Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Buildings_13_Buildings.Applications.DataCenters.DXCooled.Examples.DXCooledAirsideEconomizer.conf.json 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 0.00235/0.00235, allocations: 80.88 kB / 21.56 MB, free: 2.934 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 0.00278/0.00278, allocations: 163.9 kB / 24.97 MB, free: 8.695 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 1.635/1.635, allocations: 177.1 MB / 205.4 MB, free: 4.477 MB / 186.7 MB " [Timeout remaining time 178] loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 13.0.2-maint.13.x/package.mo", uses=false) [Timeout 180] "Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 13.0.2-maint.13.x/package.mo): time 3.419/3.419, allocations: 389.5 MB / 0.6361 GB, free: 13.39 MB / 0.6042 GB " [Timeout remaining time 176] Using package Buildings with version 13.0.2 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 13.0.2-maint.13.x/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) Running command: translateModel(Buildings.Applications.DataCenters.DXCooled.Examples.DXCooledAirsideEconomizer,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.Applications.DataCenters.DXCooled.Examples.DXCooledAirsideEconomizer") translateModel(Buildings.Applications.DataCenters.DXCooled.Examples.DXCooledAirsideEconomizer,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.Applications.DataCenters.DXCooled.Examples.DXCooledAirsideEconomizer") [Timeout 300] "Notification: Performance of FrontEnd - Absyn->SCode: time 3.729e-05/3.729e-05, allocations: 2.312 kB / 0.776 GB, free: 13.95 MB / 0.7448 GB Notification: Performance of NFInst.instantiate(Buildings.Applications.DataCenters.DXCooled.Examples.DXCooledAirsideEconomizer): time 0.8504/0.8504, allocations: 177.3 MB / 0.9491 GB, free: 0.9453 MB / 0.8542 GB Notification: Performance of NFInst.instExpressions: time 0.06917/0.9196, allocations: 25.42 MB / 0.974 GB, free: 7.492 MB / 0.8855 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.009875/0.9294, allocations: 246 kB / 0.9742 GB, free: 7.25 MB / 0.8855 GB Notification: Performance of NFTyping.typeComponents: time 0.01176/0.9412, allocations: 2.963 MB / 0.9771 GB, free: 4.273 MB / 0.8855 GB Notification: Performance of NFTyping.typeBindings: time 0.01933/0.9605, allocations: 5.01 MB / 0.982 GB, free: 15.23 MB / 0.9011 GB Notification: Performance of NFTyping.typeClassSections: time 0.01781/0.9783, allocations: 5.753 MB / 0.9876 GB, free: 9.484 MB / 0.9011 GB Notification: Performance of NFFlatten.flatten: time 0.0469/1.025, allocations: 24.48 MB / 1.012 GB, free: 0.9609 MB / 0.9167 GB Notification: Performance of NFFlatten.resolveConnections: time 0.02281/1.048, allocations: 7.242 MB / 1.019 