Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 9.1.3-maint.9.1.x/package.mo", uses=false) Using package Buildings with version 9.1.3 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 9.1.3-maint.9.1.x/package.mo) Using package Modelica with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo) Using package Complex with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo) Using package ModelicaServices with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo) Running command: translateModel(Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl,tolerance=1e-06,outputFormat="mat",numberOfIntervals=5000,variableFilter="time|hex.sta_a1.T|hex.sta_b1.T|hex.sta_a2.T|hex.sta_b2.T|hex.hexReg.1..ele.1|1..vol1.T|hex.hexReg.1..ele.1|1..vol2.T|hex.hexReg.1..ele.1|2..vol1.T|hex.hexReg.1..ele.1|2..vol2.T|hex.hexReg.1..ele.1|1..Gc_1|hex.hexReg.1..ele.1|1..Gc_2|hex.Q1_flow|hex.Q2_flow|hex.m1_flow|hex.m2_flow|con.u_s|con.u_m",fileNamePrefix="Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl") translateModel(Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl,tolerance=1e-06,outputFormat="mat",numberOfIntervals=5000,variableFilter="time|hex.sta_a1.T|hex.sta_b1.T|hex.sta_a2.T|hex.sta_b2.T|hex.hexReg.1..ele.1|1..vol1.T|hex.hexReg.1..ele.1|1..vol2.T|hex.hexReg.1..ele.1|2..vol1.T|hex.hexReg.1..ele.1|2..vol2.T|hex.hexReg.1..ele.1|1..Gc_1|hex.hexReg.1..ele.1|1..Gc_2|hex.Q1_flow|hex.Q2_flow|hex.m1_flow|hex.m2_flow|con.u_s|con.u_m",fileNamePrefix="Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl") Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo): time 0.00159/0.00159, allocations: 115.2 kB / 16.42 MB, free: 6.449 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo): time 0.001816/0.001816, allocations: 183.9 kB / 17.35 MB, free: 5.738 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo): time 1.332/1.332, allocations: 222.9 MB / 241 MB, free: 15.18 MB / 206.1 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 9.1.3-maint.9.1.x/package.mo): time 2.214/2.214, allocations: 390.3 MB / 0.6655 GB, free: 0.6484 MB / 0.5294 GB Notification: Performance of FrontEnd - loaded program: time 0.001202/0.001202, allocations: 63.91 kB / 0.9516 GB, free: 7.633 MB / 0.7325 GB Notification: Performance of FrontEnd - Absyn->SCode: time 0.8489/0.8501, allocations: 140.4 MB / 1.089 GB, free: 5.512 MB / 0.8575 GB Notification: Performance of NFInst.instantiate(Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl): time 0.4013/1.251, allocations: 401.3 MB / 1.481 GB, free: 11.63 MB / 1.217 GB Notification: Performance of NFInst.instExpressions: time 0.0335/1.285, allocations: 24.37 MB / 1.504 GB, free: 3.188 MB / 1.232 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.005258/1.29, allocations: 135.2 kB / 1.504 GB, free: 3.055 MB / 1.232 GB Notification: Performance of NFTyping.typeComponents: time 0.005572/1.296, allocations: 2.046 MB / 1.506 GB, free: 0.9961 MB / 1.232 GB Notification: Performance of NFTyping.typeBindings: time 0.01423/1.31, allocations: 5.491 MB / 1.512 GB, free: 11.48 MB / 1.248 GB Notification: Performance of NFTyping.typeClassSections: time 0.008552/1.319, allocations: 3.595 MB / 1.515 GB, free: 7.902 MB / 1.248 GB Notification: Performance of NFFlatten.flatten: time 0.06347/1.382, allocations: 58.51 MB / 1.572 GB, free: 13.28 MB / 1.311 GB Notification: Performance of NFFlatten.resolveConnections: time 1.423/2.805, allocations: 36.17 MB / 1.608 GB, free: 106.1 MB / 1.311 GB Notification: Performance of NFEvalConstants.evaluate: time 0.03964/2.844, allocations: 21.34 MB / 1.629 GB, free: 105.7 MB / 1.311 GB Notification: Performance of NFSimplifyModel.simplify: time 0.03445/2.879, allocations: 17.01 MB / 1.645 GB, free: 103.2 MB / 1.311 GB Notification: Performance of NFPackage.collectConstants: time 0.01118/2.89, allocations: 2.943 MB / 1.648 GB, free: 103.2 MB / 1.311 GB Notification: Performance of NFFlatten.collectFunctions: time 0.02301/2.913, allocations: 6.591 MB / 1.655 GB, free: 103.2 MB / 1.311 GB Notification: Performance of NFScalarize.scalarize: time 0.01629/2.93, allocations: 7.526 MB / 1.662 GB, free: 102.5 MB / 1.311 GB Notification: Performance of NFVerifyModel.verify: time 0.02979/2.959, allocations: 13.71 MB / 1.675 GB, free: 99.59 MB / 1.311 GB Notification: Performance of NFConvertDAE.convert: time 0.04937/3.009, allocations: 48.14 MB / 1.722 GB, free: 88.1 MB / 1.311 GB Notification: Performance of FrontEnd - DAE generated: time 7.394e-06/3.009, allocations: 0 / 1.722 GB, free: 88.1 MB / 1.311 GB Notification: Performance of FrontEnd: time 2.205e-06/3.009, allocations: 0 / 1.722 GB, free: 88.1 MB / 1.311 GB Notification: Performance of Transformations before backend: time 0.001312/3.01, allocations: 3.406 kB / 1.722 GB, free: 88.1 MB / 1.311 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 3509 * Number of variables: 3509 Notification: Performance of Generate