startTime=0 stopTime=20 tolerance=1e-06 numberOfIntervals=1000 stepSize=0.02 wasm-jit simulation: simulate(ThermofluidStream.Undirected.FlowControl.Tests.ValveReferenceValues_Undirected,startTime=0,stopTime=20,tolerance=1e-06,numberOfIntervals=1000,outputFormat="mat",variableFilter="CPUtime|EventCounter|Time|boundaryFore.L|boundaryFore.T0|boundaryFore.T0_par|boundaryFore.h0|boundaryFore.h0_par|boundaryFore.m_flow_reg|boundaryFore.p0|boundaryFore.p0_par|boundaryFore.p_forwards|boundaryFore.r|der.boundaryFore.rear.m_flow.|boundaryFore.rear.m_flow|boundaryFore.rear.r|boundaryFore.rear.state_forwards.T|boundaryFore.rear.state_forwards.p|boundaryFore.rear.state_rearwards.T|boundaryFore.rear.state_rearwards.p|boundaryFore1.L|boundaryFore1.T0|boundaryFore1.T0_par|boundaryFore1.h0|boundaryFore1.h0_par|boundaryFore1.m_flow_reg|boundaryFore1.p0|boundaryFore1.p0_par|boundaryFore1.p_forwards|boundaryFore1.r|der.boundaryFore1.rear.m_flow.|boundaryFore1.rear.m_flow|boundaryFore1.rear.r|boundaryFore1.rear.state_forwards.T|boundaryFore1.rear.state_forwards.p|boundaryFore1.rear.state_rearwards.T|boundaryFore1.rear.state_rearwards.p|boundaryFore2.L|boundaryFore2.T0|boundaryFore2.T0_par|boundaryFore2.h0|boundaryFore2.h0_par|boundaryFore2.m_flow_reg|boundaryFore2.p0|boundaryFore2.p0_par|boundaryFore2.p_forwards|boundaryFore2.r|der.boundaryFore2.rear.m_flow.|boundaryFore2.rear.m_flow|boundaryFore2.rear.r|boundaryFore2.rear.state_forwards.T|boundaryFore2.rear.state_forwards.p|boundaryFore2.rear.state_rearwards.T|boundaryFore2.rear.state_rearwards.p|boundaryFore3.L|boundaryFore3.T0|boundaryFore3.T0_par|boundaryFore3.h0|boundaryFore3.h0_par|boundaryFore3.m_flow_reg|boundaryFore3.p0|boundaryFore3.p0_par|boundaryFore3.p_forwards|boundaryFore3.r|der.boundaryFore3.rear.m_flow.|boundaryFore3.rear.m_flow|boundaryFore3.rear.r|boundaryFore3.rear.state_forwards.T|boundaryFore3.rear.state_forwards.p|boundaryFore3.rear.state_rearwards.T|boundaryFore3.rear.state_rearwards.p|boundaryFore4.L|boundaryFore4.T0|boundaryFore4.T0_par|boundaryFore4.h0|boundaryFore4.h0_par|boundaryFore4.m_flow_reg|boundaryFore4.p0|boundaryFore4.p0_par|boundaryFore4.p_forwards|boundaryFore4.r|der.boundaryFore4.rear.m_flow.|boundaryFore4.rear.m_flow|boundaryFore4.rear.r|boundaryFore4.rear.state_forwards.T|boundaryFore4.rear.state_forwards.p|boundaryFore4.rear.state_rearwards.T|boundaryFore4.rear.state_rearwards.p|boundaryFore5.L|boundaryFore5.T0|boundaryFore5.T0_par|boundaryFore5.h0|boundaryFore5.h0_par|boundaryFore5.m_flow_reg|boundaryFore5.p0|boundaryFore5.p0_par|boundaryFore5.p_forwards|boundaryFore5.r|der.boundaryFore5.rear.m_flow.|boundaryFore5.rear.m_flow|boundaryFore5.rear.r|boundaryFore5.rear.state_forwards.T|boundaryFore5.rear.state_forwards.p|boundaryFore5.rear.state_rearwards.T|boundaryFore5.rear.state_rearwards.p|boundaryRear.L|boundaryRear.T0|boundaryRear.T0_par|der.boundaryRear.fore.m_flow.