GB, free: 9.621 MB / 0.9323 GB Notification: Performance of NFEvalConstants.evaluate: time 0.03923/1.087, allocations: 10.02 MB / 1.028 GB, free: 15.69 MB / 0.948 GB Notification: Performance of NFSimplifyModel.simplify: time 0.03242/1.12, allocations: 5.152 MB / 1.033 GB, free: 10.53 MB / 0.948 GB Notification: Performance of NFPackage.collectConstants: time 0.007949/1.128, allocations: 0.8672 MB / 1.034 GB, free: 9.66 MB / 0.948 GB Notification: Performance of NFFlatten.collectFunctions: time 0.03399/1.162, allocations: 6.261 MB / 1.04 GB, free: 3.395 MB / 0.948 GB Notification: Performance of combineBinaries: time 0.03512/1.197, allocations: 17.16 MB / 1.057 GB, free: 2.152 MB / 0.9636 GB Notification: Performance of replaceArrayConstructors: time 0.01506/1.212, allocations: 8.777 MB / 1.066 GB, free: 9.312 MB / 0.9792 GB Notification: Performance of NFVerifyModel.verify: time 0.004942/1.217, allocations: 0.6055 MB / 1.066 GB, free: 8.707 MB / 0.9792 GB Notification: Performance of FrontEnd: time 0.002046/1.219, allocations: 349.7 kB / 1.067 GB, free: 8.363 MB / 0.9792 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 1247 (1120) * Number of variables: 1247 (1098) Notification: Performance of [SIM] Bindings: time 0.1132/1.332, allocations: 60.1 MB / 1.125 GB, free: 11.41 MB / 1.042 GB Notification: Performance of [SIM] FunctionAlias: time 0.01966/1.352, allocations: 7.941 MB / 1.133 GB, free: 3.508 MB / 1.042 GB Notification: Performance of [SIM] Early Inline: time 0.1162/1.468, allocations: 49.73 MB / 1.182 GB, free: 1.668 MB / 1.089 GB Notification: Performance of [SIM] Simplify 1: time 0.0135/1.481, allocations: 4.246 MB / 1.186 GB, free: 13.28 MB / 1.104 GB Warning: NBAlias.selectStartByConfidence: Alias set with conflicting unfixed start values of equal confidence detected. Use -d=dumprepl for more information. Notification: Performance of [SIM] Alias: time 0.08415/1.565, allocations: 34.16 MB / 1.219 GB, free: 8.688 MB / 1.135 GB Notification: Performance of [SIM] Simplify 2: time 0.01338/1.579, allocations: 4.166 MB / 1.223 GB, free: 4.305 MB / 1.135 GB Notification: Performance of [SIM] Remove Stream: time 0.009442/1.588, allocations: 2.918 MB / 1.226 GB, free: 1.258 MB / 1.135 GB Notification: Performance of [SIM] Detect States: time 0.7352/2.323, allocations: 8.122 MB / 1.234 GB, free: 171.4 MB / 1.135 GB Notification: Performance of [SIM] Events: time 0.009092/2.333, allocations: 2.728 MB / 1.237 GB, free: 171.2 MB / 1.135 GB Notification: Performance of [SIM] Partitioning: time 0.04431/2.377, allocations: 8.77 MB / 1.245 GB, free: 170 MB / 1.135 GB Notification: Performance of [SIM] Causalize: time 0.03255/2.409, allocations: 9.481 MB / 1.254 GB, free: 168.7 MB / 1.135 GB Notification: Performance