Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/SMArtInt main/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/SMArtInt main/package.mo): time 0.008294/0.008294, allocations: 1.777 MB / 22.36 MB, free: 2.117 MB / 18.57 MB " [Timeout remaining time 180] 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 0.0008637/0.0008637, allocations: 81.83 kB / 26.19 MB, free: 6.078 MB / 18.57 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 0.001314/0.001314, allocations: 171.7 kB / 30.12 MB, free: 2.184 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 0.9378/0.9378, allocations: 177.2 MB / 211.1 MB, free: 3.414 MB / 186.7 MB " [Timeout remaining time 179] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.9.0/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.9.0/package.mo): time 0.6039/0.6039, allocations: 102.5 MB / 370.7 MB, free: 200 kB / 330.7 MB " [Timeout remaining time 179] Using package ClaRa with version 1.9.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.9.0/package.mo) Using package Modelica with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo) Using package Complex with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo) Using package ModelicaServices with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo) Using package SMArtInt with version 1.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/SMArtInt main/package.mo) Running command: translateModel(ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex,tolerance=1e-06,outputFormat="mat",numberOfIntervals=2500,variableFilter="Time|joinGas_L2_flex.bulk.h|joinGas_L2_flex.bulk.p|joinGas_L2_flex.bulk.xi.[0-9,]+.|splitGas_L2_flex.bulk.h|splitGas_L2_flex.bulk.p|splitGas_L2_flex.bulk.xi.[0-9,]+.",fileNamePrefix="ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex") translateModel(ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex,tolerance=1e-06,outputFormat="mat",numberOfIntervals=2500,variableFilter="Time|joinGas_L2_flex.bulk.h|joinGas_L2_flex.bulk.p|joinGas_L2_flex.bulk.xi.[0-9,]+.|splitGas_L2_flex.bulk.h|splitGas_L2_flex.bulk.p|splitGas_L2_flex.bulk.xi.[0-9,]+.",fileNamePrefix="ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex") [Timeout 800] "Notification: Performance of FrontEnd - loaded program: time 1.392e-06/1.392e-06, allocations: 0 / 471.2 MB, free: 18.83 MB / 410.8 MB Notification: Performance of FrontEnd - Absyn->SCode: time 2.467e-05/2.606e-05, allocations: 2.969 kB / 471.2 MB, free: 18.82 MB / 410.8 MB Notification: TILMedia requested package Modelica of version 4.0.0. Modelica 4.1.0 is used instead which states that it is fully compatible without conversion script needed. Notification: Automatically loaded package TILMedia 1.9.0 ClaRa due to usage. Notification: Performance of NFInst.instantiate(ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex): time 0.1291/0.1291, allocations: 63.6 MB / 0.5223 GB, free: 8.027 MB / 442.8 MB Notification: Performance of NFInst.instExpressions: time 0.02175/0.1509, allocations: 22.49 MB / 0.5443 GB, free: 1.477 MB / 458.8 MB Notification: Performance of NFInst.updateImplicitVariability: time 0.001723/0.1526, allocations: 67.69 kB / 0.5443 GB, free: 1.41 MB / 458.8 MB Notification: Performance of NFTyping.typeComponents: time 0.00262/0.1552, allocations: 1.542 MB / 0.5458 GB, free: 15.86 MB / 474.8 MB Notification: Performance of NFTyping.typeBindings: time 0.002641/0.1579, allocations: 1.608 MB / 0.5474 GB, free: 14.24 MB / 474.8 MB Notification: Performance of NFTyping.typeClassSections: time 0.006523/0.1644, allocations: 4.159 MB / 0.5515 GB, free: 10.07 MB / 474.8 MB Notification: Performance of NFFlatten.flatten: time 0.007893/0.1723, allocations: 9.018 MB / 0.5603 GB, free: 1.027 MB / 474.8 MB Notification: Performance of NFFlatten.resolveConnections: time 0.007151/0.1794, allocations: 6.935 MB / 0.5671 GB, free: 10.01 MB / 490.8 MB Notification: Performance of NFEvalConstants.evaluate: time 0.1365/0.316, allocations: 59.86 MB / 0.6255 GB, free: 15.25 MB / 0.5418 GB Notification: Performance of NFSimplifyModel.simplify: time 0.01017/0.3261, allocations: 8.846 MB / 0.6341 GB, free: 6.391 MB / 0.5418 GB Notification: Performance of NFPackage.collectConstants: time 0.005016/0.3311, allocations: 2.121 MB / 0.6362 GB, free: 4.27 MB / 0.5418 GB Notification: Performance of NFFlatten.collectFunctions: time 0.2175/0.5487, allocations: 5.404 MB / 0.6415 GB, free: 89.12 MB / 0.5418 GB Notification: Performance of NFScalarize.scalarize: time 0.008318/0.557, allocations: 8.966 MB / 0.6503 GB, free: 89.12 MB / 0.5418 GB Notification: Performance of NFVerifyModel.verify: time 0.01273/0.5697, allocations: 6.707 MB / 0.6568 GB, free: 89.12 MB / 0.5418 GB Notification: Performance of NFConvertDAE.convert: time 0.02947/0.5992, allocations: 25.69 MB / 0.6819 GB, free: 82.46 MB / 0.5418 GB Notification: Performance of FrontEnd - DAE generated: time 7.874e-06/0.5992, allocations: 7.75 kB / 0.6819 GB, free: 82.45 MB / 0.5418 GB Notification: Performance of FrontEnd: time 7.22e-07/0.5992, allocations: 0 / 0.6819 GB, free: 82.45 MB / 0.5418 GB Notification: Performance of Transformations before backend: time 0.0009265/0.6001, allocations: 0 / 0.6819 GB, free: 82.45 MB / 0.5418 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 1569 * Number of variables: 1569 Notification: Performance of Generate backend data structure: time 0.0497/0.6498, allocations: 21.14 MB / 0.7025 GB, free: 69.41 MB / 0.5418 GB Notification: Performance of prepare preOptimizeDAE: time 3.893e-05/0.6499, allocations: 10.75 kB / 0.7026 GB, free: 69.41 MB / 0.5418 GB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.009744/0.6596, allocations: 2.04 MB / 0.7045 GB, free: 68.36 MB / 0.5418 GB Notification: Performance of preOpt evaluateParameters (simulation): time 0.02427/0.6839, allocations: 14.17 MB / 0.7184 GB, free: 59.17 MB / 0.5418 GB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0002371/0.6841, allocations: 323.8 kB / 0.7187 GB, free: 59.03 MB / 0.5418 GB Notification: Performance of preOpt expandDerOperator (simulation): time 0.004465/0.6886, allocations: 0.7409 MB / 0.7194 GB, free: 58.85 MB / 0.5418 GB Notification: Performance of preOpt clockPartitioning (simulation): time 0.02926/0.7179, allocations: 33.3 MB / 0.7519 GB, free: 25.3 MB / 0.5418 GB Notification: Performance of preOpt findStateOrder (simulation): time 8.679e-05/0.7179, allocations: 12.25 kB / 0.7519 GB, free: 25.3 MB / 0.5418 GB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.001759/0.7197, allocations: 313.5 kB / 0.7522 GB, free: 25.13 MB / 0.5418 GB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.0004226/0.7201, allocations: 0.7855 MB / 0.753 GB, free: 24.44 MB / 0.5418 GB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.02445/0.7446, allocations: 15.02 MB / 0.7677 GB, free: 9.422 MB / 0.5418 GB Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.06618/0.8108, allocations: 37.98 MB / 0.8048 GB, free: 4.82 MB / 0.573 GB Notification: Performance of preOpt comSubExp (simulation): time 0.01702/0.8278, allocations: 6.839 MB / 0.8115 GB, free: 14.11 MB / 0.5887 GB Notification: Performance of preOpt resolveLoops (simulation): time 0.007239/0.835, allocations: 3.9 MB / 0.8153 GB, free: 10.21 MB / 0.5887 GB Notification: Performance of preOpt evalFunc (simulation): time 0.00177/0.8368, allocations: 0.6431 MB / 0.8159 GB, free: 9.562 MB / 0.5887 GB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.0002297/0.837, allocations: 219.1 kB / 0.8161 GB, free: 9.336 MB / 0.5887 GB Notification: Performance of pre-optimization done (n=904): time 1.123e-05/0.837, allocations: 0 / 0.8161 GB, free: 9.336 MB / 0.5887 GB Notification: Performance of matching and sorting (n=904): time 0.05275/0.8898, allocations: 19.8 MB / 0.8354 GB, free: 5.512 MB / 0.6043 GB Notification: Performance of inlineWhenForInitialization (initialization): time 0.002448/0.8922, allocations: 8.859 MB / 0.8441 GB, free: 10.54 MB / 0.6199 GB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.02337/0.9156, allocations: 13.72 MB / 0.8575 GB, free: 14.7 MB / 0.6355 GB Notification: Performance of collectPreVariables (initialization): time 0.002981/0.9186, allocations: 233.7 kB / 0.8577 GB, free: 14.46 MB / 0.6355 GB Notification: Performance of collectInitialEqns (initialization): time 0.007653/0.9262, allocations: 6.847 MB / 0.8644 GB, free: 8.133 MB / 0.6355 GB Notification: Performance of collectInitialBindings (initialization): time 0.005217/0.9314, allocations: 3.307 MB / 0.8676 GB, free: 5.016 MB / 0.6355 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.007044/0.9385, allocations: 2.148 MB / 0.8697 GB, free: 3.012 MB / 0.6355 GB Notification: Performance of setup shared object (initialization): time 0.0001055/0.9386, allocations: 476.8 kB / 0.8702 GB, free: 2.543 MB / 0.6355 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.2196/1.158, allocations: 3.541 MB / 0.8736 GB, free: 175.8 MB / 0.6355 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.01242/1.171, allocations: 16.29 MB / 0.8895 GB, free: 160.4 MB / 0.6355 GB Notification: Performance of analyzeInitialSystem (initialization): time 0.02281/1.193, allocations: 12.96 MB / 0.9022 GB, free: 159.5 MB / 0.6355 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 3.699e-05/1.193, allocations: 4.344 kB / 0.9022 GB, free: 159.5 MB / 0.6355 GB Notification: Performance of matching and sorting (n=990) (initialization): time 0.02447/1.218, allocations: 11.23 MB / 0.9132 GB, free: 159.3 MB / 0.6355 GB Notification: Performance of prepare postOptimizeDAE: time 3.277e-05/1.218, allocations: 8.5 kB / 0.9132 GB, free: 159.3 MB / 0.6355 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 2.988e-05/1.218, allocations: 14.09 kB / 0.9132 GB, free: 159.3 MB / 0.6355 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.0006819/1.219, allocations: 232.8 kB / 0.9134 