|boundaryRear.fore.m_flow|boundaryRear.fore.r|boundaryRear.fore.state_forwards.T|boundaryRear.fore.state_forwards.p|boundaryRear.fore.state_rearwards.T|boundaryRear.fore.state_rearwards.p|boundaryRear.h0|boundaryRear.h0_par|boundaryRear.m_flow_reg|boundaryRear.p0|boundaryRear.p0_par|boundaryRear.p0_var|boundaryRear.p_rearwards|boundaryRear.r|boundaryRear1.L|boundaryRear1.T0|boundaryRear1.T0_par|der.boundaryRear1.fore.m_flow.|boundaryRear1.fore.m_flow|boundaryRear1.fore.r|boundaryRear1.fore.state_forwards.T|boundaryRear1.fore.state_forwards.p|boundaryRear1.fore.state_rearwards.T|boundaryRear1.fore.state_rearwards.p|boundaryRear1.h0|boundaryRear1.h0_par|boundaryRear1.m_flow_reg|boundaryRear1.p0|boundaryRear1.p0_par|boundaryRear1.p0_var|boundaryRear1.p_rearwards|boundaryRear1.r|boundaryRear2.L|boundaryRear2.T0|boundaryRear2.T0_par|der.boundaryRear2.fore.m_flow.|boundaryRear2.fore.m_flow|boundaryRear2.fore.r|boundaryRear2.fore.state_forwards.T|boundaryRear2.fore.state_forwards.p|boundaryRear2.fore.state_rearwards.T|boundaryRear2.fore.state_rearwards.p|boundaryRear2.h0|boundaryRear2.h0_par|boundaryRear2.m_flow_reg|boundaryRear2.p0|boundaryRear2.p0_par|boundaryRear2.p0_var|boundaryRear2.p_rearwards|boundaryRear2.r|boundaryRear3.L|boundaryRear3.T0|boundaryRear3.T0_par|der.boundaryRear3.fore.m_flow.|boundaryRear3.fore.m_flow|boundaryRear3.fore.r|boundaryRear3.fore.state_forwards.T|boundaryRear3.fore.state_forwards.p|boundaryRear3.fore.state_rearwards.T|boundaryRear3.fore.state_rearwards.p|boundaryRear3.h0|boundaryRear3.h0_par|boundaryRear3.m_flow_reg|boundaryRear3.p0|boundaryRear3.p0_par|boundaryRear3.p0_var|boundaryRear3.p_rearwards|boundaryRear3.r|boundaryRear4.L|boundaryRear4.T0|boundaryRear4.T0_par|der.boundaryRear4.fore.m_flow.|boundaryRear4.fore.m_flow|boundaryRear4.fore.r|boundaryRear4.fore.state_forwards.T|boundaryRear4.fore.state_forwards.p|boundaryRear4.fore.state_rearwards.T|boundaryRear4.fore.state_rearwards.p|boundaryRear4.h0|boundaryRear4.h0_par|boundaryRear4.m_flow_reg|boundaryRear4.p0|boundaryRear4.p0_par|boundaryRear4.p0_var|boundaryRear4.p_rearwards|boundaryRear4.r|boundaryRear5.L|boundaryRear5.T0|boundaryRear5.T0_par|der.boundaryRear5.fore.m_flow.|boundaryRear5.fore.m_flow|boundaryRear5.fore.r|boundaryRear5.fore.state_forwards.T|boundaryRear5.fore.state_forwards.p|boundaryRear5.fore.state_rearwards.T|boundaryRear5.fore.state_rearwards.p|boundaryRear5.h0|boundaryRear5.h0_par|boundaryRear5.m_flow_reg|boundaryRear5.p0|boundaryRear5.p0_par|boundaryRear5.p0_var|boundaryRear5.p_rearwards|boundaryRear5.r|const2.k|const2.y|dp_ref.Cvs_UK|dp_ref.Cvs_US|dp_ref.Kvs|dp_ref.L|dp_ref.V_flow_ref|dp_ref.clip_p_out|dp_ref.dp_fore|dp_ref.dp_rear|dp_ref.dp_ref|dp_ref.dr_corr|dp_ref.dr_corr_fore|dp_ref.dr_corr_rear|dp_ref.flowCoefficient|dp_ref.fore.m_flow|dp_ref.fore.r|dp_ref.fore.state_forwards.T|dp_ref.fore