of [SIM] After Index Reduction Inline: time 0.03648/2.446, allocations: 23.42 MB / 1.277 GB, free: 168.6 MB / 1.135 GB Notification: Performance of [INI] Simplify: time 0.0415/2.487, allocations: 19.75 MB / 1.297 GB, free: 164.7 MB / 1.135 GB Notification: Performance of [INI] Inline: time 0.05854/2.546, allocations: 44.38 MB / 1.34 GB, free: 146.2 MB / 1.135 GB Notification: Performance of [INI] Partitioning: time 0.001733/2.548, allocations: 372.6 kB / 1.34 GB, free: 145.9 MB / 1.135 GB Notification: Performance of [INI] Cleanup: time 0.01408/2.562, allocations: 10.62 MB / 1.351 GB, free: 137.9 MB / 1.135 GB Warning: NBResolveSingularities.balanceInitialization reports an overdetermined initialization! Checking for consistency is not yet supported, following equations had to be removed: [RECD] (165) varSpeDX.dxCoi.wetCoi.datCoi = varSpeDX.dxCoi.datCoi; ($RES_BND_2887) slice: {42, 43, 44, 45, 46, 47, 48, 49, 50, 51, ...} [RECD] (165) varSpeDX.datCoi = datCoi; ($RES_BND_2883) slice: {42, 43, 44, 45, 46, 47, 48, 49, 50, 51, ...} [SCAL] (1) datCoi.sta[1].nomVal.gamma = 1.5; ($RES_SIM_2933) [SCAL] (1) datCoi.sta[1].nomVal.tWet = 1400.0; ($RES_SIM_2932) [SCAL] (1) datCoi.sta[1].nomVal.p_nominal = 101325.0; ($RES_SIM_2931) [SCAL] (1) datCoi.sta[1].nomVal.phiIn_nominal = 0.5; ($RES_SIM_2930) [SCAL] (1) datCoi.sta[1].nomVal.TConIn_nominal = 308.15; ($RES_SIM_2929) [SCAL] (1) datCoi.sta[1].nomVal.TEvaIn_nominal = 298.15; ($RES_SIM_2928) [SCAL] (1) datCoi.sta[1].nomVal.m_flow_nominal = 82.8363154406892; ($RES_SIM_2927) [SCAL] (1) datCoi.sta[1].nomVal.SHR_nominal = 0.8; ($RES_SIM_2926) [SCAL] (1) datCoi.sta[1].nomVal.COP_nominal = 3.0; ($RES_SIM_2925) [SCAL] (1) datCoi.sta[1].nomVal.Q_flow_nominal = 0.375 * QCoiC_flow_nominal; ($RES_SIM_2924) [SCAL] (1) datCoi.sta[1].perCur.ffMax = 1.8; ($RES_SIM_2964) [SCAL] (1) datCoi.sta[1].perCur.ffMin = 0.6; ($RES_SIM_2963) [SCAL] (1) datCoi.sta[1].perCur.TEvaInMax = 297.03889; ($RES_SIM_2962) [SCAL] (1) datCoi.sta[1].perCur.TEvaInMin = 285.92778; ($RES_SIM_2961) [SCAL] (1) datCoi.sta[1].perCur.TConInMax = 319.26111; ($RES_SIM_2960) [SCAL] (1) datCoi.sta[1].perCur.TConInMin = 291.15; ($RES_SIM_2959) [SCAL] (1) datCoi.sta[1].perCur.capFunT[6] = -9.72e-6; ($RES_SIM_2941) [SCAL] (1) datCoi.sta[1].perCur.capFunT[5] = 5.249e-6; ($RES_SIM_2940) [SCAL] (1) datCoi.sta[1].perCur.capFunT[4] = -0.011042676; ($RES_SIM_2939) [SCAL] (1) datCoi.sta[1].perCur.capFunT[3] = 6.8377e-4; ($RES_SIM_2938) [SCAL] (1) datCoi.sta[1].perCur.capFunT[2] = 0.009543347; ($RES_SIM_2937) [SCAL] (1) datCoi.sta[1].perCur.capFunT[1] = 0.942587793; ($RES_SIM_2936) [SCAL] (1) datCoi.sta[1].perCur.capFunFF[4] = 0.0; ($RES_SIM_2946) [SCAL] (1) datCoi.sta[1].perCur.capFunFF[3] = 0.0; ($RES_SIM_2945) [SCAL] (1) datCoi.sta[1].perCur.capFunFF[2] = 