backend data structure: time 0.07987/3.09, allocations: 25.74 MB / 1.747 GB, free: 72.55 MB / 1.311 GB Notification: Performance of prepare preOptimizeDAE: time 4.894e-05/3.09, allocations: 11.97 kB / 1.747 GB, free: 72.54 MB / 1.311 GB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.02725/3.117, allocations: 4.227 MB / 1.752 GB, free: 68.51 MB / 1.311 GB Notification: Performance of preOpt evaluateParameters (simulation): time 0.0549/3.172, allocations: 31.11 MB / 1.782 GB, free: 47.32 MB / 1.311 GB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0008683/3.173, allocations: 1.022 MB / 1.783 GB, free: 46.31 MB / 1.311 GB Notification: Performance of preOpt expandDerOperator (simulation): time 0.007455/3.181, allocations: 1.374 MB / 1.784 GB, free: 44.95 MB / 1.311 GB Notification: Performance of preOpt clockPartitioning (simulation): time 0.07196/3.253, allocations: 28.07 MB / 1.812 GB, free: 16.69 MB / 1.311 GB Notification: Performance of preOpt findStateOrder (simulation): time 0.0006344/3.253, allocations: 41.56 kB / 1.812 GB, free: 16.66 MB / 1.311 GB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.008085/3.261, allocations: 0.5523 MB / 1.812 GB, free: 16.11 MB / 1.311 GB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.0005551/3.262, allocations: 0.6237 MB / 1.813 GB, free: 15.48 MB / 1.311 GB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.05243/3.314, allocations: 26.23 MB / 1.839 GB, free: 5.281 MB / 1.326 GB Warning: The model contains alias variables with redundant start and/or conflicting nominal values. It is recommended to resolve the conflicts, because otherwise the system could be hard to solve. To print the conflicting alias sets and the chosen candidates please use -d=aliasConflicts. Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.182/3.496, allocations: 100.4 MB / 1.937 GB, free: 13.29 MB / 1.436 GB Notification: Performance of preOpt comSubExp (simulation): time 0.02381/3.52, allocations: 13.36 MB / 1.95 GB, free: 15.94 MB / 1.451 GB Notification: Performance of preOpt resolveLoops (simulation): time 0.01659/3.537, allocations: 9.95 MB / 1.959 GB, free: 5.957 MB / 1.451 GB Notification: Performance of preOpt evalFunc (simulation): time 0.001714/3.539, allocations: 1.001 MB / 1.96 GB, free: 4.789 MB / 1.451 GB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.01573/3.554, allocations: 8.065 MB / 1.968 GB, free: 12.68 MB / 1.467 GB Notification: Performance of preOpt simplifyInStream (simulation): time 0.008882/3.563, allocations: 0.9281 MB / 1.969 GB, free: 11.75 MB / 1.467 GB Notification: Performance of pre-optimization done (n=778): time 3.708e-05/3.563, allocations: 0 / 1.969 GB, free: 11.75 MB / 1.467 GB Notification: Performance of matching and sorting (n=780): time 0.09451/3.658, allocations: 38.41 MB / 2.007 GB, free: 5.117 MB / 1.498 GB Notification: Performance of inlineWhenForInitialization (initialization): time 0.0001728/3.658, allocations: 217.7 kB / 2.007 GB, free: 4.875 MB / 1.498 GB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.04022/3.698, allocations: 17.22 MB / 2.024 GB, free: 3.703 MB / 1.514 GB Notification: Performance of collectPreVariables (initialization): time 0.002529/3.701, allocations: 189.7 kB / 2.024 GB, free: 3.512 MB / 1.514 GB Notification: Performance of collectInitialEqns (initialization): time 0.01587/3.717, allocations: 8.128 MB / 2.032 GB, free: 11.45 MB / 1.529 GB Notification: Performance of collectInitialBindings (initialization): time 0.005501/3.722, allocations: 2.807 MB / 2.034 GB, free: 8.66 MB / 1.529 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.007552/3.73, allocations: 1.879 MB / 2.036 GB, free: 6.77 MB / 1.529 GB Notification: Performance of setup shared object (initialization): time 0.0001186/3.73, allocations: 305.1 kB / 2.037 GB, free: 6.469 MB / 1.529 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.01201/3.742, allocations: 7.08 MB / 2.043 GB, free: 15.37 MB / 1.545 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.01493/3.757, allocations: 9.565 MB / 2.053 GB, free: 4.93 MB / 1.545 GB Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: hex.hexReg[1].ele[1,1].vol2.dynBal.medium.p = 101325.0 (sin_2.p = 101325.0) Notification: Performance of analyzeInitialSystem (initialization): time 0.1329/3.89, allocations: 43.88 MB / 2.096 GB, free: 8.465 MB / 1.592 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 7.022e-05/3.89, allocations: 12 kB / 2.096 GB, free: 8.453 MB / 1.592 GB Notification: Performance of matching and sorting (n=1082) (initialization): time 0.03719/3.927, allocations: 17.86 MB / 2.113 GB, free: 6.824 MB / 1.608 GB Notification: Performance of prepare postOptimizeDAE: time 9.793e-05/3.927, allocations: 53.7 kB / 2.113 GB, free: 6.766 MB / 1.608 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.0001043/3.927, allocations: 51.98 kB / 2.113 GB, free: 6.715 