.1.|tank.m_flow_out.2.|tank.medium.MM|tank.medium.R_s|tank.medium.T|tank.medium.T_degC|tank.medium.X.1.|tank.medium.X.2.|tank.medium.Xi.1.|tank.medium.Xi.2.|tank.medium.d|tank.medium.h|tank.medium.p|tank.medium.p_bar|tank.medium.preferredMediumStates|tank.medium.standardOrderComponents|tank.medium.state.T|tank.medium.state.X.1.|tank.medium.state.X.2.|tank.medium.state.p|tank.medium.u|tank.normAcc.1.|tank.normAcc.2.|tank.normAcc.3.|tank.nx|tank.nz|tank.outletPositions.1,1.|tank.outletPositions.1,2.|tank.outletPositions.1,3.|tank.outletPositions.2,1.|tank.outletPositions.2,2.|tank.outletPositions.2,3.|tank.outletTransition|der.tank.outlet.1..m_flow.|tank.outlet.1..m_flow|tank.outlet.1..r|tank.outlet.1..state.T|tank.outlet.1..state.X.1.|tank.outlet.1..state.X.2.|tank.outlet.1..state.p|der.tank.outlet.2..m_flow.|tank.outlet.2..m_flow|tank.outlet.2..r|tank.outlet.2..state.T|tank.outlet.2..state.X.1.|tank.outlet.2..state.X.2.|tank.outlet.2..state.p|tank.p_in.1.|tank.p_in.2.|tank.p_ref|tank.p_start|tank.r.1.|tank.r.2.|tank.r_damping|tank.shiftOutlet.1.|tank.shiftOutlet.2.|tank.state_out.1..T|tank.state_out.1..X.1.|tank.state_out.1..X.2.|tank.state_out.1..p|tank.state_out.2..T|tank.state_out.2..X.1.|tank.state_out.2..X.2.|tank.state_out.2..p|tank.staticHeadInlets.1.|tank.staticHeadInlets.2.|tank.staticHeadInlets_Pa_relative.1.|tank.staticHeadInlets_Pa_relative.2.|tank.staticHeadOutlets.1.|tank.staticHeadOutlets.2.|tank.staticHeadOutlets_Pa_relative.1.|tank.staticHeadOutlets_Pa_relative.2.|tank.tankCenter.1.|tank.tankCenter.2.|tank.tankCenter.3.|tank.useHeatport|tank.usePreferredMediumStates|tank.use_hstart|tank.xLength|tank.yLength|tank.zLength",fileNamePrefix="ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2") [Timeout 660] "Notification: Performance of FrontEnd - loaded program: time 1.583e-06/1.583e-06, allocations: 0 / 482.9 MB, free: 8.215 MB / 410.7 MB Notification: Performance of FrontEnd - Absyn->SCode: time 2.637e-05/2.795e-05, allocations: 3.188 kB / 482.9 MB, free: 8.211 MB / 410.7 MB Notification: Performance of NFInst.instantiate(ThermofluidStream.Boundaries.Tests.TankSelfDraining2): time 0.5412/0.5412, allocations: 253.2 MB / 0.7189 GB, free: 9.523 MB / 0.5573 GB Notification: Performance of NFInst.instExpressions: time 0.00729/0.5485, allocations: 5.874 MB / 0.7246 GB, free: 9.336 MB / 0.5573 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.0007264/0.5492, allocations: 60.22 kB / 0.7247 GB, free: 9.336 MB / 0.5573 GB Notification: Performance of NFTyping.typeComponents: time 0.001755/0.551, allocations: 0.7332 MB / 0.7254 GB, free: 9.246 MB / 0.5573 GB Notification: Performance of NFTyping.typeBindings: time 0.007818/0.5588, allocations: 3.86 MB / 0.7292 GB, free: 8.555 MB / 0.5573 GB Notification: Performance of NFTyping.typeClassSections: time 0.004127/0.5629, allocations: 1.99 MB / 0.7311 GB, free: 8.316 MB / 0.5573 GB Notification: Performance of NFFlatten.flatten: time 0.00229/0.5652, allocations: 2.697 MB / 0.7338 GB, free: 7.73 MB / 0.5573 GB Notification: Performance of NFFlatten.resolveConnections: time 0.000332/0.5656, allocations: 210.9 kB / 0.734 GB, free: 7.684 MB / 0.5573 GB Notification: Performance of NFEvalConstants.evaluate: time 0.004292/0.5699, allocations: 2.822 MB / 0.7367 GB, free: 7.07 MB / 0.5573 GB Notification: Performance of NFSimplifyModel.simplify: time 0.001102/0.571, allocations: 1.042 MB / 0.7377 GB, free: 6.852 MB / 0.5573 GB Notification: Performance of NFPackage.collectConstants: time 0.0002161/0.5712, allocations: 156.6 kB / 0.7379 GB, free: 6.852 MB / 0.5573 GB Notification: Performance of NFFlatten.collectFunctions: time 0.01017/0.5813, allocations: 6.659 MB / 0.7444 GB, free: 4.395 MB / 0.5573 GB Notification: Performance of NFScalarize.scalarize: time 0.0005277/0.5819, allocations: 0.6454 MB / 0.745 GB, free: 3.953 MB / 0.5573 GB Notification: Performance of NFVerifyModel.verify: time 0.000798/0.5827, allocations: 0.6488 MB / 0.7457 GB, free: 3.637 MB / 0.5573 GB Notification: Performance of NFConvertDAE.convert: time 0.006344/0.589, allocations: 4.268 MB / 0.7498 GB, free: 1.469 MB / 0.5573 GB Notification: Performance of FrontEnd - DAE generated: time 4.168e-06/0.589, allocations: 2.938 kB / 0.7498 GB, free: 1.469 MB / 0.5573 GB Notification: Performance of FrontEnd: time 1.042e-06/0.589, allocations: 0 / 0.7498 GB, free: 1.469 MB / 0.5573 GB Notification: Performance of Transformations before backend: time 1.697e-05/0.589, allocations: 0 / 0.7498 GB, free: 1.469 MB / 0.5573 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 288 * Number of variables: 288 Notification: Performance of Generate backend data structure: time 0.006843/0.5959, allocations: 2.815 MB / 0.7526 GB, free: 15.65 MB / 0.573 GB Notification: Performance of prepare preOptimizeDAE: time 3.168e-05/0.5959, allocations: 8.375 kB / 0.7526 GB, free: 15.65 MB / 0.573 GB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.001858/0.5978, allocations: 477.8 kB / 0.753 GB, free: 15.43 MB / 0.573 GB Notification: Performance of preOpt evaluateParameters (simulation): time 0.002123/0.5999, allocations: 1.086 MB / 0.7541 GB, free: 14.72 MB / 0.573 GB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0007174/0.6006, allocations: 0.6219 MB / 0.7547 GB, free: 14.07 MB / 0.573 GB Notification: Performance of preOpt expandDerOperator (simulation): time 0.0002428/0.6008, allocations: 120.2 kB / 0.7548 GB, free: 14.03 MB / 0.573 GB Notification: Performance of preOpt clockPartitioning (simulation): time 0.004335/0.6052, allocations: 2.399 MB / 0.7572 GB, free: 12.5 MB / 