0.2; ($RES_SIM_2944) [SCAL] (1) datCoi.sta[1].perCur.capFunFF[1] = 0.8; ($RES_SIM_2943) [SCAL] (1) datCoi.sta[1].perCur.EIRFunT[6] = -7.28028e-4; ($RES_SIM_2953) [SCAL] (1) datCoi.sta[1].perCur.EIRFunT[5] = 4.37951e-4; ($RES_SIM_2952) [SCAL] (1) datCoi.sta[1].perCur.EIRFunT[4] = 0.004977216; ($RES_SIM_2951) [SCAL] (1) datCoi.sta[1].perCur.EIRFunT[3] = -6.237e-4; ($RES_SIM_2950) [SCAL] (1) datCoi.sta[1].perCur.EIRFunT[2] = 0.034885008; ($RES_SIM_2949) [SCAL] (1) datCoi.sta[1].perCur.EIRFunT[1] = 0.342414409; ($RES_SIM_2948) [SCAL] (1) datCoi.sta[1].perCur.EIRFunFF[4] = 0.0; ($RES_SIM_2958) [SCAL] (1) datCoi.sta[1].perCur.EIRFunFF[3] = 0.0256; ($RES_SIM_2957) [SCAL] (1) datCoi.sta[1].perCur.EIRFunFF[2] = -0.1808; ($RES_SIM_2956) [SCAL] (1) datCoi.sta[1].perCur.EIRFunFF[1] = 1.1552; ($RES_SIM_2955) [SCAL] (1) datCoi.sta[2].nomVal.gamma = 1.5; ($RES_SIM_2977) [SCAL] (1) datCoi.sta[2].nomVal.tWet = 1400.0; ($RES_SIM_2976) [SCAL] (1) datCoi.sta[2].nomVal.p_nominal = 101325.0; ($RES_SIM_2975) [SCAL] (1) datCoi.sta[2].nomVal.phiIn_nominal = 0.5; ($RES_SIM_2974) [SCAL] (1) datCoi.sta[2].nomVal.TConIn_nominal = 308.15; ($RES_SIM_2973) [SCAL] (1) datCoi.sta[2].nomVal.TEvaIn_nominal = 298.15; ($RES_SIM_2972) [SCAL] (1) datCoi.sta[2].nomVal.m_flow_nominal = 82.8363154406892; ($RES_SIM_2971) [SCAL] (1) datCoi.sta[2].nomVal.SHR_nominal = 0.8; ($RES_SIM_2970) [SCAL] (1) datCoi.sta[2].nomVal.COP_nominal = 3.0; ($RES_SIM_2969) [SCAL] (1) datCoi.sta[2].nomVal.Q_flow_nominal = 0.5 * QCoiC_flow_nominal; ($RES_SIM_2968) [SCAL] (1) datCoi.sta[2].perCur.ffMax = 1.8; ($RES_SIM_3008) [SCAL] (1) datCoi.sta[2].perCur.ffMin = 0.6; ($RES_SIM_3007) [SCAL] (1) datCoi.sta[2].perCur.TEvaInMax = 297.03889; ($RES_SIM_3006) [SCAL] (1) datCoi.sta[2].perCur.TEvaInMin = 285.92778; ($RES_SIM_3005) [SCAL] (1) datCoi.sta[2].perCur.TConInMax = 319.26111; ($RES_SIM_3004) [SCAL] (1) datCoi.sta[2].perCur.TConInMin = 291.15; ($RES_SIM_3003) [SCAL] (1) datCoi.sta[2].perCur.capFunT[6] = -9.72e-6; ($RES_SIM_2985) [SCAL] (1) datCoi.sta[2].perCur.capFunT[5] = 5.249e-6; ($RES_SIM_2984) [SCAL] (1) datCoi.sta[2].perCur.capFunT[4] = -0.011042676; ($RES_SIM_2983) [SCAL] (1) datCoi.sta[2].perCur.capFunT[3] = 6.8377e-4; ($RES_SIM_2982) [SCAL] (1) datCoi.sta[2].perCur.capFunT[2] = 0.009543347; ($RES_SIM_2981) [SCAL] (1) datCoi.sta[2].perCur.capFunT[1] = 0.942587793; ($RES_SIM_2980) [SCAL] (1) datCoi.sta[2].perCur.capFunFF[4] = 0.0; ($RES_SIM_2990) [SCAL] (1) datCoi.sta[2].perCur.capFunFF[3] = 0.0; ($RES_SIM_2989) [SCAL] (1) datCoi.sta[2].perCur.capFunFF[2] = 0.2; ($RES_SIM_2988) [SCAL] (1) datCoi.sta[2].perCur.capFunFF[1] = 0.8; ($RES_SIM_2987) [SCAL] (1) datCoi.sta[2].perCur.EIRFunT[6] = -7.28028e-4; ($RES_SIM_2997) [SCAL] (1) datCoi.sta[2].perCur.EIRFunT[5] = 