.state_forwards.p|dp_ref.fore.state_rearwards.T|dp_ref.fore.state_rearwards.p|dp_ref.h_fore_in|dp_ref.h_fore_out|dp_ref.h_rear_in|dp_ref.h_rear_out|dp_ref.initM_flow|dp_ref.k_min|dp_ref.k_u|dp_ref.m_acceleration_0|dp_ref.m_flow|dp_ref.m_flowStateSelect|dp_ref.m_flow_0|dp_ref.m_flow_ref|dp_ref.m_flow_ref_set|dp_ref.m_flow_reg|dp_ref.p_fore_in|dp_ref.p_fore_out|dp_ref.p_min|dp_ref.p_rear_in|dp_ref.p_rear_out|der.dp_ref.rear.m_flow.|dp_ref.rear.m_flow|dp_ref.rear.r|dp_ref.rear.state_forwards.T|dp_ref.rear.state_forwards.p|dp_ref.rear.state_rearwards.T|dp_ref.rear.state_rearwards.p|dp_ref.rho_fore_in|dp_ref.rho_rear_in|dp_ref.rho_ref|dp_ref.secondsPerHour|dp_ref.u|dp_ref.u_in|dp_ref1.A_valve|dp_ref1.Cvs_UK|dp_ref1.Cvs_US|dp_ref1.Kvs|dp_ref1.L|dp_ref1.V_flow_ref|dp_ref1.clip_p_out|dp_ref1.combiTable1D_zeta.columns.1.|dp_ref1.combiTable1D_zeta.extrapolation|dp_ref1.combiTable1D_zeta.isCsvExt|dp_ref1.combiTable1D_zeta.nHeaderLines|dp_ref1.combiTable1D_zeta.nout|dp_ref1.combiTable1D_zeta.smoothness|dp_ref1.combiTable1D_zeta.tableID.id|dp_ref1.combiTable1D_zeta.tableOnFile|dp_ref1.combiTable1D_zeta.table.1,1.|dp_ref1.combiTable1D_zeta.table.1,2.|dp_ref1.combiTable1D_zeta.table.10,1.|dp_ref1.combiTable1D_zeta.table.10,2.|dp_ref1.combiTable1D_zeta.table.11,1.|dp_ref1.combiTable1D_zeta.table.11,2.|dp_ref1.combiTable1D_zeta.table.12,1.|dp_ref1.combiTable1D_zeta.table.12,2.|dp_ref1.combiTable1D_zeta.table.2,1.|dp_ref1.combiTable1D_zeta.table.2,2.|dp_ref1.combiTable1D_zeta.table.3,1.|dp_ref1.combiTable1D_zeta.table.3,2.|dp_ref1.combiTable1D_zeta.table.4,1.|dp_ref1.combiTable1D_zeta.table.4,2.|dp_ref1.combiTable1D_zeta.table.5,1.|dp_ref1.combiTable1D_zeta.table.5,2.|dp_ref1.combiTable1D_zeta.table.6,1.|dp_ref1.combiTable1D_zeta.table.6,2.|dp_ref1.combiTable1D_zeta.table.7,1.|dp_ref1.combiTable1D_zeta.table.7,2.|dp_ref1.combiTable1D_zeta.table.8,1.|dp_ref1.combiTable1D_zeta.table.8,2.|dp_ref1.combiTable1D_zeta.table.9,1.|dp_ref1.combiTable1D_zeta.table.9,2.|dp_ref1.combiTable1D_zeta.u|dp_ref1.combiTable1D_zeta.u_max|dp_ref1.combiTable1D_zeta.u_min|dp_ref1.combiTable1D_zeta.verboseExtrapolation|dp_ref1.combiTable1D_zeta.verboseRead|dp_ref1.combiTable1D_zeta.y.1.|dp_ref1.d_valve|dp_ref1.dp_fore|dp_ref1.dp_rear|dp_ref1.dp_ref|dp_ref1.dr_corr|dp_ref1.dr_corr_fore|dp_ref1.dr_corr_rear|dp_ref1.flowCoefficient|dp_ref1.fore.m_flow|dp_ref1.fore.r|dp_ref1.fore.state_forwards.T|dp_ref1.fore.state_forwards.p|dp_ref1.fore.state_rearwards.T|dp_ref1.fore.state_rearwards.p|dp_ref1.h_fore_in|dp_ref1.h_fore_out|dp_ref1.h_rear_in|dp_ref1.h_rear_out|dp_ref1.initM_flow|dp_ref1.k_min|dp_ref1.k_u|dp_ref1.k_u_zeta|dp_ref1.m_acceleration_0|dp_ref1.m_flow|dp_ref1.m_flowStateSelect|dp_ref1.m_flow_0|dp_ref1.m_flow_ref|dp_ref1.m_flow_ref_set|dp_ref1.m_flow_reg|dp_ref1.p_fore_in|dp_ref1.p_fore_out|dp_ref1.p_min|dp_ref1.p_rear_in|dp_ref1.p_rear_out|der.dp_ref1.rear.m_flow.