python3 -m fmpy simulate --output-file ClaRa_ClaRa.Components.Sensors.Check.TestSensorVLE_L3_T_res.csv --start-time 0 --stop-time 15000 --timeout 50 --relative-tolerance 1e-06 --interface-type ModelExchange --solver CVode --output-interval 6 ClaRa_ClaRa_Components_Sensors_Check_TestSensorVLE_L3_T.fmu LOG_ASSERT | warning | [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.8.1/Basics/ControlVolumes/SolidVolumes/ThinPlateWall_L4.mo:30:3-30:170:writable] | | | | The following assertion has been violated at time 0.000000 | | | | ((temperatureSensorVLE_L3.sensorWall.mass_struc >= 0.0)) --> "Variable violating min constraint: 0.0 <= temperatureSensorVLE_L3.sensorWall.mass_struc, has value: -31.5603" LOG_ASSERT | warning | [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.8.1/Basics/ControlVolumes/SolidVolumes/ThinPlateWall_L4.mo:30:3-30:170:writable] | | | | The following assertion has been violated at time 0.000000 | | | | ((temperatureSensorVLE_L3_considerHeatConduction.sensorWall.mass_struc >= 0.0)) --> "Variable violating min constraint: 0.0 <= temperatureSensorVLE_L3_considerHeatConduction.sensorWall.mass_struc, has value: -31.5603" LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -4.20358e-06 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -6.41767e-06 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -9.79797e-06 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -1.49587e-05 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -2.28378e-05 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -3.48668e-05 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -5.32318e-05 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -8.12699e-05 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.000124076 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.000189429 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.000289205 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.000441535 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.000674099 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.00102916 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.00157124 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.00239883 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.00366235 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.00559138 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.00853649 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.0130329 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.0198976 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.0303784 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -0.04638 should be >= 0 LOG_ASSERT | debug | Model error: Argument of sqrt(1000.0 / valveVLE_L1_2.iCom.rho_in) was -22.2169 should be >= 0 LOG_STDOUT | warning | While solving non-linear system an assertion failed during initialization. | | | | | The non-linear solver tries to solve the problem that could take some time. | | | | | It could help to provide better start-values for the iteration variables. | | | | | For more information simulate with -lv LOG_NLS_V