4.37951e-4; ($RES_SIM_2996) [SCAL] (1) datCoi.sta[2].perCur.EIRFunT[4] = 0.004977216; ($RES_SIM_2995) [SCAL] (1) datCoi.sta[2].perCur.EIRFunT[3] = -6.237e-4; ($RES_SIM_2994) [SCAL] (1) datCoi.sta[2].perCur.EIRFunT[2] = 0.034885008; ($RES_SIM_2993) [SCAL] (1) datCoi.sta[2].perCur.EIRFunT[1] = 0.342414409; ($RES_SIM_2992) [SCAL] (1) datCoi.sta[2].perCur.EIRFunFF[4] = 0.0; ($RES_SIM_3002) [SCAL] (1) datCoi.sta[2].perCur.EIRFunFF[3] = 0.0256; ($RES_SIM_3001) [SCAL] (1) datCoi.sta[2].perCur.EIRFunFF[2] = -0.1808; ($RES_SIM_3000) [SCAL] (1) datCoi.sta[2].perCur.EIRFunFF[1] = 1.1552; ($RES_SIM_2999) [SCAL] (1) datCoi.sta[3].nomVal.gamma = 1.5; ($RES_SIM_3021) [SCAL] (1) datCoi.sta[3].nomVal.tWet = 1400.0; ($RES_SIM_3020) [SCAL] (1) datCoi.sta[3].nomVal.p_nominal = 101325.0; ($RES_SIM_3019) [SCAL] (1) datCoi.sta[3].nomVal.phiIn_nominal = 0.5; ($RES_SIM_3018) [SCAL] (1) datCoi.sta[3].nomVal.TConIn_nominal = 308.15; ($RES_SIM_3017) [SCAL] (1) datCoi.sta[3].nomVal.TEvaIn_nominal = 298.15; ($RES_SIM_3016) [SCAL] (1) datCoi.sta[3].nomVal.m_flow_nominal = 82.8363154406892; ($RES_SIM_3015) [SCAL] (1) datCoi.sta[3].nomVal.SHR_nominal = 0.8; ($RES_SIM_3014) [SCAL] (1) datCoi.sta[3].nomVal.COP_nominal = 3.0; ($RES_SIM_3013) [SCAL] (1) datCoi.sta[3].nomVal.Q_flow_nominal = 0.75 * QCoiC_flow_nominal; ($RES_SIM_3012) [SCAL] (1) datCoi.sta[3].perCur.ffMax = 1.5; ($RES_SIM_3052) [SCAL] (1) datCoi.sta[3].perCur.ffMin = 0.5; ($RES_SIM_3051) [SCAL] (1) datCoi.sta[3].perCur.TEvaInMax = 297.03889; ($RES_SIM_3050) [SCAL] (1) datCoi.sta[3].perCur.TEvaInMin = 285.92778; ($RES_SIM_3049) [SCAL] (1) datCoi.sta[3].perCur.TConInMax = 319.26111; ($RES_SIM_3048) [SCAL] (1) datCoi.sta[3].perCur.TConInMin = 291.15; ($RES_SIM_3047) [SCAL] (1) datCoi.sta[3].perCur.capFunT[6] = 4.57488e-4; ($RES_SIM_3029) [SCAL] (1) datCoi.sta[3].perCur.capFunT[5] = -2.61144e-4; ($RES_SIM_3028) [SCAL] (1) datCoi.sta[3].perCur.capFunT[4] = 0.00134961; ($RES_SIM_3027) [SCAL] (1) datCoi.sta[3].perCur.capFunT[3] = -4.14703e-5; ($RES_SIM_3026) [SCAL] (1) datCoi.sta[3].perCur.capFunT[2] = 0.0107756; ($RES_SIM_3025) [SCAL] (1) datCoi.sta[3].perCur.capFunT[1] = 0.766956; ($RES_SIM_3024) [SCAL] (1) datCoi.sta[3].perCur.capFunFF[4] = 0.0; ($RES_SIM_3034) [SCAL] (1) datCoi.sta[3].perCur.capFunFF[3] = 0.0; ($RES_SIM_3033) [SCAL] (1) datCoi.sta[3].perCur.capFunFF[2] = 0.2; ($RES_SIM_3032) [SCAL] (1) datCoi.sta[3].perCur.capFunFF[1] = 0.8; ($RES_SIM_3031) [SCAL] (1) datCoi.sta[3].perCur.EIRFunT[6] = -9.56448e-4; ($RES_SIM_3041) [SCAL] (1) datCoi.sta[3].perCur.EIRFunT[5] = 4.82112e-4; ($RES_SIM_3040) [SCAL] (1) datCoi.sta[3].perCur.EIRFunT[4] = 0.00597727; ($RES_SIM_3039) [SCAL] (1) datCoi.sta[3].perCur.EIRFunT[3] = -7.48766e-4; ($RES_SIM_3038) [SCAL] (1) datCoi.sta[3].perCur.EIRFunT[2] = 