0.573 GB Notification: Performance of preOpt findStateOrder (simulation): time 3.05e-05/0.6052, allocations: 3.984 kB / 0.7572 GB, free: 12.5 MB / 0.573 GB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.0001473/0.6054, allocations: 42.89 kB / 0.7572 GB, free: 12.47 MB / 0.573 GB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.0003796/0.6057, allocations: 147.3 kB / 0.7574 GB, free: 12.42 MB / 0.573 GB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.004632/0.6104, allocations: 2.279 MB / 0.7596 GB, free: 11.37 MB / 0.573 GB Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.0114/0.6218, allocations: 5.629 MB / 0.7651 GB, free: 7.656 MB / 0.573 GB Notification: Performance of preOpt comSubExp (simulation): time 0.003563/0.6253, allocations: 1.329 MB / 0.7664 GB, free: 6.324 MB / 0.573 GB Notification: Performance of preOpt resolveLoops (simulation): time 0.002693/0.628, allocations: 1.068 MB / 0.7674 GB, free: 5.258 MB / 0.573 GB Notification: Performance of preOpt evalFunc (simulation): time 0.0008302/0.6289, allocations: 276.8 kB / 0.7677 GB, free: 4.988 MB / 0.573 GB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 5.826e-05/0.6289, allocations: 51.55 kB / 0.7677 GB, free: 4.926 MB / 0.573 GB Notification: Performance of pre-optimization done (n=141): time 3.496e-06/0.6289, allocations: 0 / 0.7677 GB, free: 4.926 MB / 0.573 GB Notification: Performance of matching and sorting (n=141): time 0.01042/0.6393, allocations: 3.631 MB / 0.7713 GB, free: 1.293 MB / 0.573 GB Notification: Performance of inlineWhenForInitialization (initialization): time 6.046e-05/0.6394, allocations: 66.94 kB / 0.7713 GB, free: 1.219 MB / 0.573 GB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.001272/0.6407, allocations: 0.8508 MB / 0.7722 GB, free: 356 kB / 0.573 GB Notification: Performance of collectPreVariables (initialization): time 0.0001598/0.6408, allocations: 49.7 kB / 0.7722 GB, free: 300 kB / 0.573 GB Notification: Performance of collectInitialEqns (initialization): time 0.0006448/0.6415, allocations: 0.5582 MB / 0.7728 GB, free: 15.77 MB / 0.5886 GB Notification: Performance of collectInitialBindings (initialization): time 0.0005431/0.642, allocations: 0.497 MB / 0.7732 GB, free: 15.29 MB / 0.5886 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.0006067/0.6426, allocations: 265.7 kB / 0.7735 GB, free: 15.02 MB / 0.5886 GB Notification: Performance of setup shared object (initialization): time 0.0002197/0.6428, allocations: 357.9 kB / 0.7738 GB, free: 14.67 MB / 0.5886 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.00263/0.6455, allocations: 0.9863 MB / 0.7748 GB, free: 13.68 MB / 0.5886 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.003345/0.6488, allocations: 1.603 MB / 0.7764 GB, free: 11.93 MB / 0.5886 GB Notification: Performance of analyzeInitialSystem (initialization): time 0.04527/0.6941, allocations: 8.335 MB / 0.7845 GB, free: 3.605 MB / 0.5886 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 5.551e-06/0.6941, allocations: 0 / 0.7845 GB, free: 3.605 MB / 0.5886 GB Notification: Performance of matching and sorting (n=159) (initialization): time 0.006814/0.7009, allocations: 2.576 MB / 0.787 GB, free: 1.031 MB / 0.5886 GB Notification: Performance of prepare postOptimizeDAE: time 1.986e-05/0.7009, allocations: 8 kB / 0.787 GB, free: 1.023 MB / 0.5886 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 1.337e-05/0.7009, allocations: 4 kB / 0.787 GB, free: 1.02 MB / 0.5886 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.0008458/0.7018, allocations: 193.9 kB / 0.7872 GB, free: 0.8203 MB / 0.5886 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.001396/0.7032, allocations: 264.5 kB / 0.7875 GB, free: 0.5742 MB / 0.5886 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.005856/0.709, allocations: 5.498 MB / 0.7928 GB, free: 10.69 MB / 0.6042 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.002131/0.7112, allocations: 291.1 kB / 0.7931 GB, free: 10.41 MB / 0.6042 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0002377/0.7114, allocations: 91.88 kB / 0.7932 GB, free: 10.32 MB / 0.6042 GB Warning: Assuming fixed start value for the following 4 variables: flowResistance1.inlet.m_flow:VARIABLE(flow=true min = -1e5 max = 1e5 unit = \"kg/s\" fixed = true ) \"Mass flow rate\" type: Real checkValve.inlet.m_flow:VARIABLE(flow=true min = -1e5 max = 1e5 unit = \"kg/s\" fixed = true ) \"Mass flow rate\" type: Real flowResistance3.inlet.m_flow:VARIABLE(flow=true min = -1e5 max = 1e5 unit = \"kg/s\" fixed = true ) \"Mass flow rate\" type: Real flowResistance2.inlet.m_flow:VARIABLE(flow=true min = -1e5 max = 1e5 unit = \"kg/s\" fixed = true ) \"Mass flow rate\" type: Real Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 10 * Number of states: 0 () * Number of discrete variables: 2 (tank.fEmpty,tank.fFull) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (131): * Single equations (assignments): 117 * Array equations: 6 * Algorithm blocks: 0 * Record equations: 4 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 4 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 4 systems {(1,2,100.0%), (1,3,100.0%), (1,2,100.0%), (1,2,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 0 systems Notification: Performance of prepare postOptimizeDAE: time 0.000871/0.7123, allocations: 372.1 kB / 0.7936 GB, free: 9.965 MB / 0.6042 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.0004887/0.7128, allocations: 171.1 kB / 0.7937 GB, free: 9.797 MB / 0.6042 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.008435/0.7212, allocations: 