MB / 1.608 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.0001128/3.928, allocations: 88 kB / 2.113 GB, free: 6.629 MB / 1.608 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.01202/3.94, allocations: 2.298 MB / 2.116 GB, free: 4.449 MB / 1.608 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.0009987/3.941, allocations: 1.307 MB / 2.117 GB, free: 3.121 MB / 1.608 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.01213/3.953, allocations: 0.84 MB / 2.118 GB, free: 2.289 MB / 1.608 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.00218/3.955, allocations: 347.9 kB / 2.118 GB, free: 1.949 MB / 1.608 GB Warning: The initial conditions are over specified. The following 1 initial equations are redundant, so they are removed from the initialization system: hex.hexReg[1].ele[1,1].vol2.dynBal.medium.p = 101325.0. Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.02972/3.985, allocations: 18.07 MB / 2.136 GB, free: 15.85 MB / 1.639 GB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.01637/4.001, allocations: 9.558 MB / 2.145 GB, free: 5.418 MB / 1.639 GB Warning: It was not possible to determine if the initialization problem is consistent, because of not evaluable parameters/start values during compile time: hex.hexReg[1].ele[1,1].vol2.dynBal.medium.p = 101325.0 (sin_2.p = 101325.0) Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 0.695/4.696, allocations: 43.84 MB / 2.188 GB, free: 0.6818 GB / 1.654 GB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 5.292e-05/4.696, allocations: 16.34 kB / 2.188 GB, free: 0.6818 GB / 1.654 GB Notification: Performance of matching and sorting (n=1082) (initialization_lambda0): time 0.03787/4.734, allocations: 17.87 MB / 2.205 GB, free: 0.6792 GB / 1.654 GB Notification: Performance of prepare postOptimizeDAE: time 7.914e-05/4.734, allocations: 56.62 kB / 2.205 GB, free: 0.6792 GB / 1.654 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 8.856e-05/4.734, allocations: 52.39 kB / 2.205 GB, free: 0.6792 GB / 1.654 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.0001089/4.734, allocations: 89.06 kB / 2.205 GB, free: 0.6792 GB / 1.654 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.01065/4.745, allocations: 2.266 MB / 2.208 GB, free: 0.679 GB / 1.654 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.0001678/4.745, allocations: 119.6 kB / 2.208 GB, free: 0.679 GB / 1.654 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.01164/4.757, allocations: 0.8798 MB / 2.209 GB, free: 0.6788 GB / 1.654 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.001891/4.759, allocations: 346 kB / 2.209 GB, free: 0.6787 GB / 1.654 GB Warning: The initial conditions are over specified. The following 1 initial equations are redundant, so they are removed from the initialization_lambda0 system: hex.hexReg[1].ele[1,1].vol2.dynBal.medium.p = 101325.0. Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 220 * Number of states: 0 () * Number of discrete variables: 12 ($PRE.mot.lowHys.y,$PRE.mot.uppHys.y,mot.lowHys.y,mot.uppHys.y,TSet.nextEventScaled,TSet.nextEvent,$PRE.TSet.nextEvent,TSet.last,TSet.b,TSet.a,$whenCondition1,mot.int.local_reset) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (1077): * Single equations (assignments): 1074 * Array equations: 0 * Algorithm blocks: 1 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 2 * Torn equation systems: 0 * Mixed (continuous/discrete) equation systems: 0 Notification: Equation system details (not torn): * Constant Jacobian (size): 0 systems * Linear Jacobian (size,density): 0 systems * Non-linear Jacobian (size): 2 systems {1, 1} * Without analytic Jacobian (size): 0 systems Notification: Performance of prepare postOptimizeDAE: time 0.003012/4.762, allocations: 0.7441 MB / 2.21 GB, free: 0.6782 GB / 1.654 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.003887/4.766, allocations: 1.331 MB / 2.211 GB, free: 0.6782 GB / 1.654 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.03079/4.797, allocations: 16.72 MB / 2.227 GB, free: 0.6729 GB / 1.654 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 0.01975/4.816, allocations: 13.66 MB / 2.241 GB, free: 0.6687 GB / 1.654 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 1.758e-05/4.816, allocations: 2.062 kB / 2.241 GB, free: 0.6687 GB / 1.654 GB Notification: Performance of postOpt removeConstants (simulation): time 0.01134/4.828, allocations: 3.713 MB / 2.244 GB, free: 0.6677 GB / 1.654 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.004942/4.833, allocations: 221.5 kB / 2.244 GB, free: 0.6676 GB / 1.654 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.01029/4.843, allocations: 0.7146 MB / 2.245 GB, free: 0.6675 GB / 1.654 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.00219/4.845, allocations: 449.3 kB / 2.246 GB, free: 0.6675 GB / 1.654 GB Notification: Performance of postOpt createDAEmodeBDAE (simulation): time 