0.0430933; ($RES_SIM_3037) [SCAL] (1) datCoi.sta[3].perCur.EIRFunT[1] = 0.297145; ($RES_SIM_3036) [SCAL] (1) datCoi.sta[3].perCur.EIRFunFF[4] = 0.0; ($RES_SIM_3046) [SCAL] (1) datCoi.sta[3].perCur.EIRFunFF[3] = 0.0256; ($RES_SIM_3045) [SCAL] (1) datCoi.sta[3].perCur.EIRFunFF[2] = -0.1808; ($RES_SIM_3044) [SCAL] (1) datCoi.sta[3].perCur.EIRFunFF[1] = 1.1552; ($RES_SIM_3043) [SCAL] (1) datCoi.sta[4].nomVal.gamma = 1.5; ($RES_SIM_3065) [SCAL] (1) datCoi.sta[4].nomVal.tWet = 1400.0; ($RES_SIM_3064) [SCAL] (1) datCoi.sta[4].nomVal.p_nominal = 101325.0; ($RES_SIM_3063) [SCAL] (1) datCoi.sta[4].nomVal.phiIn_nominal = 0.5; ($RES_SIM_3062) [SCAL] (1) datCoi.sta[4].nomVal.TConIn_nominal = 308.15; ($RES_SIM_3061) [SCAL] (1) datCoi.sta[4].nomVal.TEvaIn_nominal = 298.15; ($RES_SIM_3060) [SCAL] (1) datCoi.sta[4].nomVal.m_flow_nominal = 82.8363154406892; ($RES_SIM_3059) [SCAL] (1) datCoi.sta[4].nomVal.SHR_nominal = 0.8; ($RES_SIM_3058) [SCAL] (1) datCoi.sta[4].nomVal.COP_nominal = 3.0; ($RES_SIM_3057) [SCAL] (1) datCoi.sta[4].nomVal.Q_flow_nominal = QCoiC_flow_nominal; ($RES_SIM_3056) [SCAL] (1) datCoi.sta[4].perCur.ffMax = 1.5; ($RES_SIM_3096) [SCAL] (1) datCoi.sta[4].perCur.ffMin = 0.5; ($RES_SIM_3095) [SCAL] (1) datCoi.sta[4].perCur.TEvaInMax = 297.03889; ($RES_SIM_3094) [SCAL] (1) datCoi.sta[4].perCur.TEvaInMin = 285.92778; ($RES_SIM_3093) [SCAL] (1) datCoi.sta[4].perCur.TConInMax = 319.26111; ($RES_SIM_3092) [SCAL] (1) datCoi.sta[4].perCur.TConInMin = 297.03889; ($RES_SIM_3091) [SCAL] (1) datCoi.sta[4].perCur.capFunT[6] = -4.46278e-4; ($RES_SIM_3073) [SCAL] (1) datCoi.sta[4].perCur.capFunT[5] = -7.3224e-6; ($RES_SIM_3072) [SCAL] (1) datCoi.sta[4].perCur.capFunT[4] = -8.27136e-4; ($RES_SIM_3071) [SCAL] (1) datCoi.sta[4].perCur.capFunT[3] = 2.26411e-4; ($RES_SIM_3070) [SCAL] (1) datCoi.sta[4].perCur.capFunT[2] = 0.0401147; ($RES_SIM_3069) [SCAL] (1) datCoi.sta[4].perCur.capFunT[1] = 0.476428; ($RES_SIM_3068) [SCAL] (1) datCoi.sta[4].perCur.capFunFF[4] = 0.32257813; ($RES_SIM_3078) [SCAL] (1) datCoi.sta[4].perCur.capFunFF[3] = -1.0387055; ($RES_SIM_3077) [SCAL] (1) datCoi.sta[4].perCur.capFunFF[2] = 1.2433415; ($RES_SIM_3076) [SCAL] (1) datCoi.sta[4].perCur.capFunFF[1] = 0.47278589; ($RES_SIM_3075) [SCAL] (1) datCoi.sta[4].perCur.EIRFunT[6] = -6.79201e-4; ($RES_SIM_3085) [SCAL] (1) datCoi.sta[4].perCur.EIRFunT[5] = 2.7284e-4; ($RES_SIM_3084) [SCAL] (1) datCoi.sta[4].perCur.EIRFunT[4] = 0.0155377; ($RES_SIM_3083) [SCAL] (1) datCoi.sta[4].perCur.EIRFunT[3] = 5.07773e-4; ($RES_SIM_3082) [SCAL] (1) datCoi.sta[4].perCur.EIRFunT[2] = -0.0121321; ($RES_SIM_3081) [SCAL] (1) datCoi.sta[4].perCur.EIRFunT[1] = 0.632475; ($RES_SIM_3080) [SCAL] (1) datCoi.sta[4].perCur.EIRFunFF[4] = 