3.438 MB / 0.7971 GB, free: 6.348 MB / 0.6042 GB Notification: Performance of postOpt inlineArrayEqn (simulation): time 0.006199/0.7274, allocations: 2.37 MB / 0.7994 GB, free: 3.965 MB / 0.6042 GB Notification: Performance of postOpt constantLinearSystem (simulation): time 6.723e-06/0.7274, allocations: 0 / 0.7994 GB, free: 3.965 MB / 0.6042 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 2.506e-05/0.7274, allocations: 7.969 kB / 0.7994 GB, free: 3.957 MB / 0.6042 GB Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.01089/0.7383, allocations: 4.339 MB / 0.8036 GB, free: 15.61 MB / 0.6198 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 7.013e-06/0.7383, allocations: 0 / 0.8036 GB, free: 15.61 MB / 0.6198 GB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.001385/0.7397, allocations: 268.6 kB / 0.8039 GB, free: 15.36 MB / 0.6198 GB Notification: Performance of postOpt tearingSystem (simulation): time 0.001418/0.7411, allocations: 307.9 kB / 0.8042 GB, free: 15.05 MB / 0.6198 GB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.0001716/0.7413, allocations: 55.95 kB / 0.8042 GB, free: 14.99 MB / 0.6198 GB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.006223/0.7475, allocations: 6.102 MB / 0.8102 GB, free: 8.496 MB / 0.6198 GB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 1.452e-06/0.7475, allocations: 0 / 0.8102 GB, free: 8.496 MB / 0.6198 GB Notification: Performance of postOpt symbolicJacobian (simulation): time 0.01021/0.7577, allocations: 4.103 MB / 0.8142 GB, free: 4.367 MB / 0.6198 GB Notification: Performance of postOpt removeConstants (simulation): time 0.001007/0.7588, allocations: 382.5 kB / 0.8146 GB, free: 3.992 MB / 0.6198 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.0002282/0.759, allocations: 38.69 kB / 0.8146 GB, free: 3.957 MB / 0.6198 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.001466/0.7604, allocations: 135.8 kB / 0.8147 GB, free: 3.824 MB / 0.6198 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.0004124/0.7609, allocations: 161 kB / 0.8149 GB, free: 3.668 MB / 0.6198 GB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.0002343/0.7611, allocations: 98.58 kB / 0.815 GB, free: 3.574 MB / 0.6198 GB Notification: Performance of sorting global known variables: time 0.0009914/0.7621, allocations: 0.6315 MB / 0.8156 GB, free: 2.934 MB / 0.6198 GB Notification: Performance of sort global known variables: time 7.1e-08/0.7621, allocations: 0 / 0.8156 GB, free: 2.934 MB / 0.6198 GB Notification: Performance of remove unused functions: time 0.002967/0.7651, allocations: 1.021 MB / 0.8166 GB, free: 1.91 MB / 0.6198 GB Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 1 * Number of states: 8 (flowResistance2.inlet.m_flow,tank.M,tank.MXi[1],tank.MXi[2],tank.U_med,flowResistance3.inlet.m_flow,checkValve.inlet.m_flow,flowResistance1.inlet.m_flow) * Number of discrete variables: 2 (tank.fFull,tank.fEmpty) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (128): * Single equations (assignments): 114 * Array equations: 6 * Algorithm blocks: 0 * Record equations: 3 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 5 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 4 systems {(1,2,100.0%), (1,2,100.0%), (1,3,100.0%), (1,2,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 1 system {(2,3)} Notification: Performance of Backend phase and start with SimCode phase: time 0.002878/0.7679, allocations: 1.321 MB / 0.8179 GB, free: 0.6797 MB / 0.6198 GB Notification: Performance of simCode: created initialization part: time 0.006789/0.7747, allocations: 2.86 MB / 0.8207 GB, free: 13.78 MB / 0.6355 GB Notification: Performance of simCode: created event and clocks part: time 6.783e-06/0.7747, allocations: 4 kB / 0.8207 GB, free: 13.77 MB / 0.6355 GB Notification: Performance of simCode: created simulation system equations: time 0.004195/0.7789, allocations: 1.8 MB / 0.8224 GB, free: 11.94 MB / 0.6355 GB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.003138/0.7821, allocations: 0.6789 MB / 0.8231 GB, free: 11.27 MB / 0.6355 GB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.00816/0.7902, allocations: 3.581 MB / 0.8266 GB, free: 7.664 MB / 0.6355 GB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.0009589/0.7912, allocations: 0.7206 MB / 0.8273 GB, free: 6.91 MB / 0.6355 GB Notification: Performance of simCode: alias equations: time 0.001934/0.7931, allocations: 0.5287 MB / 0.8278 GB, free: 6.395 MB / 0.6355 GB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.000633/0.7937, allocations: 176.4 kB / 0.828 GB, free: 6.219 MB / 0.6355 GB Notification: Performance of SimCode: time 1.162e-06/0.7937, allocations: 0 / 0.828 GB, free: 6.219 MB / 0.6355 GB Notification: Performance of Templates: time 0.08933/0.8831, allocations: 51.38 MB / 0.8782 GB, free: 3.617 MB / 0.6823 GB " [Timeout remaining time 659] make -j1 -f ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.makefile [Timeout 660] (rm -f ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.pipe ; mkfifo ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.pipe ; head -c 1048576 < ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.pipe >> ../files/ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.sim & ./ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2 -abortSlowSimulation -alarm=1200 -emit_protected -lv LOG_STATS > ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.pipe 2>&1) [Timeout 