|dp_ref1.rear.m_flow|dp_ref1.rear.r|dp_ref1.rear.state_forwards.T|dp_ref1.rear.state_forwards.p|dp_ref1.rear.state_rearwards.T|dp_ref1.rear.state_rearwards.p|dp_ref1.rho_fore_in|dp_ref1.rho_rear_in|dp_ref1.rho_ref|dp_ref1.secondsPerHour|dp_ref1.u|dp_ref1.u_in|dp_ref1.valveData.zetaTable.1,1.|dp_ref1.valveData.zetaTable.1,2.|dp_ref1.valveData.zetaTable.10,1.|dp_ref1.valveData.zetaTable.10,2.|dp_ref1.valveData.zetaTable.11,1.|dp_ref1.valveData.zetaTable.11,2.|dp_ref1.valveData.zetaTable.12,1.|dp_ref1.valveData.zetaTable.12,2.|dp_ref1.valveData.zetaTable.2,1.|dp_ref1.valveData.zetaTable.2,2.|dp_ref1.valveData.zetaTable.3,1.|dp_ref1.valveData.zetaTable.3,2.|dp_ref1.valveData.zetaTable.4,1.|dp_ref1.valveData.zetaTable.4,2.|dp_ref1.valveData.zetaTable.5,1.|dp_ref1.valveData.zetaTable.5,2.|dp_ref1.valveData.zetaTable.6,1.|dp_ref1.valveData.zetaTable.6,2.|dp_ref1.valveData.zetaTable.7,1.|dp_ref1.valveData.zetaTable.7,2.|dp_ref1.valveData.zetaTable.8,1.|dp_ref1.valveData.zetaTable.8,2.|dp_ref1.valveData.zetaTable.9,1.|dp_ref1.valveData.zetaTable.9,2.|dp_ref1.zeta|dp_ref1.zeta1|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|ramp.duration|ramp.height|ramp.offset|ramp.startTime|ramp.y|reference.Cvs_UK|reference.Cvs_US|reference.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.state_forwards.p|rho_ref.fore.state_rearwards.T|rho_ref.fore.state_rearwards.p|rho_ref.h_fore_in|rho_ref.h_fore_out|rho_ref.h_rear_in|rho_ref.h_rear_out|rho_ref.initM_flow|rho_ref.k_min|rho_ref.k_u|rho_ref.m_acceleration_0|rho_ref.m_flow|rho_ref.m_flowStateSelect|rho_ref.m_flow_0|rho_ref.m_flow_ref|rho_ref.m_flow_ref_set|rho_ref.m_flow_reg|rho_ref.p_fore_in|rho_ref.p_fore_out|rho_ref.p_min|rho_ref.p_rear_in|rho_ref.p_rear_out|der.rho_ref.rear.m_flow.|rho_ref.rear.m_flow|rho_ref.rear.r|rho_ref.rear.state_forwards.T|rho_ref.rear.state_forwards.p|rho_ref.rear.state_rearwards.T|rho_ref.rear.state_rearwards.p|rho_ref.rho_fore_in|rho_ref.rho_rear_in|rho_ref.rho_ref|rho_ref.secondsPerHour|rho_ref.u|rho_ref.u_in|rho_ref1.A_valve|rho_ref1.Cvs_UK|rho_ref1.Cvs_US|rho_ref1.Kvs|rho_ref1.L|rho_ref1.V_flow_ref|rho_ref1.clip_p_out|rho_ref1.combiTable1D_zeta.columns.1.|rho_ref1.combiTable1D_zeta.extrapolation|rho_ref1.combiTable1D_zeta.isCsvExt|rho_ref1.combiTable1D_zeta.nHeaderLines|rho_ref1.combiTable1D_zeta.nout|rho_ref1.combiTable1D_zeta.smoothness|rho_ref1.combiTable1D_zeta.tableID.id|rho_ref1.combiTable1D_zeta.tableOnFile|rho_ref1.combiTable1D_zeta.table.1,1.|rho_ref1.combiTable1D_zeta.table.1,2.|rho_ref1.combiTable1D_zeta.table.10,1.|rho_ref1.combiTable1D_zeta.table.10,2.|rho_ref1.combiTable1D_zeta.table.11,1.|rho_ref1.combiTable1D_zeta.table.11,2.|rho_ref1.combiTable1D_zeta.table.12,1.|rho_ref1.combiTable1D_zeta.table.12,2.|rho_ref1.combiTable1D_zeta.table.2,1.|rho_ref1.combiTable1D_zeta.table.2,2.|rho_ref1.combiTable1D_zeta.table.3,1.