0.03239/4.878, allocations: 17.62 MB / 2.263 GB, free: 0.6628 GB / 1.654 GB Notification: Performance of postOpt symbolicJacobianDAE (simulation): time 0.03466/4.912, allocations: 26.38 MB / 2.289 GB, free: 0.6552 GB / 1.654 GB Notification: Performance of postOpt setEvaluationStage (simulation): time 0.008877/4.921, allocations: 7.806 MB / 2.296 GB, free: 0.6528 GB / 1.654 GB Notification: Performance of sorting global known variables: time 0.02293/4.944, allocations: 12.62 MB / 2.309 GB, free: 0.6442 GB / 1.654 GB Notification: Performance of Backend: time 1.052e-06/4.944, allocations: 0 / 2.309 GB, free: 0.6442 GB / 1.654 GB Notification: Performance of simCode: created initialization part: time 0.04014/4.984, allocations: 18.9 MB / 2.327 GB, free: 0.6261 GB / 1.654 GB Notification: Performance of SimCode: time 0.08756/5.072, allocations: 49.98 MB / 2.376 GB, free: 0.5779 GB / 1.654 GB Notification: Performance of Templates: time 0.4528/5.525, allocations: 402.5 MB / 2.769 GB, free: 190.9 MB / 1.654 GB make -j1 -f Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.makefile (rm -f Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.pipe ; mkfifo Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.pipe ; head -c 1048576 < Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.pipe >> ../files/Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.sim & ./Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl -abortSlowSimulation -alarm=480 -emit_protected -lv LOG_STATS > Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.pipe 2>&1) diffSimulationResults("Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat","/mnt/ReferenceFiles/Buildings/csv/maint_9.1.x/Buildings_Fluid_HeatExchangers_Examples_WetCoilDiscretizedPControl.csv","/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelicaLibraryTesting/files/Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl.diff",relTol=0.003,relTolDiffMinMax=0.003,rangeDelta=0.001) "Warning: Resultfile and Reference have different end time points! Reffile[546]=296.914825 File[5243]=3600.000000 Error: Could not read variable hex.hexReg[1].ele[1 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable hex.hexReg[1].ele[1 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable 1].vol1.T in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable 1].vol1.T from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable hex.hexReg[1].ele[1 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable hex.hexReg[1].ele[1 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable 1].vol2.T in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable 1].vol2.T from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable hex.hexReg[1].ele[1 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable hex.hexReg[1].ele[1 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable 2].vol1.T in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable 2].vol1.T from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable hex.hexReg[1].ele[1 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable hex.hexReg[1].ele[1 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable 2].vol2.T in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable 2].vol2.T from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable hex.hexReg[1].ele[1 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable hex.hexReg[1].ele[1 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable 1].Gc_1 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable 1].Gc_1 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable hex.hexReg[1].ele[1 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable hex.hexReg[1].ele[1 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! Error: Could not read variable 1].Gc_2 in file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat. Warning: Get data of variable 1].Gc_2 from file Buildings_9_Buildings.Fluid.HeatExchangers.Examples.WetCoilDiscretizedPControl_res.mat failed! " Variables in the reference:time,hex.sta_a1.T,hex.sta_b1.T,hex.sta_a2.T,hex.sta_b2.T,hex.hexReg[1].ele[1,1].vol1.T,hex.hexReg[1].ele[1,1].vol2.T,hex.hexReg[1].ele[1,2].vol1.T,hex.hexReg[1].ele[1,2].vol2.T,hex.hexReg[1].ele[1,1].Gc_1,hex.hexReg[1].ele[1,1].Gc_2,hex.Q1_flow,hex.Q2_flow,hex.m1_flow,hex.m2_flow,con.u_s,con.u_m Variables in the