1200] diffSimulationResults("ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat","/mnt/ReferenceFiles/ThermofluidStream-main-regression/ReferenceData/ThermofluidStream.Boundaries.Tests.TankSelfDraining2_ref.mat","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2.diff",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) [Timeout 660] "Error: Could not read variable CPUtime in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable CPUtime from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable EventCounter in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable EventCounter from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Calls in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Calls from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Iterations in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Iterations from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Jacobians in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Jacobians from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable NonlinearSystems.simulation[1].Residues in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable NonlinearSystems.simulation[1].Residues from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.H0 in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.H0 from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Hf in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Hf from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.MM in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.MM from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.R_s in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.R_s from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Tlimit in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Tlimit from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[3] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[3] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[4] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[4] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[5] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[5] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[6] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[6] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[7] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[7] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[3] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[3] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[4] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[4] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[5] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[5] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[6] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[6] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[7] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[7] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.H0 in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.H0 from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Hf in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Hf from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.MM in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.MM from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.R_s in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.R_s from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Tlimit in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Tlimit from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[3] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[3] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[4] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[4] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[5] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[5] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[6] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[6] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[7] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[7] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[3] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[3] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[4] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[4] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[5] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[5] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[6] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[6] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[7] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[7] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable _GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable dropOfCommons.instanceNameColor[1] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable dropOfCommons.instanceNameColor[1] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable dropOfCommons.instanceNameColor[2] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable dropOfCommons.instanceNameColor[2] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable dropOfCommons.instanceNameColor[3] in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable dropOfCommons.instanceNameColor[3] from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable source.outlet.der(m_flow) in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable source.outlet.der(m_flow) from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable tank.inlet[2].der(m_flow) in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable tank.inlet[2].der(m_flow) from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable tank.outlet[1].der(m_flow) in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable tank.outlet[1].der(m_flow) from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat failed! Error: Could not read variable tank.outlet[2].der(m_flow) in file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_res.mat. Warning: Get data of variable tank.outlet[2].der(m_flow) from file ThermofluidStream_dev_ThermofluidStream.Boundaries.Tests.TankSelfDraining2_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,Time,_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.H0,_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Hf,_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.MM,_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.R_s,_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.Tlimit,_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[1],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[2],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[3],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[4],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[5],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[6],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.ahigh[7],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[1],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[2],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[3],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[4],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[5],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[6],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.alow[7],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh[1],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.bhigh[2],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow[1],_GlobalScope.ThermofluidStream.Media.myMedia.Air.DryAirNasa.data.blow[2],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.H0,_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Hf,_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.MM,_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.R_s,_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.Tlimit,_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[1],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[2],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[3],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[4],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[5],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[6],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.ahigh[7],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[1],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[2],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[3],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[4],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[5],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[6],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.alow[7],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh[1],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.bhigh[2],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow[1],_GlobalScope.ThermofluidStream.Media.myMedia.IdealGases.Common.SingleGasesData.Air.blow[2],acceleration.a[1],acceleration.a[2],acceleration.a[3],acceleration.ax,acceleration.ay,acceleration.az,acceleration.setFromInputs,checkValve.L,checkValve.Xi_in[1],checkValve.Xi_in[2],checkValve.Xi_out[1],checkValve.Xi_out[2],checkValve.clip_p_out,checkValve.dp,checkValve.dr_corr,checkValve.h_in,checkValve.h_out,checkValve.initM_flow,der(checkValve.inlet.m_flow),checkValve.inlet.m_flow,checkValve.inlet.r,checkValve.inlet.state.T,checkValve.inlet.state.X[1],checkValve.inlet.state.X[2],checkValve.inlet.state.p,checkValve.m_acceleration_0,checkValve.m_flow,checkValve.m_flowStateSelect,checkValve.m_flow_0,checkValve.m_flow_ref,checkValve.outlet.m_flow,checkValve.outlet.r,checkValve.outlet.state.T,checkValve.outlet.state.X[1],checkValve.outlet.state.X[2],checkValve.outlet.state.p,checkValve.p_in,checkValve.p_min,checkValve.p_out,checkValve.p_ref,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,flowResistance1.D_h,flowResistance1.L,flowResistance1.L_value,flowResistance1.Xi_in[1],flowResistance1.Xi_in[2],flowResistance1.Xi_out[1],flowResistance1.Xi_out[2],flowResistance1.a,flowResistance1.areaCross,flowResistance1.areaCrossInput,flowResistance1.areaHydraulic,flowResistance1.b,flowResistance1.clip_p_out,flowResistance1.dp,flowResistance1.dr_corr,flowResistance1.h_in,flowResistance1.h_out,flowResistance1.initM_flow,der(flowResistance1.inlet.m_flow),flowResistance1.inlet.m_flow,flowResistance1.inlet.r,flowResistance1.inlet.state.T,flowResistance1.inlet.state.X[1],flowResistance1.inlet.state.X[2],flowResistance1.inlet.state.p,flowResistance1.l,flowResistance1.m_acceleration_0,flowResistance1.m_flow,flowResistance1.m_flowStateSelect,flowResistance1.m_flow_0,flowResistance1.mu_in,flowResistance1.outlet.m_flow,flowResistance1.outlet.r,flowResistance1.outlet.state.T,flowResistance1.outlet.state.X[1],flowResistance1.outlet.state.X[2],flowResistance1.outlet.state.p,flowResistance1.p_in,flowResistance1.p_min,flowResistance1.p_out,flowResistance1.perimeter,flowResistance1.perimeterInput,flowResistance1.r,flowResistance1.rho_in,flowResistance1.rho_min,flowResistance1.shape,flowResistance2.D_h,flowResistance2.L,flowResistance2.L_value,flowResistance2.Xi_in[1],flowResistance2.Xi_in[2],flowResistance2.Xi_out[1],flowResistance2.Xi_out[2],flowResistance2.a,flowResistance2.areaCross,flowResistance2.areaCrossInput,flowResistance2.areaHydraulic,flowResistance2.b,flowResistance2.clip_p_out,flowResistance2.dp,flowResistance2.