GB, free: 159.3 MB / 0.6355 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.01214/1.231, allocations: 2.276 MB / 0.9156 GB, free: 159.3 MB / 0.6355 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.002163/1.233, allocations: 3.698 MB / 0.9192 GB, free: 155.9 MB / 0.6355 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.009257/1.242, allocations: 0.6801 MB / 0.9199 GB, free: 155.9 MB / 0.6355 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.0024/1.245, allocations: 0.6575 MB / 0.9205 GB, free: 155.9 MB / 0.6355 GB Warning: Assuming fixed start value for the following 22 variables: joinGas_L2_flex.bulk.p:VARIABLE(min = 0.0 start = joinGas_L2_flex.p_start unit = \"Pa\" fixed = true nominal = 1e5 stateSelect=StateSelect.prefer protected = true ) \"Pressure\" type: Real joinGas_L2_flex.bulk.h:VARIABLE(start = joinGas_L2_flex.h_start unit = \"J/kg\" fixed = true nominal = 1000.0 stateSelect=StateSelect.prefer protected = true ) \"Specific enthalpy\" type: Real joinGas_L2_flex.bulk.xi[1]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[1] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[2]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[2] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[3]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[3] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[4]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[4] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[5]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[5] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[6]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[6] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[7]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[7] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[8]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[8] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[9]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[9] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.p:VARIABLE(min = 0.0 start = splitGas_L2_flex.p_start unit = \"Pa\" fixed = true nominal = 1e5 stateSelect=StateSelect.prefer protected = true ) \"Pressure\" type: Real splitGas_L2_flex.bulk.h:VARIABLE(start = splitGas_L2_flex.h_start unit = \"J/kg\" fixed = true nominal = 1000.0 stateSelect=StateSelect.prefer protected = true ) \"Specific enthalpy\" type: Real splitGas_L2_flex.bulk.xi[1]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[1] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[2]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[2] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[3]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[3] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[4]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[4] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[5]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[5] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[6]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[6] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[7]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[7] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[8]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[8] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[9]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[9] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.01067/1.255, allocations: 3.903 MB / 0.9244 GB, free: 155.7 MB / 0.6355 GB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.009231/1.265, allocations: 16.18 MB / 0.9402 GB, free: 140.4 MB / 0.6355 GB Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 0.01832/1.283, allocations: 12.65 MB / 0.9525 GB, free: 131.2 MB / 0.6355 GB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 3.414e-05/1.283, allocations: 4 kB / 0.9525 GB, free: 131.2 MB / 0.6355 GB Notification: Performance of matching and sorting (n=990) (initialization_lambda0): time 0.02168/1.305, allocations: 11.08 MB / 0.9633 GB, free: 123.3 MB / 0.6355 GB Notification: Performance of prepare postOptimizeDAE: time 2.647e-05/1.305, allocations: 12 kB / 0.9633 GB, free: 123.3 MB / 0.6355 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 2.471e-05/1.305, allocations: 15.94 kB / 0.9634 GB, free: 123.3 MB / 0.6355 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.0004116/1.305, allocations: 208.8 kB / 0.9636 GB, free: 123.1 MB / 0.6355 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.01174/1.317, allocations: 2.269 MB / 0.9658 GB, free: 121.3 MB / 0.6355 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.001713/1.318, allocations: 3.661 MB / 0.9693 GB, free: 117.6 MB / 0.6355 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.009178/1.328, allocations: 0.7694 MB / 0.9701 GB, free: 117 MB / 0.6355 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.002338/1.33, allocations: 0.6564 MB / 0.9707 GB, free: 116.4 MB / 0.6355 GB Warning: Assuming fixed start value for the following 22 variables: joinGas_L2_flex.bulk.p:VARIABLE(min = 0.0 start = joinGas_L2_flex.p_start unit = \"Pa\" fixed = true nominal = 1e5 stateSelect=StateSelect.prefer protected = true ) \"Pressure\" type: Real joinGas_L2_flex.bulk.h:VARIABLE(start = joinGas_L2_flex.h_start unit = \"J/kg\" fixed = true nominal = 1000.0 stateSelect=StateSelect.prefer protected = true ) \"Specific enthalpy\" type: Real joinGas_L2_flex.bulk.xi[1]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[1] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[2]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[2] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[3]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[3] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[4]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[4] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[5]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[5] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[6]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[6] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[7]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[7] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[8]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[8] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] joinGas_L2_flex.bulk.xi[9]:VARIABLE(min = 0.0 max = 1.0 start = joinGas_L2_flex.xi_start[9] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.p:VARIABLE(min = 0.0 start = splitGas_L2_flex.p_start unit = \"Pa\" fixed = true nominal = 1e5 stateSelect=StateSelect.prefer protected = true ) \"Pressure\" type: Real splitGas_L2_flex.bulk.h:VARIABLE(start = splitGas_L2_flex.h_start unit = \"J/kg\" fixed = true nominal = 1000.0 stateSelect=StateSelect.prefer protected = true ) \"Specific enthalpy\" type: Real splitGas_L2_flex.bulk.xi[1]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[1] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[2]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[2] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[3]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[3] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[4]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[4] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[5]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[5] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[6]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[6] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[7]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[7] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[8]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[8] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] splitGas_L2_flex.bulk.xi[9]:VARIABLE(min = 0.0 max = 1.0 start = splitGas_L2_flex.xi_start[9] unit = \"1\" fixed = true nominal = 1.0 stateSelect=StateSelect.prefer protected = true ) \"Mass fraction\" type: Real [9] Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 53 * Number of states: 0 () * Number of discrete variables: 0 () * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (988): * Single equations (assignments): 986 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 2 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 0 systems * Non-linear torn systems (#iteration vars, #inner vars): 2 systems {(1,1), (1,1)} Notification: Performance of prepare postOptimizeDAE: time 0.003488/1.333, allocations: 1.006 MB / 0.9717 GB, free: 115.6 MB / 0.6355 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.005327/1.339, allocations: 1.779 MB / 0.9735 GB, free: 113.8 MB / 0.6355 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.02131/1.36, allocations: 14.85 MB / 0.988 GB, free: 101.5 MB / 0.6355 GB Notification: Performance of postOpt inlineArrayEqn (simulation): time 2.984e-05/1.36, allocations: 84 kB / 0.988 GB, free: 101.4 MB / 0.6355 GB Notification: Performance of postOpt constantLinearSystem (simulation): time 1.662e-05/1.36, allocations: 5.609 kB / 0.9881 GB, free: 101.4 MB / 0.6355 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 4.422e-05/1.36, allocations: 46.14 kB / 0.9881 GB, free: 101.4 MB / 0.6355 GB Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.01668/1.377, allocations: 13.15 MB / 1.001 GB, free: 90.91 MB / 0.6355 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 5.788e-05/1.377, allocations: 4 kB / 1.001 GB, free: 90.91 MB / 0.6355 GB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.01172/1.389, allocations: 2.116 MB / 1.003 GB, free: 88.89 MB / 0.6355 GB Notification: Performance of postOpt tearingSystem (simulation): time 0.0006792/1.389, allocations: 286 kB / 1.003 GB, free: 88.63 MB / 0.6355 GB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.001736/1.391, allocations: 359.8 kB / 1.004 GB, free: 88.28 MB / 0.6355 GB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 