|rho_ref1.combiTable1D_zeta.table.3,2.|rho_ref1.combiTable1D_zeta.table.4,1.|rho_ref1.combiTable1D_zeta.table.4,2.|rho_ref1.combiTable1D_zeta.table.5,1.|rho_ref1.combiTable1D_zeta.table.5,2.|rho_ref1.combiTable1D_zeta.table.6,1.|rho_ref1.combiTable1D_zeta.table.6,2.|rho_ref1.combiTable1D_zeta.table.7,1.|rho_ref1.combiTable1D_zeta.table.7,2.|rho_ref1.combiTable1D_zeta.table.8,1.|rho_ref1.combiTable1D_zeta.table.8,2.|rho_ref1.combiTable1D_zeta.table.9,1.|rho_ref1.combiTable1D_zeta.table.9,2.|rho_ref1.combiTable1D_zeta.u|rho_ref1.combiTable1D_zeta.u_max|rho_ref1.combiTable1D_zeta.u_min|rho_ref1.combiTable1D_zeta.verboseExtrapolation|rho_ref1.combiTable1D_zeta.verboseRead|rho_ref1.combiTable1D_zeta.y.1.|rho_ref1.d_valve|rho_ref1.dp_fore|rho_ref1.dp_rear|rho_ref1.dp_ref|rho_ref1.dr_corr|rho_ref1.dr_corr_fore|rho_ref1.dr_corr_rear|rho_ref1.flowCoefficient|rho_ref1.fore.m_flow|rho_ref1.fore.r|rho_ref1.fore.state_forwards.T|rho_ref1.fore.state_forwards.p|rho_ref1.fore.state_rearwards.T|rho_ref1.fore.state_rearwards.p|rho_ref1.h_fore_in|rho_ref1.h_fore_out|rho_ref1.h_rear_in|rho_ref1.h_rear_out|rho_ref1.initM_flow|rho_ref1.k_min|rho_ref1.k_u|rho_ref1.k_u_zeta|rho_ref1.m_acceleration_0|rho_ref1.m_flow|rho_ref1.m_flowStateSelect|rho_ref1.m_flow_0|rho_ref1.m_flow_ref|rho_ref1.m_flow_ref_set|rho_ref1.m_flow_reg|rho_ref1.p_fore_in|rho_ref1.p_fore_out|rho_ref1.p_min|rho_ref1.p_rear_in|rho_ref1.p_rear_out|der.rho_ref1.rear.m_flow.|rho_ref1.rear.m_flow|rho_ref1.rear.r|rho_ref1.rear.state_forwards.T|rho_ref1.rear.state_forwards.p|rho_ref1.rear.state_rearwards.T|rho_ref1.rear.state_rearwards.p|rho_ref1.rho_fore_in|rho_ref1.rho_rear_in|rho_ref1.rho_ref|rho_ref1.secondsPerHour|rho_ref1.u|rho_ref1.u_in|rho_ref1.valveData.zetaTable.1,1.|rho_ref1.valveData.zetaTable.1,2.|rho_ref1.valveData.zetaTable.10,1.|rho_ref1.valveData.zetaTable.10,2.|rho_ref1.valveData.zetaTable.11,1.|rho_ref1.valveData.zetaTable.11,2.|rho_ref1.valveData.zetaTable.12,1.|rho_ref1.valveData.zetaTable.12,2.|rho_ref1.valveData.zetaTable.2,1.|rho_ref1.valveData.zetaTable.2,2.|rho_ref1.valveData.zetaTable.3,1.|rho_ref1.valveData.zetaTable.3,2.|rho_ref1.valveData.zetaTable.4,1.|rho_ref1.valveData.zetaTable.4,2.|rho_ref1.valveData.zetaTable.5,1.|rho_ref1.valveData.zetaTable.5,2.|rho_ref1.valveData.zetaTable.6,1.|rho_ref1.valveData.zetaTable.6,2.|rho_ref1.valveData.zetaTable.7,1.|rho_ref1.valveData.zetaTable.7,2.|rho_ref1.valveData.zetaTable.8,1.|rho_ref1.valveData.zetaTable.8,2.|rho_ref1.valveData.zetaTable.9,1.|rho_ref1.valveData.zetaTable.9,2.