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.X[1],flowResistance2.inlet.state.X[2],flowResistance2.inlet.state.p,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.X[1],flowResistance2.outlet.state.X[2],flowResistance2.outlet.state.p,flowResistance2.p_in,flowResistance2.p_min,flowResistance2.p_out,flowResistance2.perimeter,flowResistance2.perimeterInput,flowResistance2.r,flowResistance2.rho_in,flowResistance2.rho_min,flowResistance2.shape,flowResistance3.D_h,flowResistance3.L,flowResistance3.L_value,flowResistance3.Xi_in[1],flowResistance3.Xi_in[2],flowResistance3.Xi_out[1],flowResistance3.Xi_out[2],flowResistance3.a,flowResistance3.areaCross,flowResistance3.areaCrossInput,flowResistance3.areaHydraulic,flowResistance3.b,flowResistance3.clip_p_out,flowResistance3.dp,flowResistance3.dr_corr,flowResistance3.h_in,flowResistance3.h_out,flowResistance3.initM_flow,der(flowResistance3.inlet.m_flow),flowResistance3.inlet.m_flow,flowResistance3.inlet.r,flowResistance3.inlet.state.T,flowResistance3.inlet.state.X[1],flowResistance3.inlet.state.X[2],flowResistance3.inlet.state.p,flowResistance3.l,flowResistance3.m_acceleration_0,flowResistance3.m_flow,flowResistance3.m_flowStateSelect,flowResistance3.m_flow_0,flowResistance3.mu_in,flowResistance3.outlet.m_flow,flowResistance3.outlet.r,flowResistance3.outlet.state.T,flowResistance3.outlet.state.X[1],flowResistance3.outlet.state.X[2],flowResistance3.outlet.state.p,flowResistance3.p_in,flowResistance3.p_min,flowResistance3.p_out,flowResistance3.perimeter,flowResistance3.perimeterInput,flowResistance3.r,flowResistance3.rho_in,flowResistance3.rho_min,flowResistance3.shape,flowResistance4.D_h,flowResistance4.L,flowResistance4.L_value,flowResistance4.Xi_in[1],flowResistance4.Xi_in[2],flowResistance4.Xi_out[1],flowResistance4.Xi_out[2],flowResistance4.a,flowResistance4.areaCross,flowResistance4.areaCrossInput,flowResistance4.areaHydraulic,flowResistance4.b,flowResistance4.clip_p_out,flowResistance4.dp,flowResistance4.dr_corr,flowResistance4.h_in,flowResistance4.h_out,flowResistance4.initM_flow,der(flowResistance4.inlet.m_flow),flowResistance4.inlet.m_flow,flowResistance4.inlet.r,flowResistance4.inlet.state.T,flowResistance4.inlet.state.X[1],flowResistance4.inlet.state.X[2],flowResistance4.inlet.state.p,flowResistance4.l,flowResistance4.m_acceleration_0,flowResistance4.m_flow,flowResistance4.m_flowStateSelect,flowResistance4.m_flow_0,flowResistance4.mu_in,flowResistance4.outlet.m_flow,flowResistance4.outlet.r,flowResistance4.outlet.state.T,flowResistance4.outlet.state.X[1],flowResistance4.outlet.state.X[2],flowResistance4.outlet.state.p,flowResistance4.p_in,flowResistance4.p_min,flowResistance4.p_out,flowResistance4.perimeter,flowResistance4.perimeterInput,flowResistance4.r,flowResistance4.rho_in,flowResistance4.rho_min,flowResistance4.shape,sink1.L,der(sink1.inlet.m_flow),sink1.inlet.m_flow,sink1.inlet.r,sink1.inlet.state.T,sink1.inlet.state.X[1],sink1.inlet.state.X[2],sink1.inlet.state.p,sink1.p,sink1.p0,sink1.p0_par,sink1.r,sink2.L,der(sink2.inlet.m_flow),sink2.inlet.m_flow,sink2.inlet.r,sink2.inlet.state.T,sink2.inlet.state.X[1],sink2.inlet.state.X[2],sink2.inlet.state.p,sink2.p,sink2.p0,sink2.p0_par,sink2.r,source.L,source.T0,source.T0_par,source.Xi0[1],source.Xi0[2],source.Xi0_par[1],source.Xi0_par[2],source.h0,source.h0_par,der(source.outlet.m_flow),source.outlet.m_flow,source.outlet.r,source.outlet.state.T,source.outlet.state.X[1],source.outlet.state.X[2],source.outlet.state.p,source.p0,source.p0_par,source1.L,source1.T0,source1.T0_par,source1.Xi0[1],source1.Xi0[2],source1.Xi0_par[1],source1.Xi0_par[2],source1.h0,source1.h0_par,der(source1.outlet.m_flow),source1.outlet.m_flow,source1.outlet.r,source1.outlet.state.T,source1.outlet.state.X[1],source1.outlet.state.X[2],source1.outlet.state.p,source1.p0,source1.p0_par,tank.A,tank.Area,tank.AxLimit,tank.AzLimit,tank.D,tank.D1,tank.D2,tank.D3,tank.D4,tank.K,tank.L,tank.M,tank.MXi[1],tank.MXi[2],tank.M_liq_start,tank.M_outlets,tank.N_inlets,tank.Q_flow,tank.T_heatPort,tank.T_start,tank.ThresholdEmpty,tank.ThresholdFull,tank.U,tank.U_med,tank.V,tank.V_liquid,tank.V_ref,tank.W_v,tank.Xi_0[1],tank.Xi_0[2],tank.Xi_in[1,1],tank.Xi_in[1,2],tank.Xi_in[2,1],tank.Xi_in[2,2],tank.Xi_out[1,1],tank.Xi_out[1,2],tank.Xi_out[2,1],tank.Xi_out[2,2],tank.centerOfMass[1],tank.centerOfMass[2],tank.centerOfMass[3],tank.d,tank.density_derp_h,der(tank.M),der(tank.MXi[1]),der(tank.MXi[2]),der(tank.U_med),tank.eps_geometry,tank.fEmpty,tank.fFull,tank.gasDensity,tank.h_in[1],tank.h_in[2],tank.h_out[1],tank.h_out[2],tank.h_start,tank.initialize_LiquidMass,tank.initialize_Xi,tank.initialize_energy,tank.initialize_pressure,tank.inletPositions[1,1],tank.inletPositions[1,2],tank.inletPositions[1,3],tank.inletPositions[2,1],tank.inletPositions[2,2],tank.inletPositions[2,3],der(tank.inlet[1].m_flow),tank.inlet[1].m_flow,tank.inlet[1].r,tank.inlet[1].state.T,tank.inlet[1].state.X[1],tank.inlet[1].state.X[2],tank.inlet[1].state.p,der(tank.inlet[2].m_flow),tank.inlet[2].m_flow,tank.inlet[2].r,tank.inlet[2].state.T,tank.inlet[2].state.X[1],tank.inlet[2].state.X[2],tank.inlet[2].state.p,tank.k_volume_damping,tank.liquidDensity,tank.m_flow_assert,tank.m_flow_in[1],tank.m_flow_in[2],tank.m_flow_out[1],tank.m_flow_out[2],tank.medium.MM,tank.medium.R_s,tank.medium.T,tank.medium.T_degC,tank.medium.X[1],tank.medium.X[2],tank.medium.Xi[1],tank.medium.Xi[2],tank.medium.d,tank.medium.h,tank.medium.p,tank.medium.p_bar,tank.medium.preferredMediumStates,tank.medium.standardOrderComponents,tank.medium.state.T,tank.medium.state.X[1],tank.medium.state.X[2],tank.medium.state.p,tank.medium.u,tank.normAcc[1],tank.normAcc[2],tank.normAcc[3],tank.nx,tank.nz,tank.outletPositions[1,1],tank.outletPositions[1,2],tank.outletPositions[1,3],tank.outletPositions[2,1],tank.outletPositions[2,2],tank.outletPositions[2,3],tank.outletTransition,der(tank.outlet[1].m_flow),tank.outlet[1].m_flow,tank.outlet[1].r,tank.outlet[1].state.T,tank.outlet[1].state.X[1],tank.outlet[1].state.X[2],tank.outlet[1].state.p,der(tank.outlet[2].m_flow),tank.outlet[2].m_flow,tank.outlet[2].r,tank.outlet[2].state.T,tank.outlet[2].state.X[1],tank.outlet[2].state.X[2],tank.outlet[2].state.p,tank.p_in[1],tank.p_in[2],tank.p_ref,tank.p_start,tank.r[1],tank.r[2],tank.r_damping,tank.shiftOutlet[1],tank.shiftOutlet[2],tank.state_out[1].T,tank.state_out[1].X[1],tank.state_out[1].X[2],tank.state_out[1].p,tank.state_out[2].T,tank.state_out[2].X[1],tank.state_out[2].X[2],tank.state_out[2].p,tank.staticHeadInlets[1],tank.staticHeadInlets[2],tank.staticHeadInlets_Pa_relative[1],tank.staticHeadInlets_Pa_relative[2],tank.staticHeadOutlets[1],tank.staticHeadOutlets[2],tank.staticHeadOutlets_Pa_relative[1],tank.staticHeadOutlets_Pa_relative[2],tank.tankCenter[1],tank.tankCenter[2],tank.tankCenter[3],tank.useHeatport,tank.usePreferredMediumStates,tank.use_hstart,tank.xLength,tank.yLength,tank.zLength Variables in the result:$cse4.T,$cse4.p,$cse6.T,$cse6.p,acceleration.a[1],acceleration.a[2],acceleration.a[3],acceleration.ax,acceleration.ay,acceleration.az,acceleration.setFromInputs,checkValve.L,checkValve.Xi_in[1],checkValve.Xi_in[2],checkValve.Xi_out[1],checkValve.Xi_out[2],checkValve.clip_p_out,checkValve.dp,checkValve.dr_corr,checkValve.h_in,checkValve.h_out,checkValve.initM_flow,checkValve.inlet.m_flow,checkValve.inlet.r,checkValve.inlet.state.T,checkValve.inlet.state.X[1],checkValve.inlet.state.X[2],checkValve.inlet.state.p,checkValve.m_acceleration_0,checkValve.m_flow,checkValve.m_flowStateSelect,checkValve.m_flow_0,checkValve.m_flow_ref,checkValve.outlet.m_flow,checkValve.outlet.r,checkValve.outlet.state.T,checkValve.outlet.state.X[1],checkValve.outlet.state.X[2],checkValve.outlet.state.p,checkValve.p_in,checkValve.p_min,checkValve.p_out,checkValve.p_ref,der(checkValve.inlet.m_flow),der(flowResistance1.inlet.m_flow),der(flowResistance2.inlet.m_flow),der(flowResistance3.inlet.m_flow),der(tank.M),der(tank.MXi[1]),der(tank.MXi[2]),der(tank.U_med),dropOfCommons.L,dropOfCommons.assertionLevel,dropOfCommons.g,dropOfCommons.k_volume_damping,dropOfCommons.m_flow_reg,dropOfCommons.omega_reg,dropOfCommons.p_min,dropOfCommons.rho_min,flowResistance1.D_h,flowResistance1.L,flowResistance1.L_value,flowResistance1.Xi_in[1],flowResistance1.Xi_in[2],flowResistance1.Xi_out[1],flowResistance1.Xi_out[2],flowResistance1.a,flowResistance1.areaCross,flowResistance1.areaCrossInput,flowResistance1.areaHydraulic,flowResistance1.b,flowResistance1.clip_p_out,flowResistance1.dp,flowResistance1.dp_ref_color,flowResistance1.dr_corr,flowResistance1.h_in,flowResistance1.h_out,flowResistance1.initM_flow,flowResistance1.inlet.m_flow,flowResistance1.inlet.r,flowResistance1.inlet.state.T,flowResistance1.inlet.state.X[1],flowResistance1.inlet.state.X[2],flowResistance1.inlet.state.p,flowResistance1.l,flowResistance1.m_acceleration_0,flowResistance1.m_flow,flowResistance1.m_flowStateSelect,flowResistance1.m_flow_0,flowResistance1.mu_in,flowResistance1.outlet.m_flow,flowResistance1.outlet.r,flowResistance1.outlet.state.T,flowResistance1.outlet.state.X[1],flowResistance1.outlet.state.X[2],flowResistance1.outlet.state.p,flowResistance1.p_in,flowResistance1.p_min,flowResistance1.p_out,flowResistance1.perimeter,flowResistance1.perimeterInput,flowResistance1.pressureDropSignificantDigits,flowResistance1.r,flowResistance1.rho_in,flowResistance1.rho_min,flowResistance1.shape,flowResistance2.D_h,flowResistance2.L,flowResistance2.L_value,flowResistance2.Xi_in[1],flowResistance2.Xi_in[2],flowResistance2.Xi_out[1],flowResistance2.Xi_out[2],flowResistance2.a,flowResistance2.areaCross,flowResistance2.areaCrossInput,flowResistance2.areaHydraulic,flowResistance2.b,flowResistance2.clip_p_out,flowResistance2.dp,flowResistance2.dp_ref_color,flowResistance2.dr_corr,flowResistance2.h_in,flowResistance2.h_out,flowResistance2.initM_flow,flowResistance2.inlet.m_flow,flowResistance2.inlet.r,flowResistance2.inlet.state.T,flowResistance2.inlet.state.X[1],flowResistance2.inlet.state.X[2],flowResistance2.inlet.state.p,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.X[1],flowResistance2.outlet.state.X[2],flowResistance2.outlet.state.p,flowResistance2.p_in,flowResistance2.p_min,flowResistance2.p_out,flowResistance2.perimeter,flowResistance2.perimeterInput,flowResistance2.pressureDropSignificantDigits,flowResistance2.r,flowResistance2.rho_in,flowResistance2.rho_min,flowResistance2.shape,flowResistance3.D_h,flowResistance3.L,flowResistance3.L_value,flowResistance3.Xi_in[1],flowResistance3.Xi_in[2],flowResistance3.Xi_out[1],flowResistance3.Xi_out[2],flowResistance3.a,flowResistance3.areaCross,flowResistance3.areaCrossInput,flowResistance3.areaHydraulic,flowResistance3.b,flowResistance3.clip_p_out,flowResistance3.dp,flowResistance3.dp_ref_color,flowResistance3.dr_corr,flowResistance3.h_in,flowResistance3.h_out,flowResistance3.initM_flow,flowResistance3.inlet.m_flow,flowResistance3.inlet.r,flowResistance3.inlet.state.T,flowResistance3.inlet.state.X[1],flowResistance3.inlet.state.X[2],flowResistance3.inlet.state.p,flowResistance3.l,flowResistance3.m_acceleration_0,flowResistance3.m_flow,flowResistance3.m_flowStateSelect