0.001382/1.392, allocations: 3.628 MB / 1.007 GB, free: 84.48 MB / 0.6355 GB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 1.122e-06/1.392, allocations: 0 / 1.007 GB, free: 84.48 MB / 0.6355 GB Notification: Performance of postOpt symbolicJacobian (simulation): time 0.0233/1.416, allocations: 15.45 MB / 1.022 GB, free: 69.12 MB / 0.6355 GB Notification: Performance of postOpt removeConstants (simulation): time 0.008616/1.424, allocations: 4.767 MB / 1.027 GB, free: 64.45 MB / 0.6355 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.00428/1.429, allocations: 232 kB / 1.027 GB, free: 64.22 MB / 0.6355 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.006508/1.435, allocations: 269.3 kB / 1.027 GB, free: 63.96 MB / 0.6355 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.001758/1.437, allocations: 0.6425 MB / 1.028 GB, free: 63.31 MB / 0.6355 GB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.001071/1.438, allocations: 0.6287 MB / 1.029 GB, free: 62.68 MB / 0.6355 GB Notification: Performance of sorting global known variables: time 0.009432/1.447, allocations: 7.195 MB / 1.036 GB, free: 56.16 MB / 0.6355 GB Notification: Performance of sort global known variables: time 1.71e-07/1.447, allocations: 0 / 1.036 GB, free: 56.16 MB / 0.6355 GB Notification: Performance of remove unused functions: time 0.02171/1.469, allocations: 7.265 MB / 1.043 GB, free: 49.11 MB / 0.6355 GB Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 2 * Number of states: 22 (joinGas_L2_flex.bulk.p,joinGas_L2_flex.bulk.h,joinGas_L2_flex.bulk.xi[1],joinGas_L2_flex.bulk.xi[2],joinGas_L2_flex.bulk.xi[3],joinGas_L2_flex.bulk.xi[4],joinGas_L2_flex.bulk.xi[5],joinGas_L2_flex.bulk.xi[6],joinGas_L2_flex.bulk.xi[7],joinGas_L2_flex.bulk.xi[8],joinGas_L2_flex.bulk.xi[9],splitGas_L2_flex.bulk.p,splitGas_L2_flex.bulk.h,splitGas_L2_flex.bulk.xi[1],splitGas_L2_flex.bulk.xi[2],splitGas_L2_flex.bulk.xi[3],splitGas_L2_flex.bulk.xi[4],splitGas_L2_flex.bulk.xi[5],splitGas_L2_flex.bulk.xi[6],splitGas_L2_flex.bulk.xi[7],splitGas_L2_flex.bulk.xi[8],splitGas_L2_flex.bulk.xi[9]) * Number of discrete variables: 0 () * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (896): * Single equations (assignments): 894 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 2 * Mixed (continuous/discrete) equation systems: 0 Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 2 systems {(1,1,100.0%), (1,1,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 0 systems Notification: Performance of Backend phase and start with SimCode phase: time 0.004806/1.474, allocations: 1.383 MB / 1.044 GB, free: 48.38 MB / 0.6355 GB Notification: Performance of simCode: created initialization part: time 0.02424/1.498, allocations: 16.1 MB / 1.06 GB, free: 32.57 MB / 0.6355 GB Notification: Performance of simCode: created event and clocks part: time 2.933e-05/1.498, allocations: 22.67 kB / 1.06 GB, free: 32.55 MB / 0.6355 GB Notification: Performance of simCode: created simulation system equations: time 0.006745/1.505, allocations: 5.39 MB / 1.065 GB, free: 27.2 MB / 0.6355 GB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.01549/1.52, allocations: 3.523 MB / 1.069 GB, free: 24.01 MB / 0.6355 GB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.03776/1.558, allocations: 26.68 MB / 1.095 GB, free: 13.84 MB / 0.6512 GB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.005602/1.564, allocations: 3.249 MB / 1.098 GB, free: 10.55 MB / 0.6512 GB Notification: Performance of simCode: alias equations: time 0.01817/1.582, allocations: 3.477 MB / 1.101 GB, free: 7.148 MB / 0.6512 GB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.02213/1.604, allocations: 4.565 MB / 1.106 GB, free: 2.578 MB / 0.6512 GB Notification: Performance of SimCode: time 2.074e-06/1.604, allocations: 0 / 1.106 GB, free: 2.578 MB / 0.6512 GB Notification: Performance of Templates: time 0.6838/2.288, allocations: 351 MB / 1.448 GB, free: 158 MB / 0.6668 GB " [Timeout remaining time 798] make -j1 -f ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.makefile [Timeout 800] (rm -f ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.pipe ; mkfifo ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.pipe ; head -c 1048576 < ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.pipe >> ../files/ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.sim & ./ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex -abortSlowSimulation -alarm=240 -emit_protected -lv LOG_STATS > ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.pipe 2>&1) [Timeout 240] diffSimulationResults("ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex_res.mat","/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/ReferenceFiles/ClaRa/ReferenceResults/ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.mat","",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) [Timeout 800] "" [Timeout remaining time 800] "" Variables in the reference:Time,joinGas_L2_flex.bulk.h,joinGas_L2_flex.bulk.p,joinGas_L2_flex.bulk.xi[1],joinGas_L2_flex.bulk.xi[2],joinGas_L2_flex.bulk.xi[3],joinGas_L2_flex.bulk.xi[4],joinGas_L2_flex.bulk.xi[5],joinGas_L2_flex.bulk.xi[6],joinGas_L2_flex.bulk.xi[7],joinGas_L2_flex.bulk.xi[8],joinGas_L2_flex.bulk.xi[9],splitGas_L2_flex.bulk.h,splitGas_L2_flex.bulk.p,splitGas_L2_flex.bulk.xi[1],splitGas_L2_flex.bulk.xi[2],splitGas_L2_flex.bulk.xi[3],splitGas_L2_flex.bulk.xi[4],splitGas_L2_flex.bulk.xi[5],splitGas_L2_flex.bulk.xi[6],splitGas_L2_flex.bulk.xi[7],splitGas_L2_flex.bulk.xi[8],splitGas_L2_flex.bulk.xi[9] Variables in the result:joinGas_L2_flex.N_ports_in,joinGas_L2_flex.T_nom,joinGas_L2_flex.T_start,joinGas_L2_flex.bulk.M_i[10],joinGas_L2_flex.bulk.M_i[1],joinGas_L2_flex.bulk.M_i[2],joinGas_L2_flex.bulk.M_i[3],joinGas_L2_flex.bulk.M_i[4],joinGas_L2_flex.bulk.M_i[5],joinGas_L2_flex.bulk.M_i[6],joinGas_L2_flex.bulk.M_i[7],joinGas_L2_flex.bulk.M_i[8],joinGas_L2_flex.bulk.M_i[9],joinGas_L2_flex.bulk.computeFlags,joinGas_L2_flex.bulk.computeTransportProperties,joinGas_L2_flex.bulk.gasType.defaultMixingRatio[10],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[1],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[2],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[3],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[4],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[5],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[6],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[7],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[8],joinGas_L2_flex.bulk.gasType.defaultMixingRatio[9],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[10],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[1],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[2],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[3],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[4],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[5],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[6],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[7],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[8],joinGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[9],joinGas_L2_flex.bulk.gasType.xi_default[1],joinGas_L2_flex.bulk.gasType.xi_default[2],joinGas_L2_flex.bulk.gasType.xi_default[3],joinGas_L2_flex.bulk.gasType.xi_default[4],joinGas_L2_flex.bulk.gasType.xi_default[5],joinGas_L2_flex.bulk.gasType.xi_default[6],joinGas_L2_flex.bulk.gasType.xi_default[7],joinGas_L2_flex.bulk.gasType.xi_default[8],joinGas_L2_flex.bulk.gasType.xi_default[9],joinGas_L2_flex.bulk.h,joinGas_L2_flex.bulk.p,joinGas_L2_flex.bulk.stateSelectPreferForInputs,joinGas_L2_flex.bulk.xi[1],joinGas_L2_flex.bulk.xi[2],joinGas_L2_flex.bulk.xi[3],joinGas_L2_flex.bulk.xi[4],joinGas_L2_flex.bulk.xi[5],joinGas_L2_flex.bulk.xi[6],joinGas_L2_flex.bulk.xi[7],joinGas_L2_flex.bulk.xi[8],joinGas_L2_flex.bulk.xi[9],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[10],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[1],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[2],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[3],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[4],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[5],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[6],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[7],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[8],joinGas_L2_flex.eye_int[1].medium.defaultMixingRatio[9],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[10],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[1],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[2],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[3],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[4],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[5],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[6],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[7],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[8],joinGas_L2_flex.eye_int[1].medium.mixingRatio_propertyCalculation[9],joinGas_L2_flex.eye_int[1].medium.xi_default[1],joinGas_L2_flex.eye_int[1].medium.xi_default[2],joinGas_L2_flex.eye_int[1].medium.xi_default[3],joinGas_L2_flex.eye_int[1].medium.xi_default[4],joinGas_L2_flex.eye_int[1].medium.xi_default[5],joinGas_L2_flex.eye_int[1].medium.xi_default[6],joinGas_L2_flex.eye_int[1].medium.xi_default[7],joinGas_L2_flex.eye_int[1].medium.xi_default[8],joinGas_L2_flex.eye_int[1].medium.xi_default[9],joinGas_L2_flex.gasInlet[1].M_i[10],joinGas_L2_flex.gasInlet[1].M_i[1],joinGas_L2_flex.gasInlet[1].M_i[2],joinGas_L2_flex.gasInlet[1].M_i[3],joinGas_L2_flex.gasInlet[1].M_i[4],joinGas_L2_flex.gasInlet[1].M_i[5],joinGas_L2_flex.gasInlet[1].M_i[6],joinGas_L2_flex.gasInlet[1].M_i[7],joinGas_L2_flex.gasInlet[1].M_i[8],joinGas_L2_flex.gasInlet[1].M_i[9],joinGas_L2_flex.gasInlet[1].computeFlags,joinGas_L2_flex.gasInlet[1].computeTransportProperties,joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[10],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[1],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[2],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[3],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[4],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[5],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[6],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[7],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[8],joinGas_L2_flex.gasInlet[1].gasType.defaultMixingRatio[9],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[10],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[1],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[2],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[3],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[4],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[5],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[6],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[7],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[8],joinGas_L2_flex.gasInlet[1].gasType.mixingRatio_propertyCalculation[9],joinGas_L2_flex.gasInlet[1].gasType.xi_default[1],joinGas_L2_flex.gasInlet[1].gasType.xi_default[2],joinGas_L2_flex.gasInlet[1].gasType.xi_default[3],joinGas_L2_flex.gasInlet[1].gasType.xi_default[4],joinGas_L2_flex.gasInlet[1].gasType.xi_default[5],joinGas_L2_flex.gasInlet[1].gasType.xi_default[6],joinGas_L2_flex.gasInlet[1].gasType.xi_default[7],joinGas_L2_flex.gasInlet[1].gasType.xi_default[8],joinGas_L2_flex.gasInlet[1].gasType.xi_default[9],joinGas_L2_flex.gasInlet[1].stateSelectPreferForInputs,joinGas_L2_flex.gasInlet[2].M_i[10],joinGas_L2_flex.gasInlet[2].M_i[1],joinGas_L2_flex.gasInlet[2].M_i[2],joinGas_L2_flex.gasInlet[2].M_i[3],joinGas_L2_flex.gasInlet[2].M_i[4],joinGas_L2_flex.gasInlet[2].M_i[5],joinGas_L2_flex.gasInlet[2].M_i[6],joinGas_L2_flex.gasInlet[2].M_i[7],joinGas_L2_flex.gasInlet[2].M_i[8],joinGas_L2_flex.gasInlet[2].M_i[9],joinGas_L2_flex.gasInlet[2].computeFlags,joinGas_L2_flex.gasInlet[2].computeTransportProperties,joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[10],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[1],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[2],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[3],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[4],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[5],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[6],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[7],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[8],joinGas_L2_flex.gasInlet[2].gasType.defaultMixingRatio[9],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[10],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[1],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[2],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[3],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[4],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[5],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[6],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[7],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[8],joinGas_L2_flex.gasInlet[2].gasType.mixingRatio_propertyCalculation[9],joinGas_L2_flex.gasInlet[2].gasType.xi_default[1],joinGas_L2_flex.gasInlet[2].gasType.xi_default[2],joinGas_L2_flex.gasInlet[2].gasType.xi_default[3],joinGas_L2_flex.gasInlet[2].gasType.xi_default[4],joinGas_L2_flex.gasInlet[2].gasType.xi_default[5],joinGas_L2_flex.gasInlet[2].gasType.xi_default[6],joinGas_L2_flex.gasInlet[2].gasType.xi_default[7],joinGas_L2_flex.gasInlet[2].gasType.xi_default[8],joinGas_L2_flex.gasInlet[2].gasType.xi_default[9],joinGas_L2_flex.gasInlet[2].stateSelectPreferForInputs,joinGas_L2_flex.gasInlet[3].M_i[10],joinGas_L2_flex.gasInlet[3].M_i[1],joinGas_L2_flex.gasInlet[3].M_i[2],joinGas_L2_flex.gasInlet[3].M_i[3],joinGas_L2_flex.gasInlet[3].M_i[4],joinGas_L2_flex.gasInlet[3].M_i[5],joinGas_L2_flex.gasInlet[3].M_i[6],joinGas_L2_flex.gasInlet[3].M_i[7],joinGas_L2_flex.gasInlet[3].M_i[8],joinGas_L2_flex.gasInlet[3].M_i[9],joinGas_L2_flex.gasInlet[3].computeFlags,joinGas_L2_flex.gasInlet[3].computeTransportProperties,joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[10],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[1],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[2],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[3],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[4],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[5],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[6],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[7],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[8],joinGas_L2_flex.gasInlet[3].gasType.defaultMixingRatio[9],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[10],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[1],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[2],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[3],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[4],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[5],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[6],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[7],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[8],joinGas_L2_flex.gasInlet[3].gasType.mixingRatio_propertyCalculation[9],joinGas_L2_flex.gasInlet[3].gasType.xi_default[1],joinGas_L2_flex.gasInlet[3].gasType.xi_default[2],joinGas_L2_flex.gasInlet[3].gasType.xi_default[3],joinGas_L2_flex.gasInlet[3].gasType.xi_default[4],joinGas_L2_flex.gasInlet[3].gasType.xi_default[5],joinGas_L2_flex.gasInlet[3].gasType.xi_default[6],joinGas_L2_flex.gasInlet[3].gasType.xi_default[7],joinGas_L2_flex.gasInlet[3].gasType.xi_default[8],joinGas_L2_flex.gasInlet[3].gasType.xi_default[9],joinGas_L2_flex.gasInlet[3].stateSelectPreferForInputs,joinGas_L2_flex.gasOutlet.M_i[10],joinGas_L2_flex.gasOutlet.M_i[1],joinGas_L2_flex.gasOutlet.M_i[2],joinGas_L2_flex.gasOutlet.M_i[3],joinGas_L2_flex.gasOutlet.M_i[4],joinGas_L2_flex.gasOutlet.M_i[5],joinGas_L2_flex.gasOutlet.M_i[6],joinGas_L2_flex.gasOutlet.M_i[7],joinGas_L2_flex.gasOutlet.M_i[8],joinGas_L2_flex.gasOutlet.M_i[9],joinGas_L2_flex.gasOutlet.computeFlags,joinGas_L2_flex.gasOutlet.computeTransportProperties,joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[10],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[1],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[2],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[3],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[4],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[5],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[6],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[7],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[8],joinGas_L2_flex.gasOutlet.gasType.defaultMixingRatio[9],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[10],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[1],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[2],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[3],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[4],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[5],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[6],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[7],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[8],joinGas_L2_flex.gasOutlet.gasType.mixingRatio_propertyCalculation[9],joinGas_L2_flex.gasOutlet.gasType.xi_default[1],joinGas_L2_flex.gasOutlet.gasType.xi_default[2],joinGas_L2_flex.gasOutlet.gasType.xi_default[3],joinGas_L2_flex.gasOutlet.gasType.xi_default[4],joinGas_L2_flex.gasOutlet.gasType.xi_default[5],joinGas_L2_flex.gasOutlet.gasType.xi_default[6],joinGas_L2_flex.gasOutlet.gasType.xi_default[7],joinGas_L2_flex.gasOutlet.gasType.xi_default[8],joinGas_L2_flex.gasOutlet.gasType.xi_default[9],joinGas_L2_flex.gasOutlet.stateSelectPreferForInputs,joinGas_L2_flex.h_start,joinGas_L2_flex.initOption,joinGas_L2_flex.m_flow_in_nom[1],joinGas_L2_flex.m_flow_in_nom[2],joinGas_L2_flex.m_flow_in_nom[3],joinGas_L2_flex.p_nom,joinGas_L2_flex.p_start,joinGas_L2_flex.rho_nom,joinGas_L2_flex.showData,joinGas_L2_flex.summary.N_ports_in,joinGas_L2_flex.useHomotopy,joinGas_L2_flex.volume,joinGas_L2_flex.xi_nom[1],joinGas_L2_flex.xi_nom[2],joinGas_L2_flex.xi_nom[3],joinGas_L2_flex.xi_nom[4],joinGas_L2_flex.xi_nom[5],joinGas_L2_flex.xi_nom[6],joinGas_L2_flex.xi_nom[7],joinGas_L2_flex.xi_nom[8],joinGas_L2_flex.xi_nom[9],joinGas_L2_flex.xi_start[1],joinGas_L2_flex.xi_start[2],joinGas_L2_flex.xi_start[3],joinGas_L2_flex.xi_start[4],joinGas_L2_flex.xi_start[5],joinGas_L2_flex.xi_start[6],joinGas_L2_flex.xi_start[7],joinGas_L2_flex.xi_start[8],joinGas_L2_flex.xi_start[9],simCenter.MaxSimTime,simCenter.T_amb_start,simCenter.contributeToCycleSummary,simCenter.fuelModel1.C_LHV[1],simCenter.fuelModel1.C_LHV[2],simCenter.fuelModel1.C_LHV[3],simCenter.fuelModel1.C_cp[1],simCenter.fuelModel1.C_cp[2],simCenter.fuelModel1.C_cp[3],simCenter.fuelModel1.xi_e_waf[1,1],simCenter.fuelModel1.xi_e_waf[1,2],simCenter.fuelModel1.xi_e_waf[1,3],simCenter.fuelModel1.xi_e_waf[1,4],simCenter.fuelModel2.C_LHV[1],simCenter.fuelModel2.C_LHV[2],simCenter.fuelModel2.C_LHV[3],simCenter.fuelModel2.C_cp[1],simCenter.fuelModel2.C_cp[2],simCenter.fuelModel2.C_cp[3],simCenter.fuelModel2.xi_e_waf[1,1],simCenter.fuelModel2.xi_e_waf[1,2],simCenter.fuelModel2.xi_e_waf[1,3],simCenter.fuelModel2.xi_e_waf[1,4],simCenter.h_amb_fluid1,simCenter.h_amb_fluid2,simCenter.h_amb_fluid3,simCenter.largeFonts,simCenter.p_amb_start,simCenter.s_amb_fluid1,simCenter.s_amb_fluid2,simCenter.s_amb_fluid3,simCenter.showExpertSummary,simCenter.steamCycleAllowFlowReversal,simCenter.useClaRaDelay,simCenter.useHomotopy,simCenter.vleFluid_amb1.computeSurfaceTension,simCenter.vleFluid_amb1.computeTransportProperties