result:PSin.duration,PSin.height,PSin.offset,PSin.startTime,TSet.offset,TSet.shiftTime,TSet.startTime,TSet.table[1,1],TSet.table[1,2],TSet.table[2,1],TSet.table[2,2],TSet.table[3,1],TSet.table[3,2],TSet.table[4,1],TSet.table[4,2],TSet.table[5,1],TSet.table[5,2],TSet.table[6,1],TSet.table[6,2],TSet.table[7,1],TSet.table[7,2],TSet.timeScale,TSet.y,TSou_1.height,TSou_1.offset,TSou_1.startTime,TSou_2.height,TSou_2.offset,TSou_2.startTime,T_a1_nominal,T_a2_nominal,T_b1_nominal,T_b2_nominal,con.Dzero.k,con.Izero.k,con.Nd,con.Ni,con.P.k,con.Td,con.Ti,con.addP.k1,con.addP.k2,con.addPID.k1,con.addPID.k2,con.addPID.k3,con.controllerType,con.gainPID.k,con.initType,con.k,con.limiter.limitsAtInit,con.limiter.strict,con.limiter.uMax,con.limiter.uMin,con.reset,con.revAct,con.reverseActing,con.strict,con.u_m,con.u_s,con.wd,con.with_D,con.with_I,con.wp,con.xd_start,con.xi_start,con.yMax,con.yMin,con.y_reset,con.y_start,hex.GDif1,hex.GDif2,hex.Q1_flow,hex.Q2_flow,hex.ReC_1,hex.ReC_2,hex.UA_nominal,hex.airSideFlowDependent,hex.allowFlowReversal1,hex.allowFlowReversal2,hex.computeFlowResistance1,hex.computeFlowResistance2,hex.deltaM1,hex.deltaM2,hex.dh1,hex.dh2,hex.dp1_nominal,hex.dp2_nominal,hex.ducMan_a.ReC,hex.ducMan_a.allowFlowReversal,hex.ducMan_a.deltaM,hex.ducMan_a.dh,hex.ducMan_a.dp_nominal,hex.ducMan_a.fixRes._dp_start,hex.ducMan_a.fixRes._m_flow_start,hex.ducMan_a.fixRes.allowFlowReversal,hex.ducMan_a.fixRes.coeff,hex.ducMan_a.fixRes.computeFlowResistance,hex.ducMan_a.fixRes.deltaM,hex.ducMan_a.fixRes.dp_nominal,hex.ducMan_a.fixRes.dp_nominal_pos,hex.ducMan_a.fixRes.eta_default,hex.ducMan_a.fixRes.from_dp,hex.ducMan_a.fixRes.k,hex.ducMan_a.fixRes.linearized,hex.ducMan_a.fixRes.m_flow_nominal,hex.ducMan_a.fixRes.m_flow_nominal_pos,hex.ducMan_a.fixRes.m_flow_small,hex.ducMan_a.fixRes.m_flow_turbulent,hex.ducMan_a.fixRes.port_a.p,hex.ducMan_a.fixRes.port_b.Xi_outflow[1],hex.ducMan_a.fixRes.port_b.p,hex.ducMan_a.fixRes.sta_default.T,hex.ducMan_a.fixRes.sta_default.X[1],hex.ducMan_a.fixRes.sta_default.X[2],hex.ducMan_a.fixRes.sta_default.p,hex.ducMan_a.floDis.allowFlowReversal,hex.ducMan_a.floDis.dpDis.k,hex.ducMan_a.floDis.gain.k,hex.ducMan_a.floDis.mStart_flow_a,hex.ducMan_a.floDis.m_flow_nominal,hex.ducMan_a.floDis.nPipPar,hex.ducMan_a.floDis.nPipSeg,hex.ducMan_a.floDis.port_a.p,hex.ducMan_a.floDis.port_b[1,1].p,hex.ducMan_a.floDis.port_b[1,2].p,hex.ducMan_a.floDis.port_b[1,3].p,hex.ducMan_a.floDis.senMasFlo.allowFlowReversal,hex.ducMan_a.floDis.senMasFlo.m_flow_nominal,hex.ducMan_a.floDis.senMasFlo.m_flow_small,hex.ducMan_a.floDis.senMasFlo.port_a.p,hex.ducMan_a.floDis.senMasFlo.port_b.Xi_outflow[1],hex.ducMan_a.floDis.senMasFlo.port_b.p,hex.ducMan_a.floDis.sou0.allowFlowReversal,hex.ducMan_a.floDis.sou0.control_dp,hex.ducMan_a.floDis.sou0.control_m_flow,hex.ducMan_a.floDis.sou0.dp_start,hex.ducMan_a.floDis.sou0.m_flow_small,hex.ducMan_a.floDis.sou0.m_flow_start,hex.ducMan_a.floDis.sou0.port_a.p,hex.ducMan_a.floDis.sou0.port_b.p,hex.ducMan_a.floDis.sou0.show_T,hex.ducMan_a.floDis.sou0.show_V_flow,hex.ducMan_a.floDis.sou2[1,1].allowFlowReversal,hex.ducMan_a.floDis.sou2[1,1].control_dp,hex.ducMan_a.floDis.sou2[1,1].control_m_flow,hex.ducMan_a.floDis.sou2[1,1].dp_start,hex.ducMan_a.floDis.sou2[1,1].m_flow_small,hex.ducMan_a.floDis.sou2[1,1].m_flow_start,hex.ducMan_a.floDis.sou2[1,1].port_a.p,hex.ducMan_a.floDis.sou2[1,1].port_b.p,hex.ducMan_a.floDis.sou2[1,1].show_T,hex.ducMan_a.floDis.sou2[1,1].show_V_flow,hex.ducMan_a.floDis.sou2[1,2].allowFlowReversal,hex.ducMan_a.floDis.sou2[1,2].control_dp,hex.ducMan_a.floDis.sou2[1,2].control_m_flow,hex.ducMan_a.floDis.sou2[1,2].dp_start,hex.ducMan_a.floDis.sou2[1,2].m_flow_small,hex.ducMan_a.floDis.sou2[1,2].m_flow_start,hex.ducMan_a.floDis.sou2[1,2].port_a.p,hex.ducMan_a.floDis.sou2[1,2].port_b.p,hex.ducMan_a.floDis.sou2[1,2].show_T,hex.ducMan_a.floDis.sou2[1,2].show_V_flow,hex.ducMan_a.from_dp,hex.ducMan_a.linearized,hex.ducMan_a.mStart_flow_a,hex.ducMan_a.m_flow_nominal,hex.ducMan_a.nPipPar,hex.ducMan_a.nPipSeg,hex.ducMan_a.port_a.p,hex.ducMan_a.port_b[1,1].p,hex.ducMan_a.port_b[1,2].p,hex.ducMan_a.port_b[1,3].p,hex.ducMan_a.use_dh,hex.ducMan_b.allowFlowReversal,hex.ducMan_b.mStart_flow_a,hex.ducMan_b.nPipPar,hex.ducMan_b.nPipSeg,hex.ducMan_b.port_a.p,hex.ducMan_b.port_b[1,1].p,hex.ducMan_b.port_b[1,2].p,hex.ducMan_b.port_b[1,3].p,hex.energyDynamics,hex.from_dp1,hex.from_dp2,hex.gai_1.k,hex.gai_1.u,hex.gai_2.k,hex.gai_2.u,hex.hA.T0_a,hex.hA.T0_w,hex.hA.UA_nominal,hex.hA.airSideFlowDependent,hex.hA.airSideTemperatureDependent,hex.hA.hA_1,hex.hA.hA_2,hex.hA.hA_nominal_a,hex.hA.hA_nominal_w,hex.hA.m_flow_nominal_a,hex.hA.m_flow_nominal_w,hex.hA.n_a,hex.hA.n_w,hex.hA.r_nominal,hex.hA.s_w,hex.hA.waterSideFlowDependent,hex.hA.waterSideTemperatureDependent,hex.hea1[1].allowFlowReversal,hex.hea1[1].mStart_flow_a,hex.hea1[1].nPipPar,hex.hea1[2].allowFlowReversal,hex.hea1[2].mStart_flow_a,hex.hea1[2].nPipPar,hex.hea2[1].allowFlowReversal,hex.hea2[1].mStart_flow_a,hex.hea2[1].nPipPar,hex.