,flowResistance3.m_flow_0,flowResistance3.mu_in,flowResistance3.outlet.m_flow,flowResistance3.outlet.r,flowResistance3.outlet.state.T,flowResistance3.outlet.state.X[1],flowResistance3.outlet.state.X[2],flowResistance3.outlet.state.p,flowResistance3.p_in,flowResistance3.p_min,flowResistance3.p_out,flowResistance3.perimeter,flowResistance3.perimeterInput,flowResistance3.pressureDropSignificantDigits,flowResistance3.r,flowResistance3.rho_in,flowResistance3.rho_min,flowResistance3.shape,flowResistance4.D_h,flowResistance4.L,flowResistance4.L_value,flowResistance4.Xi_in[1],flowResistance4.Xi_in[2],flowResistance4.Xi_out[1],flowResistance4.Xi_out[2],flowResistance4.a,flowResistance4.areaCross,flowResistance4.areaCrossInput,flowResistance4.areaHydraulic,flowResistance4.b,flowResistance4.clip_p_out,flowResistance4.dp,flowResistance4.dp_ref_color,flowResistance4.dr_corr,flowResistance4.h_in,flowResistance4.h_out,flowResistance4.initM_flow,flowResistance4.inlet.m_flow,flowResistance4.inlet.r,flowResistance4.inlet.state.T,flowResistance4.inlet.state.X[1],flowResistance4.inlet.state.X[2],flowResistance4.inlet.state.p,flowResistance4.l,flowResistance4.m_acceleration_0,flowResistance4.m_flow,flowResistance4.m_flowStateSelect,flowResistance4.m_flow_0,flowResistance4.mu_in,flowResistance4.outlet.m_flow,flowResistance4.outlet.r,flowResistance4.outlet.state.T,flowResistance4.outlet.state.X[1],flowResistance4.outlet.state.X[2],flowResistance4.outlet.state.p,flowResistance4.p_in,flowResistance4.p_min,flowResistance4.p_out,flowResistance4.perimeter,flowResistance4.perimeterInput,flowResistance4.pressureDropSignificantDigits,flowResistance4.r,flowResistance4.rho_in,flowResistance4.rho_min,flowResistance4.shape,sink1.L,sink1.inlet.m_flow,sink1.inlet.r,sink1.inlet.state.T,sink1.inlet.state.X[1],sink1.inlet.state.X[2],sink1.inlet.state.p,sink1.p,sink1.p0,sink1.p0_par,sink1.r,sink2.L,sink2.inlet.m_flow,sink2.inlet.r,sink2.inlet.state.T,sink2.inlet.state.X[1],sink2.inlet.state.X[2],sink2.inlet.state.p,sink2.p,sink2.p0,sink2.p0_par,sink2.r,source.L,source.T0,source.T0_par,source.Xi0[1],source.Xi0[2],source.Xi0_par[1],source.Xi0_par[2],source.h0,source.h0_par,source.outlet.m_flow,source.outlet.r,source.outlet.state.T,source.outlet.state.X[1],source.outlet.state.X[2],source.outlet.state.p,source.p0,source.p0_par,source1.L,source1.T0,source1.T0_par,source1.Xi0[1],source1.Xi0[2],source1.Xi0_par[1],source1.Xi0_par[2],source1.h0,source1.h0_par,source1.outlet.m_flow,source1.outlet.r,source1.outlet.state.T,source1.outlet.state.X[1],source1.outlet.state.X[2],source1.outlet.state.p,source1.p0,source1.p0_par,tank.A,tank.Area,tank.AxLimit,tank.AzLimit,tank.D,tank.D1,tank.D2,tank.D3,tank.D4,tank.K,tank.L,tank.M,tank.MXi[1],tank.MXi[2],tank.M_liq_start,tank.M_outlets,tank.N_inlets,tank.Q_flow,tank.T_heatPort,tank.T_start,tank.ThresholdEmpty,tank.ThresholdFull,tank.U,tank.U_med,tank.V,tank.V_liquid,tank.V_ref,tank.W_v,tank.Xi_0[1],tank.Xi_0[2],tank.Xi_in[1,1],tank.Xi_in[1,2],tank.Xi_in[2,1],tank.Xi_in[2,2],tank.Xi_out[1,1],tank.Xi_out[1,2],tank.Xi_out[2,1],tank.Xi_out[2,2],tank.centerOfMass[1],tank.centerOfMass[2],tank.centerOfMass[3],tank.d,tank.density_derp_h,tank.eps_geometry,tank.fEmpty,tank.fFull,tank.gasDensity,tank.h_in[1],tank.h_in[2],tank.h_out[1],tank.h_out[2],tank.h_start,tank.initialize_LiquidMass,tank.initialize_Xi,tank.initialize_energy,tank.initialize_pressure,tank.inletPositions[1,1],tank.inletPositions[1,2],tank.inletPositions[1,3],tank.inletPositions[2,1],tank.inletPositions[2,2],tank.inletPositions[2,3],tank.inlet[1].m_flow,tank.inlet[1].r,tank.inlet[1].state.T,tank.inlet[1].state.X[1],tank.inlet[1].state.X[2],tank.inlet[1].state.p,tank.inlet[2].m_flow,tank.inlet[2].r,tank.inlet[2].state.T,tank.inlet[2].state.X[1],tank.inlet[2].state.X[2],tank.inlet[2].state.p,tank.k_volume_damping,tank.liquidDensity,tank.m_flow_assert,tank.m_flow_in[1],tank.m_flow_in[2],tank.m_flow_out[1],tank.m_flow_out[2],tank.medium.MM,tank.medium.R_s,tank.medium.T,tank.medium.T_degC,tank.medium.X[1],tank.medium.X[2],tank.medium.Xi[1],tank.medium.Xi[2],tank.medium.d,tank.medium.h,tank.medium.p,tank.medium.p_bar,tank.medium.preferredMediumStates,tank.medium.standardOrderComponents,tank.medium.state.T,tank.medium.state.X[1],tank.medium.state.X[2],tank.medium.state.p,tank.medium.u,tank.normAcc[1],tank.normAcc[2],tank.normAcc[3],tank.nx,tank.nz,tank.outletPositions[1,1],tank.outletPositions[1,2],tank.outletPositions[1,3],tank.outletPositions[2,1],tank.outletPositions[2,2],tank.outletPositions[2,3],tank.outletTransition,tank.outlet[1].m_flow,tank.outlet[1].r,tank.outlet[1].state.T,tank.outlet[1].state.X[1],tank.outlet[1].state.X[2],tank.outlet[1].state.p,tank.outlet[2].m_flow,tank.outlet[2].r,tank.outlet[2].state.T,tank.outlet[2].state.X[1],tank.outlet[2].state.X[2],tank.outlet[2].state.p,tank.p_in[1],tank.p_in[2],tank.p_ref,tank.p_start,tank.r[1],tank.r[2],tank.r_damping,tank.shiftOutlet[1],tank.shiftOutlet[2],tank.state_out[1].T,tank.state_out[1].X[1],tank.state_out[1].X[2],tank.state_out[1].p,tank.state_out[2].T,tank.state_out[2].X[1],tank.state_out[2].X[2],tank.state_out[2].p,tank.staticHeadInlets[1],tank.staticHeadInlets[2],tank.staticHeadInlets_Pa_relative[1],tank.staticHeadInlets_Pa_relative[2],tank.staticHeadOutlets[1],tank.staticHeadOutlets[2],tank.staticHeadOutlets_Pa_relative[1],tank.staticHeadOutlets_Pa_relative[2],tank.tankCenter[1],tank.tankCenter[2],tank.tankCenter[3],tank.useHeatport,tank.usePreferredMediumStates,tank.use_hstart,tank.xLength,tank.yLength,tank.zLength,time [Calling sys.exit(0), Time elapsed: 8.804546699975617]