,simCenter.vleFluid_amb1.deactivateDensityDerivatives,simCenter.vleFluid_amb1.deactivateTwoPhaseRegion,simCenter.vleFluid_amb1.interpolateTransportProperties,simCenter.vleFluid_amb1.vleFluidType.defaultMixingRatio[1],simCenter.vleFluid_amb1.vleFluidType.mixingRatio_propertyCalculation[1],simCenter.vleFluid_amb2.computeSurfaceTension,simCenter.vleFluid_amb2.computeTransportProperties,simCenter.vleFluid_amb2.deactivateDensityDerivatives,simCenter.vleFluid_amb2.deactivateTwoPhaseRegion,simCenter.vleFluid_amb2.interpolateTransportProperties,simCenter.vleFluid_amb2.vleFluidType.defaultMixingRatio[1],simCenter.vleFluid_amb2.vleFluidType.mixingRatio_propertyCalculation[1],simCenter.vleFluid_amb3.computeSurfaceTension,simCenter.vleFluid_amb3.computeTransportProperties,simCenter.vleFluid_amb3.deactivateDensityDerivatives,simCenter.vleFluid_amb3.deactivateTwoPhaseRegion,simCenter.vleFluid_amb3.interpolateTransportProperties,simCenter.vleFluid_amb3.vleFluidType.defaultMixingRatio[1],simCenter.vleFluid_amb3.vleFluidType.mixingRatio_propertyCalculation[1],sink.GasObject.computeTransportProperties,sink.GasObject.gasType.defaultMixingRatio[10],sink.GasObject.gasType.defaultMixingRatio[1],sink.GasObject.gasType.defaultMixingRatio[2],sink.GasObject.gasType.defaultMixingRatio[3],sink.GasObject.gasType.defaultMixingRatio[4],sink.GasObject.gasType.defaultMixingRatio[5],sink.GasObject.gasType.defaultMixingRatio[6],sink.GasObject.gasType.defaultMixingRatio[7],sink.GasObject.gasType.defaultMixingRatio[8],sink.GasObject.gasType.defaultMixingRatio[9],sink.GasObject.gasType.mixingRatio_propertyCalculation[10],sink.GasObject.gasType.mixingRatio_propertyCalculation[1],sink.GasObject.gasType.mixingRatio_propertyCalculation[2],sink.GasObject.gasType.mixingRatio_propertyCalculation[3],sink.GasObject.gasType.mixingRatio_propertyCalculation[4],sink.GasObject.gasType.mixingRatio_propertyCalculation[5],sink.GasObject.gasType.mixingRatio_propertyCalculation[6],sink.GasObject.gasType.mixingRatio_propertyCalculation[7],sink.GasObject.gasType.mixingRatio_propertyCalculation[8],sink.GasObject.gasType.mixingRatio_propertyCalculation[9],sink.GasObject.gasType.xi_default[1],sink.GasObject.gasType.xi_default[2],sink.GasObject.gasType.xi_default[3],sink.GasObject.gasType.xi_default[4],sink.GasObject.gasType.xi_default[5],sink.GasObject.gasType.xi_default[6],sink.GasObject.gasType.xi_default[7],sink.GasObject.gasType.xi_default[8],sink.GasObject.gasType.xi_default[9],sink.T_const,sink.contributeToCycleSummary,sink.energyType,sink.eye_int[1].medium.defaultMixingRatio[10],sink.eye_int[1].medium.defaultMixingRatio[1],sink.eye_int[1].medium.defaultMixingRatio[2],sink.eye_int[1].medium.defaultMixingRatio[3],sink.eye_int[1].medium.defaultMixingRatio[4],sink.eye_int[1].medium.defaultMixingRatio[5],sink.eye_int[1].medium.defaultMixingRatio[6],sink.eye_int[1].medium.defaultMixingRatio[7],sink.eye_int[1].medium.defaultMixingRatio[8],sink.eye_int[1].medium.defaultMixingRatio[9],sink.eye_int[1].medium.mixingRatio_propertyCalculation[10],sink.eye_int[1].medium.mixingRatio_propertyCalculation[1],sink.eye_int[1].medium.mixingRatio_propertyCalculation[2],sink.eye_int[1].medium.mixingRatio_propertyCalculation[3],sink.eye_int[1].medium.mixingRatio_propertyCalculation[4],sink.eye_int[1].medium.mixingRatio_propertyCalculation[5],sink.eye_int[1].medium.mixingRatio_propertyCalculation[6],sink.eye_int[1].medium.mixingRatio_propertyCalculation[7],sink.eye_int[1].medium.mixingRatio_propertyCalculation[8],sink.eye_int[1].medium.mixingRatio_propertyCalculation[9],sink.eye_int[1].medium.xi_default[1],sink.eye_int[1].medium.xi_default[2],sink.eye_int[1].medium.xi_default[3],sink.eye_int[1].medium.xi_default[4],sink.eye_int[1].medium.xi_default[5],sink.eye_int[1].medium.xi_default[6],sink.eye_int[1].medium.xi_default[7],sink.eye_int[1].medium.xi_default[8],sink.eye_int[1].medium.xi_default[9],sink.m_flow_const,sink.variable_T,sink.variable_m_flow,sink.variable_xi,sink.xi_const[1],sink.xi_const[2],sink.xi_const[3],sink.xi_const[4],sink.xi_const[5],sink.xi_const[6],sink.xi_const[7],sink.xi_const[8],sink.xi_const[9],sink1.GasObject.computeTransportProperties,sink1.GasObject.gasType.defaultMixingRatio[10],sink1.GasObject.gasType.defaultMixingRatio[1],sink1.GasObject.gasType.defaultMixingRatio[2],sink1.GasObject.gasType.defaultMixingRatio[3],sink1.GasObject.gasType.defaultMixingRatio[4],sink1.GasObject.gasType.defaultMixingRatio[5],sink1.GasObject.gasType.defaultMixingRatio[6],sink1.GasObject.gasType.defaultMixingRatio[7],sink1.GasObject.gasType.defaultMixingRatio[8],sink1.GasObject.gasType.defaultMixingRatio[9],sink1.GasObject.gasType.mixingRatio_propertyCalculation[10],sink1.GasObject.gasType.mixingRatio_propertyCalculation[1],sink1.GasObject.gasType.mixingRatio_propertyCalculation[2],sink1.GasObject.gasType.mixingRatio_propertyCalculation[3],sink1.GasObject.gasType.mixingRatio_propertyCalculation[4],sink1.GasObject.gasType.mixingRatio_propertyCalculation[5],sink1.GasObject.gasType.mixingRatio_propertyCalculation[6],sink1.GasObject.gasType.mixingRatio_propertyCalculation[7],sink1.GasObject.gasType.mixingRatio_propertyCalculation[8],sink1.GasObject.gasType.mixingRatio_propertyCalculation[9],sink1.GasObject.gasType.xi_default[1],sink1.GasObject.gasType.xi_default[2],sink1.GasObject.gasType.xi_default[3],sink1.GasObject.gasType.xi_default[4],sink1.GasObject.gasType.xi_default[5],sink1.GasObject.gasType.xi_default[6],sink1.GasObject.gasType.xi_default[7],sink1.GasObject.gasType.xi_default[8],sink1.GasObject.gasType.xi_default[9],sink1.T_const,sink1.contributeToCycleSummary,sink1.energyType,sink1.eye_int[1].medium.defaultMixingRatio[10],sink1.eye_int[1].medium.defaultMixingRatio[1],sink1.eye_int[1].medium.defaultMixingRatio[2],sink1.eye_int[1].medium.defaultMixingRatio[3],sink1.eye_int[1].medium.defaultMixingRatio[4],sink1.eye_int[1].medium.defaultMixingRatio[5],sink1.eye_int[1].medium.defaultMixingRatio[6],sink1.eye_int[1].medium.defaultMixingRatio[7],sink1.eye_int[1].medium.defaultMixingRatio[8],sink1.eye_int[1].medium.defaultMixingRatio[9],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[10],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[1],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[2],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[3],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[4],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[5],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[6],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[7],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[8],sink1.eye_int[1].medium.mixingRatio_propertyCalculation[9],sink1.eye_int[1].medium.xi_default[1],sink1.eye_int[1].medium.xi_default[2],sink1.eye_int[1].medium.xi_default[3],sink1.eye_int[1].medium.xi_default[4],sink1.eye_int[1].medium.xi_default[5],sink1.eye_int[1].medium.xi_default[6],sink1.eye_int[1].medium.xi_default[7],sink1.eye_int[1].medium.xi_default[8],sink1.eye_int[1].medium.xi_default[9],sink1.m_flow_const,sink1.variable_T,sink1.variable_m_flow,sink1.variable_xi,sink1.xi_const[1],sink1.xi_const[2],sink1.xi_const[3],sink1.xi_const[4],sink1.xi_const[5],sink1.xi_const[6],sink1.xi_const[7],sink1.xi_const[8],sink1.xi_const[9],source1.GasObject.computeTransportProperties,source1.GasObject.gasType.defaultMixingRatio[10],source1.GasObject.gasType.defaultMixingRatio[1],source1.GasObject.gasType.defaultMixingRatio[2],source1.GasObject.gasType.defaultMixingRatio[3],source1.GasObject.gasType.defaultMixingRatio[4],source1.GasObject.gasType.defaultMixingRatio[5],source1.GasObject.gasType.defaultMixingRatio[6],source1.GasObject.gasType.defaultMixingRatio[7],source1.GasObject.gasType.defaultMixingRatio[8],source1.GasObject.gasType.defaultMixingRatio[9],source1.GasObject.gasType.mixingRatio_propertyCalculation[10],source1.GasObject.gasType.mixingRatio_propertyCalculation[1],source1.GasObject.gasType.mixingRatio_propertyCalculation[2],source1.GasObject.gasType.mixingRatio_propertyCalculation[3],source1.GasObject.gasType.mixingRatio_propertyCalculation[4],source1.GasObject.gasType.mixingRatio_propertyCalculation[5],source1.GasObject.gasType.mixingRatio_propertyCalculation[6],source1.GasObject.gasType.mixingRatio_propertyCalculation[7],source1.GasObject.gasType.mixingRatio_propertyCalculation[8],source1.GasObject.gasType.mixingRatio_propertyCalculation[9],source1.GasObject.gasType.xi_default[1],source1.GasObject.gasType.xi_default[2],source1.GasObject.gasType.xi_default[3],source1.GasObject.gasType.xi_default[4],source1.GasObject.gasType.xi_default[5],source1.GasObject.gasType.xi_default[6],source1.GasObject.gasType.xi_default[7],source1.GasObject.gasType.xi_default[8],source1.GasObject.gasType.xi_default[9],source1.T_const,source1.contributeToCycleSummary,source1.energyType,source1.eye_int[1].medium.defaultMixingRatio[10],source1.eye_int[1].medium.defaultMixingRatio[1],source1.eye_int[1].medium.defaultMixingRatio[2],source1.eye_int[1].medium.defaultMixingRatio[3],source1.eye_int[1].medium.defaultMixingRatio[4],source1.eye_int[1].medium.defaultMixingRatio[5],source1.eye_int[1].medium.defaultMixingRatio[6],source1.eye_int[1].medium.defaultMixingRatio[7],source1.eye_int[1].medium.defaultMixingRatio[8],source1.eye_int[1].medium.defaultMixingRatio[9],source1.eye_int[1].medium.mixingRatio_propertyCalculation[10],source1.eye_int[1].medium.mixingRatio_propertyCalculation[1],source1.eye_int[1].medium.mixingRatio_propertyCalculation[2],source1.eye_int[1].medium.mixingRatio_propertyCalculation[3],source1.eye_int[1].medium.mixingRatio_propertyCalculation[4],source1.eye_int[1].medium.mixingRatio_propertyCalculation[5],source1.eye_int[1].medium.mixingRatio_propertyCalculation[6],source1.eye_int[1].medium.mixingRatio_propertyCalculation[7],source1.eye_int[1].medium.mixingRatio_propertyCalculation[8],source1.eye_int[1].medium.mixingRatio_propertyCalculation