|rho_ref1.zeta|rho_ref1.zeta1",fileNamePrefix="ThermofluidStream_dev_ThermofluidStream.Undirected.FlowControl.Tests.ValveReferenceValues_Undirected",simflags="-alarm=1200 -emit_protected -lv LOG_STATS") LOG_ASSERT | warning | [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/Undirected/FlowControl/BasicControlValve.mo:42:5-48:28:writable] | | | | The following assertion has been violated during initialization at time 0.000000 | | | | ((abs(1e-5 * dp_ref.dp_ref - 1.0) <= 2.220446049250313e-16)) --> "In "ValveReferenceValues_Undirected.dp_ref": dp_ref must remain at its default value of 1 bar when m_flow_ref_set is not used. Modifying dp_ref leads to incorrect model behavior. Remove the dp_ref modifier." LOG_ASSERT | warning | [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/Undirected/FlowControl/BasicControlValve.mo:50:5-56:28:writable] | | | | The following assertion has been violated during initialization at time 0.000000 | | | | ((abs(0.001 * rho_ref.rho_ref - 1.0) <= 2.220446049250313e-16)) --> "In "ValveReferenceValues_Undirected.rho_ref": rho_ref must remain at its default value of 1000 kg/m3 when m_flow_ref_set is not used. Modifying rho_ref leads to incorrect model behavior. Remove the rho_ref modifier." LOG_ASSERT | warning | [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/Undirected/FlowControl/SpecificValveType.mo:56:5-62:28:writable] | | | | The following assertion has been violated during initialization at time 0.000000 | | | | ((abs(1e-5 * dp_ref1.dp_ref - 1.0) <= 2.220446049250313e-16)) --> "In "ValveReferenceValues_Undirected.dp_ref1": dp_ref must remain at its default value of 1 bar when using Kvs, Cvs_US, or Cvs_UK. Modifying dp_ref leads to incorrect model behavior. Remove the dp_ref modifier." LOG_ASSERT | warning | [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/Undirected/FlowControl/SpecificValveType.mo:64:5-70:28:writable] | | | | The following assertion has been violated during initialization at time 0.000000 | | | | ((abs(0.001 * rho_ref1.rho_ref - 1.0) <= 2.220446049250313e-16)) --> "In "ValveReferenceValues_Undirected.rho_ref1": rho_ref must remain at its default value of 1000 kg/m3 when using Kvs, Cvs_US, or Cvs_UK. Modifying rho_ref leads to incorrect model behavior. Remove the rho_ref modifier." LOG_SUCCESS | info | The initialization finished successfully without homotopy method. LOG_ASSERT | info | [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ThermofluidStream main/Undirected/FlowControl/Internal/PartialValve.mo:33:3-33:108:writable] | | | | The following assertion has been violated at time 15.000000 | | | | ((reference1.u_in <= 1.0 and reference1.u_in >= 0.0)) --> "Actuator signal out of valid range [0,1]" LOG_STATS | info | ### STATISTICS ### LOG_STATS | info | events LOG_STATS | info | | 2 state events LOG_STATS | info | | 0 time events LOG_STATS | info | solver: dassl-events LOG_STATS | info | | 445 steps taken LOG_STATS | info | | 783 calls of functionODE LOG_STATS | info | | 149 evaluations of jacobian LOG_STATS | info | | 46 error test failures LOG_STATS | info | | 0 convergence test failures LOG_STATS | info | | 11670 linear system solves LOG_SUCCESS | info | The simulation finished successfully.