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ominal,hex.hexReg[3].ele[1,2].energyDynamics,hex.hexReg[3].ele[1,2].from_dp1,hex.hexReg[3].ele[1,2].from_dp2,hex.hexReg[3].ele[1,2].gain.k,hex.hexReg[3].ele[1,2].h1_outflow_start,hex.hexReg[3].ele[1,2].h2_outflow_start,hex.hexReg[3].ele[1,2].linearizeFlowResistance1,hex.hexReg[3].ele[1,2].linearizeFlowResistance2,hex.hexReg[3].ele[1,2].m1_flow_nominal,hex.hexReg[3].ele[1,2].m1_flow_small,hex.hexReg[3].ele[1,2].m2_flow_nominal,hex.hexReg[3].ele[1,2].m2_flow_small,hex.hexReg[3].ele[1,2].mas.C,hex.hexReg[3].ele[1,2].masExc.Le,hex.hexReg[3].ele[1,2].masExc.cpLe_default,hex.hexReg[3].ele[1,2].masExc.cp_default,hex.hexReg[3].ele[1,2].masExc.delX.k1,hex.hexReg[3].ele[1,2].masExc.delX.k2,hex.hexReg[3].ele[1,2].masExc.gain.k,hex.hexReg[3].ele[1,2].masExc.humRatPre.p,hex.hexReg[3].ele[1,2].masExc.humRatPre.use_p_in,hex.hexReg[3].ele[1,2].masExc.n,hex.hexReg[3].ele[1,2].masExc.sta_default.T,hex.hexReg[3].ele[1,2].masExc.sta_default.X[1],hex.hexReg[3].ele[1,2].masExc.sta_default.X[2],hex.hexReg[3].ele[1,2].masExc.sta_default.p,hex.hexReg[3].ele[1,2].masExc.zero.k,hex.hexReg[3].ele[1,2].p1_start,hex.hexReg[3].ele[1,2].p2_start,hex.hexReg[3].ele[1,2].port_a2.p,hex.hexReg[3].ele[1,2].port_b2.p,hex.hexReg[3].ele[1,2].preDro1._dp_start,hex.hexReg[3].ele[1,2].preDro1._m_flow_start,hex.hexReg[3].ele[1,2].preDro1.allowFlowReversal,hex.hexReg[3].ele[1,2].preDro1.coeff,hex.hexReg[3].ele[1,2].preDro1.computeFlowResistance,hex.hexReg[3].ele[1,2].preDro1.deltaM,hex.hexReg[3].ele[1,2].preDro1.dp_nominal,hex.hexReg[3].ele[1,2].preDro1.dp_nominal_pos,hex.hexReg[3].ele[1,2].preDro1.eta_default,hex.hexReg[3].ele[1,2].preDro1.from_dp,hex.hexReg[3].ele[1,2].preDro1.k,hex.hexReg[3].ele[1,2].preDro1.linearized,hex.hexReg[3].ele[1,2].preDro1.m_flow_nominal,hex.hexReg[3].ele[1,2].preDro1.m_flow_nominal_pos,hex.hexReg[3].ele[1,2].preDro1.m_flow_small,hex.hexReg[3].ele[1,2].preDro1.m_flow_turbulent,hex.hexReg[3].ele[1,2].preDro1.sta_default.T,hex.hexReg[3].ele[1,2].preDro1.sta_default.p,hex.hexReg[3].ele[1,2].preDro2._dp_start,hex.hexReg[3].ele[1,2].preDro2._m_flow_start,hex.hexReg[3].ele[1,2].preDro2.allowFlowReversal,hex.hexReg[3].ele[1,2].preDro2.coeff,hex.hexReg[3].ele[1,2].preDro2.computeFlowResistance,hex.hexReg[3].ele[1,2].preDro2.deltaM,hex.hexReg[3].ele[1,2].preDro2.dp_nominal,hex.hexReg[3].ele[1,2].preDro2.dp_nominal_pos,hex.hexReg[3].ele[1,2].preDro2.eta_default,hex.hexReg[3].ele[1,2].preDro2.from_dp,hex.hexReg[3].ele[1,2].preDro2.k,hex.hexReg[3].ele[1,2].preDro2.linearized,hex.hexReg[3].ele[1,2].preDro2.m_flow_nominal,hex.hexReg[3].ele[1,2].preDro2.m_flow_nominal_pos,hex.hexReg[3].ele[1,2].preDro2.m_flow_small,hex.hexReg[3].ele[1,2].preDro2.m_flow_turbulent,hex.hexReg[3].ele[1,2].preDro2.port_a.p,hex.hexReg[3].ele[1,2].preDro2.port_b.p,hex.hexReg[3].ele[1,2].preDro2.sta_default.T,hex.hexReg[3].ele[1,2].preDro2.sta_default.X[1],hex.hexReg[3].ele[1,2].preDro2.sta_default.X[2],hex.hexReg[3].ele[1,2].preDro2.sta_default.p,hex.hexReg[3].ele[1,2].rho1_nominal,hex.hexReg[3].ele[1,2].rho2_nominal,hex.hexReg[3].ele[1,2].sta1_nominal.T,hex.hexReg[3].ele[1,2].sta1_nominal.p,hex.hexReg[3].ele[1,2].sta1_start.T,hex.hexReg[3].ele[1,2].sta1_start.p,hex.hexReg[3].ele[1,2].sta2_nominal.T,hex.hexReg[3].ele[1,2].sta2_nominal.X[1],hex.hexReg[3].ele[1,2].sta2_nominal.X[2],hex.hexReg[3].ele[1,2].sta2_nominal.p,hex.hexReg[3].ele[1,2].sta2_start.T,hex.hexReg[3].ele[1,2].sta2_start.X[1],hex.hexReg[3].ele[1,2].sta2_start.X[2],hex.hexReg[3].ele[1,2].sta2_start.p,hex.hexReg[3].ele[1,2].state_a2_inflow.p,hex.hexReg[3].ele[1,2].state_b2_inflow.p,hex.hexReg[3].ele[1,2].tau1,hex.hexReg[3].ele[1,2].tau2,hex.hexReg[3].ele[1,2].tau_m,hex.hexReg[3].ele[1,2].vol1.T_start,hex.hexReg[3].ele[1,2].vol1.V,hex.hexReg[3].ele[1,2].vol1.X_start[1],hex.hexReg[3].ele[1,2].vol1.allowFlowReversal,hex.hexReg[3].ele[1,2].vol1.dynBal.CSen,hex.hexReg[3].ele[1,2].vol1.dynBal.T_start,hex.hexReg[3].ele[1,2].vol1.dynBal.X_start[1],hex.hexReg[3].ele[1,2].vol1.dynBal.computeCSen,hex.hexReg[3].ele[1,2].vol1.dynBal.cp_default,hex.hexReg[3].ele[1,2].vol1.dynBal.energyDynamics,hex.hexReg[3].ele[1,2].vol1.dynBal.fluidVolume,hex.hexReg[3].ele[1,2].vol1.dynBal.hStart,hex.hexReg[3].ele[1,2].vol1.dynBal.initialize_p,hex.hexReg[3].ele[1,2].vol1.dynBal.mSenFac,hex.hexReg[3].ele[1,2].vol1.dynBal.massDynamics,hex.hexReg[3].ele[1,2].vol1.dynBal.medium.preferredMediumStates,hex.hexReg[3].ele[1,2].vol1.dynBal.medium.standardOrderComponents,hex.hexReg[3].ele[1,2].vol1.dynBal.nPorts,hex.hexReg[3].ele[1,2].vol1.dynBal.p_start,hex.hexReg[3].ele[1,2].vol1.dynBal.rho_default,hex.hexReg[3].ele[1,2].vol1.dynBal.rho_start,hex.hexReg[3].ele[1,2].vol1.dynBal.state_default.T,hex.hexReg[3].ele[1,2].vol1.dynBal.state_default.p,hex.hexReg[3].ele[1,2].vol1.dynBal.substanceDynamics,hex.hexReg[3].ele[1,2].vol1.dynBal.traceDynamics,hex.hexReg[3].ele[1,2].vol1.dynBal.use_C_flow,hex.hexReg[3].ele[1,2].vol1.dynBal.use_mWat_flow,hex.hexReg[3].ele[1,2].vol1.dynBal.wrongEnergyMassBalanceConfiguration,hex.hexReg[3].ele[1,2].vol1.ene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Reg[3].ele[1,3].vol2.dynBal.X_start[1],hex.hexReg[3].ele[1,3].vol2.dynBal.X_start[2],hex.hexReg[3].ele[1,3].vol2.dynBal.computeCSen,hex.hexReg[3].ele[1,3].vol2.dynBal.cp_default,hex.hexReg[3].ele[1,3].vol2.dynBal.energyDynamics,hex.hexReg[3].ele[1,3].vol2.dynBal.fluidVolume,hex.hexReg[3].ele[1,3].vol2.dynBal.hStart,hex.hexReg[3].ele[1,3].vol2.dynBal.initialize_p,hex.hexReg[3].ele[1,3].vol2.dynBal.mSenFac,hex.hexReg[3].ele[1,3].vol2.dynBal.massDynamics,hex.hexReg[3].ele[1,3].vol2.dynBal.medium.p,hex.hexReg[3].ele[1,3].vol2.dynBal.medium.preferredMediumStates,hex.hexReg[3].ele[1,3].vol2.dynBal.medium.standardOrderComponents,hex.hexReg[3].ele[1,3].vol2.dynBal.medium.state.p,hex.hexReg[3].ele[1,3].vol2.dynBal.nPorts,hex.hexReg[3].ele[1,3].vol2.dynBal.p_start,hex.hexReg[3].ele[1,3].vol2.dynBal.ports[1].p,hex.hexReg[3].ele[1,3].vol2.dynBal.ports[2].p,hex.hexReg[3].ele[1,3].vol2.dynBal.rho_default,hex.hexReg[3].ele[1,3].vol2.dynBal.rho_start,hex.hexReg[3].ele[1,3].vol2.dynBal.s[1],hex.hexReg[3].ele[1,3].vol2.dynBal.state_default.T,hex.hexReg[3].ele[1,3].vol2.dynBal.state_default.X[1],hex.hexReg[3].ele[1,3].vol2.dynBal.state_default.X[2],hex.hexReg[3].ele[1,3].vol2.dynBal.state_default.p,hex.hexReg[3].ele[1,3].vol2.dynBal.substanceDynamics,hex.hexReg[3].ele[1,3].vol2.dynBal.traceDynamics,hex.hexReg[3].ele[1,3].vol2.dynBal.use_C_flow,hex.hexReg[3].ele[1,3].vol2.dynBal.use_mWat_flow,hex.hexReg[3].ele[1,3].vol2.dynBal.wrongEnergyMassBalanceConfiguration,hex.hexReg[3].ele[1,3].vol2.energyDynamics,hex.hexReg[3].ele[1,3].vol2.mSenFac,hex.hexReg[3].ele[1,3].vol2.m_flow_nominal,hex.hexReg[3].ele[1,3].vol2.m_flow_small,hex.hexReg[3].ele[1,3].vol2.massDynamics,hex.hexReg[3].ele[1,3].vol2.nPorts,hex.hexReg[3].ele[1,3].vol2.p,hex.hexReg[3].ele[1,3].vol2.p_start,hex.hexReg[3].ele[1,3].vol2.ports[1].p,hex.hexReg[3].ele[1,3].vol2.ports[2].p,hex.hexReg[3].ele[1,3].vol2.rho_default,hex.hexReg[3].ele[1,3].vol2.rho_start,hex.hexReg[3].ele[1,3].vol2.s[1],hex.hexReg[3].ele[1,3].vol2.state_default.T,hex.hexReg[3].ele[1,3].vol2.state_default.X[1],hex.hexReg[3].ele[1,3].vol2.state_default.X[2],hex.hexReg[3].ele[1,3].vol2.state_default.p,hex.hexReg[3].ele[1,3].vol2.state_start.T,hex.hexReg[3].ele[1,3].vol2.state_start.X[1],hex.hexReg[3].ele[1,3].vol2.state_start.X[2],hex.hexReg[3].ele[1,3].vol2.state_start.p,hex.hexReg[3].ele[1,3].vol2.substanceDynamics,hex.hexReg[3].ele[1,3].vol2.traceDynamics,hex.hexReg[3].ele[1,3].vol2.useSteadyStateTwoPort,hex.hexReg[3].ele[1,3].vol2.wrongEnergyMassBalanceConfiguration,hex.hexReg[3].energyDynamics,hex.hexReg[3].from_dp1,hex.hexReg[3].from_dp2,hex.hexReg[3].gai_1.k,hex.hexReg[3].gai_2.k,hex.hexReg[3].linearizeFlowResistance1,hex.hexReg[3].linearizeFlowResistance2,hex.hexReg[3].m1_flow_nominal,hex.hexReg[3].m2_flow_nominal,hex.hexReg[3].nEle,hex.hexReg[3].nPipPar,hex.hexReg[3].nPipSeg,hex.hexReg[3].port_a2[1,1].p,hex.hexReg[3].port_a2[1,2].p,hex.hexReg[3].port_a2[1,3].p,hex.hexReg[3].port_b2[1,1].p,hex.hexReg[3].port_b2[1,2].p,hex.hexReg[3].port_b2[1,3].p,hex.hexReg[3].tau1,hex.hexReg[3].tau2,hex.hexReg[3].tau_m,hex.hexReg[4].UA_nominal,hex.hexReg[4].allowFlowReversal1,hex.hexReg[4].allowFlowReversal2,hex.hexReg[4].computeFlowResistance1,hex.hexReg[4].computeFlowResistance2,hex.hexReg[4].deltaM1,hex.hexReg[4].deltaM2,hex.hexReg[4].dp1_nominal,hex.hexReg[4].dp2_nominal,hex.hexReg[4].ele[1,1].C,hex.hexReg[4].ele[1,1].T1_start,hex.hexReg[4].ele[1,1].T2_start,hex.hexReg[4].ele[1,1].UA_nominal,hex.hexReg[4].ele[1,1].X1_start[1],hex.hexReg[4].ele[1,1].X2_start[1],hex.hexReg[4].ele[1,1].X2_start[2],hex.hexReg[4].ele[1,1].allowFlowReversal1,hex.hexReg[4].ele[1,1].allowFlowReversal2,hex.hexReg[4].ele[1,1].computeFlowResistance1,hex.hexReg[4].ele[1,1].computeFlowResistance2,hex.hexReg[4].ele[1,1].deltaM1,hex.hexReg[4].ele[1,1].deltaM2,hex.hexReg[4].ele[1,1].dp1_nominal,hex.hexReg[4].ele[1,1].dp2_nominal,hex.hexReg[4].ele[1,1].energyDynamics,hex.hexReg[4].ele[1,1].from_dp1,hex.hexReg[4].ele[1,1].from_dp2,hex.hexReg[4].ele[1,1].gain.k,hex.hexReg[4].ele[1,1].h1_outflow_start,hex.hexReg[4].ele[1,1].h2_outflow_start,hex.hexReg[4].ele[1,1].linearizeFlowResistance1,hex.hexReg[4].ele[1,1].linearizeFlowResistance2,hex.hexReg[4].ele[1,1].m1_flow_nominal,hex.hexReg[4].ele[1,1].m1_flow_small,hex.hexReg[4].ele[1,1].m2_flow_nominal,hex.hexReg[4].ele[1,1].m2_flow_small,hex.hexReg[4].ele[1,1].mas.C,hex.hexReg[4].ele[1,1].masExc.Le,hex.hexReg[4].ele[1,1].masExc.cpLe_default,hex.hexReg[4].ele[1,1].masExc.cp_default,hex.hexReg[4].ele[1,1].masExc.delX.k1,hex.hexReg[4].ele[1,1].masExc.delX.k2,hex.hexReg[4].ele[1,1].masExc.gain.k,hex.hexReg[4].ele[1,1].masExc.humRatPre.p,hex.hexReg[4].ele[1,1].masExc.humRatPre.use_p_in,hex.hexReg[4].ele[1,1].masExc.n,hex.hexReg[4].ele[1,1].masExc.sta_default.T,hex.hexReg[4].ele[1,1].masExc.sta_default.X[1],hex.hexReg[4].ele[1,1].masExc.sta_default.X[2],hex.hexReg[4].ele[1,1].masExc.sta_default.p,hex.hexReg[4].ele[1,1].masExc.zero.k,hex.hexReg[4].ele[1,1].p1_start,hex.hexReg[4].ele[1,1].p2_start,hex.hexReg[4].ele[1,1].port_a2.p,hex.hexReg[4].ele[1,1].port_b2.p,hex.hexReg[4].ele[1,1].preDro1._dp_start,hex.hexReg[4].ele[1,1].preDro1._m_flow_start,hex.hexReg[