[9],source1.eye_int[1].medium.xi_default[1],source1.eye_int[1].medium.xi_default[2],source1.eye_int[1].medium.xi_default[3],source1.eye_int[1].medium.xi_default[4],source1.eye_int[1].medium.xi_default[5],source1.eye_int[1].medium.xi_default[6],source1.eye_int[1].medium.xi_default[7],source1.eye_int[1].medium.xi_default[8],source1.eye_int[1].medium.xi_default[9],source1.m_flow_const,source1.variable_T,source1.variable_m_flow,source1.variable_xi,source1.xi_const[1],source1.xi_const[2],source1.xi_const[3],source1.xi_const[4],source1.xi_const[5],source1.xi_const[6],source1.xi_const[7],source1.xi_const[8],source1.xi_const[9],source2.GasObject.computeTransportProperties,source2.GasObject.gasType.defaultMixingRatio[10],source2.GasObject.gasType.defaultMixingRatio[1],source2.GasObject.gasType.defaultMixingRatio[2],source2.GasObject.gasType.defaultMixingRatio[3],source2.GasObject.gasType.defaultMixingRatio[4],source2.GasObject.gasType.defaultMixingRatio[5],source2.GasObject.gasType.defaultMixingRatio[6],source2.GasObject.gasType.defaultMixingRatio[7],source2.GasObject.gasType.defaultMixingRatio[8],source2.GasObject.gasType.defaultMixingRatio[9],source2.GasObject.gasType.mixingRatio_propertyCalculation[10],source2.GasObject.gasType.mixingRatio_propertyCalculation[1],source2.GasObject.gasType.mixingRatio_propertyCalculation[2],source2.GasObject.gasType.mixingRatio_propertyCalculation[3],source2.GasObject.gasType.mixingRatio_propertyCalculation[4],source2.GasObject.gasType.mixingRatio_propertyCalculation[5],source2.GasObject.gasType.mixingRatio_propertyCalculation[6],source2.GasObject.gasType.mixingRatio_propertyCalculation[7],source2.GasObject.gasType.mixingRatio_propertyCalculation[8],source2.GasObject.gasType.mixingRatio_propertyCalculation[9],source2.GasObject.gasType.xi_default[1],source2.GasObject.gasType.xi_default[2],source2.GasObject.gasType.xi_default[3],source2.GasObject.gasType.xi_default[4],source2.GasObject.gasType.xi_default[5],source2.GasObject.gasType.xi_default[6],source2.GasObject.gasType.xi_default[7],source2.GasObject.gasType.xi_default[8],source2.GasObject.gasType.xi_default[9],source2.T_const,source2.contributeToCycleSummary,source2.energyType,source2.eye_int[1].medium.defaultMixingRatio[10],source2.eye_int[1].medium.defaultMixingRatio[1],source2.eye_int[1].medium.defaultMixingRatio[2],source2.eye_int[1].medium.defaultMixingRatio[3],source2.eye_int[1].medium.defaultMixingRatio[4],source2.eye_int[1].medium.defaultMixingRatio[5],source2.eye_int[1].medium.defaultMixingRatio[6],source2.eye_int[1].medium.defaultMixingRatio[7],source2.eye_int[1].medium.defaultMixingRatio[8],source2.eye_int[1].medium.defaultMixingRatio[9],source2.eye_int[1].medium.mixingRatio_propertyCalculation[10],source2.eye_int[1].medium.mixingRatio_propertyCalculation[1],source2.eye_int[1].medium.mixingRatio_propertyCalculation[2],source2.eye_int[1].medium.mixingRatio_propertyCalculation[3],source2.eye_int[1].medium.mixingRatio_propertyCalculation[4],source2.eye_int[1].medium.mixingRatio_propertyCalculation[5],source2.eye_int[1].medium.mixingRatio_propertyCalculation[6],source2.eye_int[1].medium.mixingRatio_propertyCalculation[7],source2.eye_int[1].medium.mixingRatio_propertyCalculation[8],source2.eye_int[1].medium.mixingRatio_propertyCalculation[9],source2.eye_int[1].medium.xi_default[1],source2.eye_int[1].medium.xi_default[2],source2.eye_int[1].medium.xi_default[3],source2.eye_int[1].medium.xi_default[4],source2.eye_int[1].medium.xi_default[5],source2.eye_int[1].medium.xi_default[6],source2.eye_int[1].medium.xi_default[7],source2.eye_int[1].medium.xi_default[8],source2.eye_int[1].medium.xi_default[9],source2.m_flow_const,source2.variable_T,source2.variable_m_flow,source2.variable_xi,source2.xi_const[1],source2.xi_const[2],source2.xi_const[3],source2.xi_const[4],source2.xi_const[5],source2.xi_const[6],source2.xi_const[7],source2.xi_const[8],source2.xi_const[9],source3.GasObject.computeTransportProperties,source3.GasObject.gasType.defaultMixingRatio[10],source3.GasObject.gasType.defaultMixingRatio[1],source3.GasObject.gasType.defaultMixingRatio[2],source3.GasObject.gasType.defaultMixingRatio[3],source3.GasObject.gasType.defaultMixingRatio[4],source3.GasObject.gasType.defaultMixingRatio[5],source3.GasObject.gasType.defaultMixingRatio[6],source3.GasObject.gasType.defaultMixingRatio[7],source3.GasObject.gasType.defaultMixingRatio[8],source3.GasObject.gasType.defaultMixingRatio[9],source3.GasObject.gasType.mixingRatio_propertyCalculation[10],source3.GasObject.gasType.mixingRatio_propertyCalculation[1],source3.GasObject.gasType.mixingRatio_propertyCalculation[2],source3.GasObject.gasType.mixingRatio_propertyCalculation[3],source3.GasObject.gasType.mixingRatio_propertyCalculation[4],source3.GasObject.gasType.mixingRatio_propertyCalculation[5],source3.GasObject.gasType.mixingRatio_propertyCalculation[6],source3.GasObject.gasType.mixingRatio_propertyCalculation[7],source3.GasObject.gasType.mixingRatio_propertyCalculation[8],source3.GasObject.gasType.mixingRatio_propertyCalculation[9],source3.GasObject.gasType.xi_default[1],source3.GasObject.gasType.xi_default[2],source3.GasObject.gasType.xi_default[3],source3.GasObject.gasType.xi_default[4],source3.GasObject.gasType.xi_default[5],source3.GasObject.gasType.xi_default[6],source3.GasObject.gasType.xi_default[7],source3.GasObject.gasType.xi_default[8],source3.GasObject.gasType.xi_default[9],source3.T_const,source3.contributeToCycleSummary,source3.energyType,source3.eye_int[1].medium.defaultMixingRatio[10],source3.eye_int[1].medium.defaultMixingRatio[1],source3.eye_int[1].medium.defaultMixingRatio[2],source3.eye_int[1].medium.defaultMixingRatio[3],source3.eye_int[1].medium.defaultMixingRatio[4],source3.eye_int[1].medium.defaultMixingRatio[5],source3.eye_int[1].medium.defaultMixingRatio[6],source3.eye_int[1].medium.defaultMixingRatio[7],source3.eye_int[1].medium.defaultMixingRatio[8],source3.eye_int[1].medium.defaultMixingRatio[9],source3.eye_int[1].medium.mixingRatio_propertyCalculation[10],source3.eye_int[1].medium.mixingRatio_propertyCalculation[1],source3.eye_int[1].medium.mixingRatio_propertyCalculation[2],source3.eye_int[1].medium.mixingRatio_propertyCalculation[3],source3.eye_int[1].medium.mixingRatio_propertyCalculation[4],source3.eye_int[1].medium.mixingRatio_propertyCalculation[5],source3.eye_int[1].medium.mixingRatio_propertyCalculation[6],source3.eye_int[1].medium.mixingRatio_propertyCalculation[7],source3.eye_int[1].medium.mixingRatio_propertyCalculation[8],source3.eye_int[1].medium.mixingRatio_propertyCalculation[9],source3.eye_int[1].medium.xi_default[1],source3.eye_int[1].medium.xi_default[2],source3.eye_int[1].medium.xi_default[3],source3.eye_int[1].medium.xi_default[4],source3.eye_int[1].medium.xi_default[5],source3.eye_int[1].medium.xi_default[6],source3.eye_int[1].medium.xi_default[7],source3.eye_int[1].medium.xi_default[8],source3.eye_int[1].medium.xi_default[9],source3.m_flow_const,source3.variable_T,source3.variable_m_flow,source3.variable_xi,source3.xi_const[1],source3.xi_const[2],source3.xi_const[3],source3.xi_const[4],source3.xi_const[5],source3.xi_const[6],source3.xi_const[7],source3.xi_const[8],source3.xi_const[9],source4.GasObject.computeTransportProperties,source4.GasObject.gasType.defaultMixingRatio[10],source4.GasObject.gasType.defaultMixingRatio[1],source4.GasObject.gasType.defaultMixingRatio[2],source4.GasObject.gasType.defaultMixingRatio[3],source4.GasObject.gasType.defaultMixingRatio[4],source4.GasObject.gasType.defaultMixingRatio[5],source4.GasObject.gasType.defaultMixingRatio[6],source4.GasObject.gasType.defaultMixingRatio[7],source4.GasObject.gasType.defaultMixingRatio[8],source4.GasObject.gasType.defaultMixingRatio[9],source4.GasObject.gasType.mixingRatio_propertyCalculation[10],source4.GasObject.gasType.mixingRatio_propertyCalculation[1],source4.GasObject.gasType.mixingRatio_propertyCalculation[2],source4.GasObject.gasType.mixingRatio_propertyCalculation[3],source4.GasObject.gasType.mixingRatio_propertyCalculation[4],source4.GasObject.gasType.mixingRatio_propertyCalculation[5],source4.GasObject.gasType.mixingRatio_propertyCalculation[6],source4.GasObject.gasType.mixingRatio_propertyCalculation[7],source4.GasObject.gasType.mixingRatio_propertyCalculation[8],source4.GasObject.gasType.mixingRatio_propertyCalculation[9],source4.GasObject.gasType.xi_default[1],source4.GasObject.gasType.xi_default[2],source4.GasObject.gasType.xi_default[3],source4.GasObject.gasType.xi_default[4],source4.GasObject.gasType.xi_default[5],source4.GasObject.gasType.xi_default[6],source4.GasObject.gasType.xi_default[7],source4.GasObject.gasType.xi_default[8],source4.GasObject.gasType.xi_default[9],source4.T_const,source4.contributeToCycleSummary,source4.energyType,source4.eye_int[1].medium.defaultMixingRatio[10],source4.eye_int[1].medium.defaultMixingRatio[1],source4.eye_int[1].medium.defaultMixingRatio[2],source4.eye_int[1].medium.defaultMixingRatio[3],source4.eye_int[1].medium.defaultMixingRatio[4],source4.eye_int[1].medium.defaultMixingRatio[5],source4.eye_int[1].medium.defaultMixingRatio[6],source4.eye_int[1].medium.defaultMixingRatio[7],source4.eye_int[1].medium.defaultMixingRatio[8],source4.eye_int[1].medium.defaultMixingRatio[9],source4.eye_int[1].medium.mixingRatio_propertyCalculation[10],source4.eye_int[1].medium.mixingRatio_propertyCalculation[1],source4.eye_int[1].medium.mixingRatio_propertyCalculation[2],source4.eye_int[1].medium.mixingRatio_propertyCalculation[3],source4.eye_int[1].medium.mixingRatio_propertyCalculation[4],source4.eye_int[1].medium.mixingRatio_propertyCalculation[5],source4.eye_int[1].medium.mixingRatio_propertyCalculation[6],source4.eye_int[1].medium.mixingRatio_propertyCalculation[7],source4.eye_int[1].medium.mixingRatio_propertyCalculation[8],source4.eye_int[1].medium.mixingRatio_propertyCalculation[9],source4.eye_int[1].medium.xi_default