startTime=0 stopTime=1800 tolerance=1e-06 numberOfIntervals=2500 stepSize=0.72 wasm-jit simulation: simulate(Physiolibrary.Fluid.Examples.MeanRespiration,startTime=0,stopTime=1800,tolerance=1e-06,numberOfIntervals=2500,outputFormat="empty",variableFilter="",fileNamePrefix="Physiolibrary_Physiolibrary.Fluid.Examples.MeanRespiration",simflags="-alarm=480 -lv LOG_STATS") LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_STDOUT | warning | Non-Linear Solver try to handle a problem with a called assert. LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_STDOUT | warning | While solving non-linear system an assertion failed during initialization. | | | | | The non-linear solver tries to solve the problem that could take some time. | | | | | It could help to provide better start-values for the iteration variables. | | | | | For more information simulate with -lv LOG_NLS_V LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i6], 298.15, p, v, I) for $i6 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i7], 298.15, 1e5, 0.0, 0.0) for $i7 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i6], 298.15, p, v, I) for $i6 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i7], 298.15, 1e5, 0.0, 0.0) for $i7 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i6], 298.15, p, v, I) for $i6 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i7], 298.15, 1e5, 0.0, 0.0) for $i7 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i6], 298.15, p, v, I) for $i6 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i7], 298.15, 1e5, 0.0, 0.0) for $i7 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i6], 298.15, p, v, I) for $i6 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.deadSpaceVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i7], 298.15, 1e5, 0.0, 0.0) for $i7 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_ASSERT | debug | Division by zero (h - X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificEnthalpy(substanceData[$i12], 298.15, p, v, I) for $i12 in 1:size(substanceData, 1))) / (X * array(Physiolibrary.Fluid.Examples.MeanRespiration.alveolarVentilation.Medium.stateOfMatter.specificHeatCapacityCp(substanceData[$i13], 298.15, 1e5, 0.0, 0.0) for $i13 in 1:size(substanceData, 1))) in function context LOG_SUCCESS | info | The initialization finished successfully without homotopy method. LOG_STATS | info | ### STATISTICS ### LOG_STATS | info | events LOG_STATS | info | | 0 state events LOG_STATS | info | | 0 time events LOG_STATS | info | solver: euler-events LOG_STATS | info | | 2500 steps taken LOG_STATS | info | | 2500 calls of functionODE LOG_STATS | info | | 0 evaluations of jacobian LOG_STATS | info | | 0 error test failures LOG_STATS | info | | 0 convergence test failures LOG_STATS | info | | 0 linear system solves LOG_SUCCESS | info | The simulation finished successfully.