4].ele[1,1].preDro1.allowFlowReversal,hex.hexReg[4].ele[1,1].preDro1.coeff,hex.hexReg[4].ele[1,1].preDro1.computeFlowResistance,hex.hexReg[4].ele[1,1].preDro1.deltaM,hex.hexReg[4].ele[1,1].preDro1.dp_nominal,hex.hexReg[4].ele[1,1].preDro1.dp_nominal_pos,hex.hexReg[4].ele[1,1].preDro1.eta_default,hex.hexReg[4].ele[1,1].preDro1.from_dp,hex.hexReg[4].ele[1,1].preDro1.k,hex.hexReg[4].ele[1,1].preDro1.linearized,hex.hexReg[4].ele[1,1].preDro1.m_flow_nominal,hex.hexReg[4].ele[1,1].preDro1.m_flow_nominal_pos,hex.hexReg[4].ele[1,1].preDro1.m_flow_small,hex.hexReg[4].ele[1,1].preDro1.m_flow_turbulent,hex.hexReg[4].ele[1,1].preDro1.sta_default.T,hex.hexReg[4].ele[1,1].preDro1.sta_default.p,hex.hexReg[4].ele[1,1].preDro2._dp_start,hex.hexReg[4].ele[1,1].preDro2._m_flow_start,hex.hexReg[4].ele[1,1].preDro2.allowFlowReversal,hex.hexReg[4].ele[1,1].preDro2.coeff,hex.hexReg[4].ele[1,1].preDro2.computeFlowResistance,hex.hexReg[4].ele[1,1].preDro2.deltaM,hex.hexReg[4].ele[1,1].preDro2.dp_nominal,hex.hexReg[4].ele[1,1].preDro2.dp_nominal_pos,hex.hexReg[4].ele[1,1].preDro2.eta_default,hex.hexReg[4].ele[1,1].preDro2.from_dp,hex.hexReg[4].ele[1,1].preDro2.k,hex.hexReg[4].ele[1,1].preDro2.linearized,hex.hexReg[4].ele[1,1].preDro2.m_flow_nominal,hex.hexReg[4].ele[1,1].preDro2.m_flow_nominal_pos,hex.hexReg[4].ele[1,1].preDro2.m_flow_small,hex.hexReg[4].ele[1,1].preDro2.m_flow_turbulent,hex.hexReg[4].ele[1,1].preDro2.port_a.p,hex.hexReg[4].ele[1,1].preDro2.port_b.p,hex.hexReg[4].ele[1,1].preDro2.sta_default.T,hex.hexReg[4].ele[1,1].preDro2.sta_default.X[1],hex.hexReg[4].ele[1,1].preDro2.sta_default.X[2],hex.hexReg[4].ele[1,1].preDro2.sta_default.p,hex.hexReg[4].ele[1,1].rho1_nominal,hex.hexReg[4].ele[1,1].rho2_nominal,hex.hexReg[4].ele[1,1].sta1_nominal.T,hex.hexReg[4].ele[1,1].sta1_nominal.p,hex.hexReg[4].ele[1,1].sta1_start.T,hex.hexReg[4].ele[1,1].sta1_start.p,hex.hexReg[4].ele[1,1].sta2_nominal.T,hex.hexReg[4].ele[1,1].sta2_nominal.X[1],hex.hexReg[4].ele[1,1].sta2_nominal.X[2],hex.hexReg[4].ele[1,1].sta2_nominal.p,hex.hexReg[4].ele[1,1].sta2_start.T,hex.hexReg[4].ele[1,1].sta2_start.X[1],hex.hexReg[4].ele[1,1].sta2_start.X[2],hex.hexReg[4].ele[1,1].sta2_start.p,hex.hexReg[4].ele[1,1].state_a2_inflow.p,hex.hexReg[4].ele[1,1].state_b2_inflow.p,hex.hexReg[4].ele[1,1].tau1,hex.hexReg[4].ele[1,1].tau2,hex.hexReg[4].ele[1,1].tau_m,hex.hexReg[4].ele[1,1].vol1.T_start,hex.hexReg[4].ele[1,1].vol1.V,hex.hexReg[4].ele[1,1].vol1.X_start[1],hex.hexReg[4].ele[1,1].vol1.allowFlowReversal,hex.hexReg[4].ele[1,1].vol1.dynBal.CSen,hex.hexReg[4].ele[1,1].vol1.dynBal.T_start,hex.hexReg[4].ele[1,1].vol1.dynBal.X_start[1],hex.hexReg[4].ele[1,1].vol1.dynBal.computeCSen,hex.hexReg[4].ele[1,1].vol1.dynBal.cp_default,hex.hexReg[4].ele[1,1].vol1.dynBal.energyDynamics,hex.hexReg[4].ele[1,1].vol1.dynBal.fluidVolume,hex.hexReg[4].ele[1,1].vol1.dynBal.hStart,hex.hexReg[4].ele[1,1].vol1.dynBal.initialize_p,hex.hexReg[4].ele[1,1].vol1.dynBal.mSenFac,hex.hexReg[4].ele[1,1].vol1.dynBal.massDynamics,hex.hexReg[4].ele[1,1].vol1.dynBal.medium.preferredMediumStates,hex.hexReg[4].ele[1,1].vol1.dynBal.medium.standardOrderComponents,hex.hexReg[4].ele[1,1].vol1.dynBal.nPorts,hex.hexReg[4].ele[1,1].vol1.dynBal.p_start,hex.hexReg[4].ele[1,1].vol1.dynBal.rho_default,hex.hexReg[4].ele[1,1].vol1.dynBal.rho_start,hex.hexReg[4].ele[1,1].vol1.dynBal.state_default.T,hex.hexReg[4].ele[1,1].vol1.dynBal.state_default.p,hex.hexReg[4].ele[1,1].vol1.dynBal.substanceDynamics,hex.hexReg[4].ele[1,1].vol1.dynBal.traceDynamics,hex.hexReg[4].ele[1,1].vol1.dynBal.use_C_flow,hex.hexReg[4].ele[1,1].vol1.dynBal.use_mWat_flow,hex.hexReg[4].ele[1,1].vol1.dynBal.wrongEnergyMassBalanceConfiguration,hex.hexReg[4].ele[1,1].vol1.energyDynamics,hex.hexReg[4].ele[1,1].vol1.mSenFac,hex.hexReg[4].ele[1,1].vol1.m_flow_nominal,hex.hexReg[4].ele[1,1].vol1.m_flow_small,hex.hexReg[4].ele[1,1].vol1.massDynamics,hex.hexReg[4].ele[1,1].vol1.nPorts,hex.hexReg[4].ele[1,1].vol1.p_start,hex.hexReg[4].ele[1,1].vol1.rho_default,hex.hexReg[4].ele[1,1].vol1.rho_start,hex.hexReg[4].ele[1,1].vol1.state_default.T,hex.hexReg[4].ele[1,1].vol1.state_default.p,hex.hexReg[4].ele[1,1].vol1.state_start.T,hex.hexReg[4].ele[1,1].vol1.state_start.p,hex.hexReg[4].ele[1,1].vol1.substanceDynamics,hex.hexReg[4].ele[1,1].vol1.traceDynamics,hex.hexReg[4].ele[1,1].vol1.useSteadyStateTwoPort,hex.hexReg[4].ele[1,1].vol1.wrongEnergyMassBalanceConfiguration,hex.hexReg[4].ele[1,1].vol2.T_start,hex.hexReg[4].ele[1,1].vol2.V,hex.hexReg[4].ele[1,1].vol2.X_start[1],hex.hexReg[4].ele[1,1].vol2.X_start[2],hex.hexReg[4].ele[1,1].vol2.allowFlowReversal,hex.hexReg[4].ele[1,1].vol2.dynBal.CSen,hex.hexReg[4].ele[1,1].vol2.dynBal.T_start,hex.hexReg[4].ele[1,1].vol2.dynBal.X_start[1],hex.hexReg[4].ele[1,1].vol2.dynBal.X_start[2],hex.hexReg[4].ele[1,1].vol2.dynBal.computeCSen,hex.hexReg[4].ele[1,1].vol2.dyn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