[1],source4.eye_int[1].medium.xi_default[2],source4.eye_int[1].medium.xi_default[3],source4.eye_int[1].medium.xi_default[4],source4.eye_int[1].medium.xi_default[5],source4.eye_int[1].medium.xi_default[6],source4.eye_int[1].medium.xi_default[7],source4.eye_int[1].medium.xi_default[8],source4.eye_int[1].medium.xi_default[9],source4.m_flow_const,source4.variable_T,source4.variable_m_flow,source4.variable_xi,source4.xi_const[1],source4.xi_const[2],source4.xi_const[3],source4.xi_const[4],source4.xi_const[5],source4.xi_const[6],source4.xi_const[7],source4.xi_const[8],source4.xi_const[9],source5.GasObject.computeTransportProperties,source5.GasObject.gasType.defaultMixingRatio[10],source5.GasObject.gasType.defaultMixingRatio[1],source5.GasObject.gasType.defaultMixingRatio[2],source5.GasObject.gasType.defaultMixingRatio[3],source5.GasObject.gasType.defaultMixingRatio[4],source5.GasObject.gasType.defaultMixingRatio[5],source5.GasObject.gasType.defaultMixingRatio[6],source5.GasObject.gasType.defaultMixingRatio[7],source5.GasObject.gasType.defaultMixingRatio[8],source5.GasObject.gasType.defaultMixingRatio[9],source5.GasObject.gasType.mixingRatio_propertyCalculation[10],source5.GasObject.gasType.mixingRatio_propertyCalculation[1],source5.GasObject.gasType.mixingRatio_propertyCalculation[2],source5.GasObject.gasType.mixingRatio_propertyCalculation[3],source5.GasObject.gasType.mixingRatio_propertyCalculation[4],source5.GasObject.gasType.mixingRatio_propertyCalculation[5],source5.GasObject.gasType.mixingRatio_propertyCalculation[6],source5.GasObject.gasType.mixingRatio_propertyCalculation[7],source5.GasObject.gasType.mixingRatio_propertyCalculation[8],source5.GasObject.gasType.mixingRatio_propertyCalculation[9],source5.GasObject.gasType.xi_default[1],source5.GasObject.gasType.xi_default[2],source5.GasObject.gasType.xi_default[3],source5.GasObject.gasType.xi_default[4],source5.GasObject.gasType.xi_default[5],source5.GasObject.gasType.xi_default[6],source5.GasObject.gasType.xi_default[7],source5.GasObject.gasType.xi_default[8],source5.GasObject.gasType.xi_default[9],source5.T_const,source5.contributeToCycleSummary,source5.energyType,source5.eye_int[1].medium.defaultMixingRatio[10],source5.eye_int[1].medium.defaultMixingRatio[1],source5.eye_int[1].medium.defaultMixingRatio[2],source5.eye_int[1].medium.defaultMixingRatio[3],source5.eye_int[1].medium.defaultMixingRatio[4],source5.eye_int[1].medium.defaultMixingRatio[5],source5.eye_int[1].medium.defaultMixingRatio[6],source5.eye_int[1].medium.defaultMixingRatio[7],source5.eye_int[1].medium.defaultMixingRatio[8],source5.eye_int[1].medium.defaultMixingRatio[9],source5.eye_int[1].medium.mixingRatio_propertyCalculation[10],source5.eye_int[1].medium.mixingRatio_propertyCalculation[1],source5.eye_int[1].medium.mixingRatio_propertyCalculation[2],source5.eye_int[1].medium.mixingRatio_propertyCalculation[3],source5.eye_int[1].medium.mixingRatio_propertyCalculation[4],source5.eye_int[1].medium.mixingRatio_propertyCalculation[5],source5.eye_int[1].medium.mixingRatio_propertyCalculation[6],source5.eye_int[1].medium.mixingRatio_propertyCalculation[7],source5.eye_int[1].medium.mixingRatio_propertyCalculation[8],source5.eye_int[1].medium.mixingRatio_propertyCalculation[9],source5.eye_int[1].medium.xi_default[1],source5.eye_int[1].medium.xi_default[2],source5.eye_int[1].medium.xi_default[3],source5.eye_int[1].medium.xi_default[4],source5.eye_int[1].medium.xi_default[5],source5.eye_int[1].medium.xi_default[6],source5.eye_int[1].medium.xi_default[7],source5.eye_int[1].medium.xi_default[8],source5.eye_int[1].medium.xi_default[9],source5.m_flow_const,source5.variable_T,source5.variable_m_flow,source5.variable_xi,source5.xi_const[1],source5.xi_const[2],source5.xi_const[3],source5.xi_const[4],source5.xi_const[5],source5.xi_const[6],source5.xi_const[7],source5.xi_const[8],source5.xi_const[9],source6.GasObject.computeTransportProperties,source6.GasObject.gasType.defaultMixingRatio[10],source6.GasObject.gasType.defaultMixingRatio[1],source6.GasObject.gasType.defaultMixingRatio[2],source6.GasObject.gasType.defaultMixingRatio[3],source6.GasObject.gasType.defaultMixingRatio[4],source6.GasObject.gasType.defaultMixingRatio[5],source6.GasObject.gasType.defaultMixingRatio[6],source6.GasObject.gasType.defaultMixingRatio[7],source6.GasObject.gasType.defaultMixingRatio[8],source6.GasObject.gasType.defaultMixingRatio[9],source6.GasObject.gasType.mixingRatio_propertyCalculation[10],source6.GasObject.gasType.mixingRatio_propertyCalculation[1],source6.GasObject.gasType.mixingRatio_propertyCalculation[2],source6.GasObject.gasType.mixingRatio_propertyCalculation[3],source6.GasObject.gasType.mixingRatio_propertyCalculation[4],source6.GasObject.gasType.mixingRatio_propertyCalculation[5],source6.GasObject.gasType.mixingRatio_propertyCalculation[6],source6.GasObject.gasType.mixingRatio_propertyCalculation[7],source6.GasObject.gasType.mixingRatio_propertyCalculation[8],source6.GasObject.gasType.mixingRatio_propertyCalculation[9],source6.GasObject.gasType.xi_default[1],source6.GasObject.gasType.xi_default[2],source6.GasObject.gasType.xi_default[3],source6.GasObject.gasType.xi_default[4],source6.GasObject.gasType.xi_default[5],source6.GasObject.gasType.xi_default[6],source6.GasObject.gasType.xi_default[7],source6.GasObject.gasType.xi_default[8],source6.GasObject.gasType.xi_default[9],source6.T_const,source6.contributeToCycleSummary,source6.energyType,source6.eye_int[1].medium.defaultMixingRatio[10],source6.eye_int[1].medium.defaultMixingRatio[1],source6.eye_int[1].medium.defaultMixingRatio[2],source6.eye_int[1].medium.defaultMixingRatio[3],source6.eye_int[1].medium.defaultMixingRatio[4],source6.eye_int[1].medium.defaultMixingRatio[5],source6.eye_int[1].medium.defaultMixingRatio[6],source6.eye_int[1].medium.defaultMixingRatio[7],source6.eye_int[1].medium.defaultMixingRatio[8],source6.eye_int[1].medium.defaultMixingRatio[9],source6.eye_int[1].medium.mixingRatio_propertyCalculation[10],source6.eye_int[1].medium.mixingRatio_propertyCalculation[1],source6.eye_int[1].medium.mixingRatio_propertyCalculation[2],source6.eye_int[1].medium.mixingRatio_propertyCalculation[3],source6.eye_int[1].medium.mixingRatio_propertyCalculation[4],source6.eye_int[1].medium.mixingRatio_propertyCalculation[5],source6.eye_int[1].medium.mixingRatio_propertyCalculation[6],source6.eye_int[1].medium.mixingRatio_propertyCalculation[7],source6.eye_int[1].medium.mixingRatio_propertyCalculation[8],source6.eye_int[1].medium.mixingRatio_propertyCalculation[9],source6.eye_int[1].medium.xi_default[1],source6.eye_int[1].medium.xi_default[2],source6.eye_int[1].medium.xi_default[3],source6.eye_int[1].medium.xi_default[4],source6.eye_int[1].medium.xi_default[5],source6.eye_int[1].medium.xi_default[6],source6.eye_int[1].medium.xi_default[7],source6.eye_int[1].medium.xi_default[8],source6.eye_int[1].medium.xi_default[9],source6.m_flow_const,source6.variable_T,source6.variable_m_flow,source6.variable_xi,source6.xi_const[1],source6.xi_const[2],source6.xi_const[3],source6.xi_const[4],source6.xi_const[5],source6.xi_const[6],source6.xi_const[7],source6.xi_const[8],source6.xi_const[9],splitGas_L2_flex.N_ports_out,splitGas_L2_flex.N_sets,splitGas_L2_flex.T_nom,splitGas_L2_flex.T_start,splitGas_L2_flex.bulk.M_i[10],splitGas_L2_flex.bulk.M_i[1],splitGas_L2_flex.bulk.M_i[2],splitGas_L2_flex.bulk.M_i[3],splitGas_L2_flex.bulk.M_i[4],splitGas_L2_flex.bulk.M_i[5],splitGas_L2_flex.bulk.M_i[6],splitGas_L2_flex.bulk.M_i[7],splitGas_L2_flex.bulk.M_i[8],splitGas_L2_flex.bulk.M_i[9],splitGas_L2_flex.bulk.computeFlags,splitGas_L2_flex.bulk.computeTransportProperties,splitGas_L2_flex.bulk.gasType.defaultMixingRatio[10],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[1],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[2],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[3],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[4],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[5],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[6],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[7],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[8],splitGas_L2_flex.bulk.gasType.defaultMixingRatio[9],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[10],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[1],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[2],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[3],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[4],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[5],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[6],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[7],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[8],splitGas_L2_flex.bulk.gasType.mixingRatio_propertyCalculation[9],splitGas_L2_flex.bulk.gasType.xi_default[1],splitGas_L2_flex.bulk.gasType.xi_default[2],splitGas_L2_flex.bulk.gasType.xi_default[3],splitGas_L2_flex.bulk.gasType.xi_default[4],splitGas_L2_flex.bulk.gasType.xi_default[5],splitGas_L2_flex.bulk.gasType.xi_default[6],splitGas_L2_flex.bulk.gasType.xi_default[7],splitGas_L2_flex.bulk.gasType.xi_default[8],splitGas_L2_flex.bulk.gasType.xi_default[9],splitGas_L2_flex.bulk.h,splitGas_L2_flex.bulk.p,splitGas_L2_flex.bulk.stateSelectPreferForInputs,splitGas_L2_flex.bulk.xi[1],splitGas_L2_flex.bulk.xi[2],splitGas_L2_flex.bulk.xi[3],splitGas_L2_flex.bulk.xi[4],splitGas_L2_flex.bulk.xi[5],splitGas_L2_flex.bulk.xi[6],splitGas_L2_flex.bulk.xi[7],splitGas_L2_flex.bulk.xi[8],splitGas_L2_flex.bulk.xi[9],splitGas_L2_flex.gasInlet.M_i[10],splitGas_L2_flex.gasInlet.M_i[1],splitGas_L2_flex.gasInlet.M_i[2],splitGas_L2_flex.gasInlet.M_i[3],splitGas_L2_flex.gasInlet.M_i[4],splitGas_L2_flex.gasInlet.M_i[5],splitGas_L2_flex.gasInlet.M_i[6],splitGas_L2_flex.gasInlet.M_i[7],splitGas_L2_flex.gasInlet.M_i[8],splitGas_L2_flex.gasInlet.M_i[9],splitGas_L2_flex.gasInlet.computeFlags,splitGas_L2_flex.gasInlet.computeTransportProperties,splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[10],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[1],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[2],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[3],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[4],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[5],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[6],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[7],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[8],splitGas_L2_flex.gasInlet.gasType.defaultMixingRatio[9],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[10],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[1],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[2],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[3],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[4],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[5],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[6],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[7],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[8],splitGas_L2_flex.gasInlet.gasType.mixingRatio_propertyCalculation[9],splitGas_L2_flex.gasInlet.gasType.xi_default[1],splitGas_L2_flex.gasInlet.gasType.xi_default[2],splitGas_L2_flex.gasInlet.gasType.xi_default[3],splitGas_L2_flex.gasInlet.gasType.xi_default[4],splitGas_L2_flex.gasInlet.gasType.xi_default[5],splitGas_L2_flex.gasInlet.gasType.xi_default[6],splitGas_L2_flex.gasInlet.gasType.xi_default[7],splitGas_L2_flex.gasInlet.gasType.xi_default[8],splitGas_L2_flex.gasInlet.gasType.xi_default[9],splitGas_L2_flex.gasInlet.stateSelectPreferForInputs,splitGas_L2_flex.gasOutlet[1].M_i[10],splitGas_L2_flex.gasOutlet[1].M_i[1],splitGas_L2_flex.gasOutlet[1].M_i[2],splitGas_L2_flex.gasOutlet[1].M_i[3],splitGas_L2_flex.gasOutlet[1].M_i[4],splitGas_L2_flex.gasOutlet[1].M_i[5],splitGas_L2_flex.gasOutlet[1].M_i[6],splitGas_L2_flex.gasOutlet[1].M_i[7],splitGas_L2_flex.gasOutlet[1].M_i[8],splitGas_L2_flex.gasOutlet[1].M_i[9],splitGas_L2_flex.gasOutlet[1].computeFlags,splitGas_L2_flex.gasOutlet[1].computeTransportProperties,splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[10],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[1],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[2],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[3],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[4],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[5],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[6],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[7],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[8],splitGas_L2_flex.gasOutlet[1].gasType.defaultMixingRatio[9],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[10],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[1],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[2],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[3],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[4],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[5],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[6],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[7],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[8],splitGas_L2_flex.gasOutlet[1].gasType.mixingRatio_propertyCalculation[9],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[1],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[2],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[3],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[4],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[5],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[6],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[7],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[8],splitGas_L2_flex.gasOutlet[1].gasType.xi_default[9],splitGas_L2_flex.gasOutlet[1].stateSelectPreferForInputs,splitGas_L2_flex.gasOutlet[2].M_i[10],splitGas_L2_flex.gasOutlet[2].M_i[1],splitGas_L2_flex.gasOutlet[2].M_i[2],splitGas_L2_flex.gasOutlet[2].M_i[3],splitGas_L2_flex.gasOutlet[2].M_i[4],splitGas_L2_flex.gasOutlet[2].M_i[5],splitGas_L2_flex.gasOutlet[2].M_i[6],splitGas_L2_flex.gasOutlet[2].M_i[7],splitGas_L2_flex.gasOutlet[2].M_i[8],splitGas_L2_flex.gasOutlet[2].M_i[9],splitGas_L2_flex.gasOutlet[2].computeFlags,splitGas_L2_flex.gasOutlet[2].computeTransportProperties,splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[10],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[1],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[2],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[3],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[4],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[5],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[6],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[7],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[8],splitGas_L2_flex.gasOutlet[2].gasType.defaultMixingRatio[9],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[10],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[1],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[2],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[3],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[4],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[5],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[6],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[7],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[8],splitGas_L2_flex.gasOutlet[2].gasType.mixingRatio_propertyCalculation[9],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[1],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[2],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[3],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[4],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[5],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[6],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[7],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[8],splitGas_L2_flex.gasOutlet[2].gasType.xi_default[9],splitGas_L2_flex.gasOutlet[2].stateSelectPreferForInputs,splitGas_L2_flex.gasOutlet[3].M_i[10],splitGas_L2_flex.gasOutlet[3].M_i[1],splitGas_L2_flex.gasOutlet[3].M_i[2],splitGas_L2_flex.gasOutlet[3].M_i[3],splitGas_L2_flex.gasOutlet[3].M_i[4],splitGas_L2_flex.gasOutlet[3].M_i[5],splitGas_L2_flex.gasOutlet[3].M_i[6],splitGas_L2_flex.gasOutlet[3].M_i[7],splitGas_L2_flex.gasOutlet[3].M_i[8],splitGas_L2_flex.gasOutlet[3].M_i[9],splitGas_L2_flex.gasOutlet[3].computeFlags,splitGas_L2_flex.gasOutlet[3].computeTransportProperties,splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[10],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[1],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[2],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[3],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[4],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[5],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[6],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[7],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[8],splitGas_L2_flex.gasOutlet[3].gasType.defaultMixingRatio[9],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[10],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[1],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[2],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[3],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[4],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[5],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[6],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[7],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[8],splitGas_L2_flex.gasOutlet[3].gasType.mixingRatio_propertyCalculation[9],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[1],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[2],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[3],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[4],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[5],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[6],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[7],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[8],splitGas_L2_flex.gasOutlet[3].gasType.xi_default[9],splitGas_L2_flex.gasOutlet[3].stateSelectPreferForInputs,splitGas_L2_flex.h_start,splitGas_L2_flex.initOption,splitGas_L2_flex.m_flow_out_nom[1],splitGas_L2_flex.m_flow_out_nom[2],splitGas_L2_flex.m_flow_out_nom[3],splitGas_L2_flex.p_nom,splitGas_L2_flex.p_start,splitGas_L2_flex.rho_nom,splitGas_L2_flex.summary.N_ports_out,splitGas_L2_flex.useHomotopy,splitGas_L2_flex.volume,splitGas_L2_flex.xi_nom[1],splitGas_L2_flex.xi_nom[2],splitGas_L2_flex.xi_nom[3],splitGas_L2_flex.xi_nom[4],splitGas_L2_flex.xi_nom[5],splitGas_L2_flex.xi_nom[6],splitGas_L2_flex.xi_nom[7],splitGas_L2_flex.xi_nom[8],splitGas_L2_flex.xi_nom[9],splitGas_L2_flex.xi_start[1],splitGas_L2_flex.xi_start[2],splitGas_L2_flex.xi_start[3],splitGas_L2_flex.xi_start[4],splitGas_L2_flex.xi_start[5],splitGas_L2_flex.xi_start[6],splitGas_L2_flex.xi_start[7],splitGas_L2_flex.xi_start[8],splitGas_L2_flex.xi_start[9],time filterSimulationResults("ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex_res.mat", "/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.diff.mat", vars={"splitGas_L2_flex.bulk.h"}, removeDescription=false) [Timeout 800] "" [Timeout remaining time 800] filterSimulationResults("/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/ReferenceFiles/ClaRa/ReferenceResults/ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.mat", "/var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/ClaRa_ClaRa.Components.VolumesValvesFittings.Fittings.Check.Test_JoinSplitGas_L2_flex.diff.ref.mat", vars={"splitGas_L2_flex.bulk.h"}, removeDescription=false) [Timeout 800] "" [Timeout remaining time 800] [Calling sys.exit(0), Time elapsed: 13.124689341988415]