0.33889943; ($RES_SIM_3090) [SCAL] (1) datCoi.sta[4].perCur.EIRFunFF[3] = -0.6922891; ($RES_SIM_3089) [SCAL] (1) datCoi.sta[4].perCur.EIRFunFF[2] = 0.34544129; ($RES_SIM_3088) [SCAL] (1) datCoi.sta[4].perCur.EIRFunFF[1] = 1.0079484; ($RES_SIM_3087) Error: Internal error NBResolveSingularities.balanceInitialization failed because following non-fixable variables could not be solved: [RECD] (104) parameter Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.PerformanceCurve[4] varSpeDX.dxCoi.wetCoi.coiCap.sta.perCur = {varSpeDX.dxCoi.wetCoi.datCoi.sta[1].perCur, varSpeDX.dxCoi.wetCoi.datCoi.sta[2].perCur, varSpeDX.dxCoi.wetCoi.datCoi.sta[3].perCur, varSpeDX.dxCoi.wetCoi.datCoi.sta[4].perCur} (capFunT, capFunFF, EIRFunT, EIRFunFF, TConInMin(start = {288.15 for $f31 in 1:4}, min = {0.0 for $f32 in 1:4}, nominal = {300.0 for $f30 in 1:4}), TConInMax(start = {288.15 for $f37 in 1:4}, min = {0.0 for $f38 in 1:4}, nominal = {300.0 for $f36 in 1:4}), TEvaInMin(start = {288.15 for $f43 in 1:4}, min = {0.0 for $f44 in 1:4}, nominal = {300.0 for $f42 in 1:4}), TEvaInMax(start = {288.15 for $f49 in 1:4}, min = {0.0 for $f50 in 1:4}, nominal = {300.0 for $f48 in 1:4}), ffMin, ffMax) [RECD] (40) parameter Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.NominalValues[4] varSpeDX.dxCoi.wetCoi.coiCap.sta.nomVal = {varSpeDX.dxCoi.wetCoi.datCoi.sta[1].nomVal, varSpeDX.dxCoi.wetCoi.datCoi.sta[2].nomVal, varSpeDX.dxCoi.wetCoi.datCoi.sta[3].nomVal, varSpeDX.dxCoi.wetCoi.datCoi.sta[4].nomVal} (Q_flow_nominal(max = {0.0 for $f4 in 1:4}), COP_nominal, SHR_nominal, m_flow_nominal, TEvaIn_nominal(start = {288.15 for $f12 in 1:4}, min = {0.0 for $f13 in 1:4}, nominal = {300.0 for $f11 in 1:4}), TConIn_nominal(start = {288.15 for $f18 in 1:4}, min = {0.0 for $f19 in 1:4}, nominal = {300.0 for $f17 in 1:4}), phiIn_nominal, p_nominal, tWet, gamma(min = {0.0 for $f29 in 1:4})) [PRMT] (4) parameter Real[4] varSpeDX.dxCoi.wetCoi.coiCap.sta.spe = {varSpeDX.dxCoi.wetCoi.datCoi.sta[1].spe, varSpeDX.dxCoi.wetCoi.datCoi.sta[2].spe, varSpeDX.dxCoi.wetCoi.datCoi.sta[3].spe, varSpeDX.dxCoi.wetCoi.datCoi.sta[4].spe} (fixed = {true for $i241 in 1:4}) [RECD] (104) parameter Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.PerformanceCurve[4] varSpeDX.dxCoi.dryCoi.coiCap.sta.perCur = {varSpeDX.dxCoi.dryCoi.datCoi.sta[1].perCur, varSpeDX.dxCoi.dryCoi.datCoi.sta[2].perCur, varSpeDX.dxCoi.dryCoi.datCoi.sta[3].perCur, varSpeDX.dxCoi.dryCoi.datCoi.sta[4].perCur} (capFunT, capFunFF, EIRFunT, EIRFunFF, TConInMin(start = {288.15 for $f31 in 1:4}, min = {0.0 for $f32 in 1:4}, nominal = {300.0 for $f30 in 1:4}), TConInMax(start = {288.15 for $f37 in 1:4}, min = {0.0 for $f38 in 1:4}, nominal = {300.0 for $f36 in 1:4}), TEvaInMin(start = {288.15 for $f43 in 1:4}, min = {0.0 for $f44 in 1:4}, nominal = {300.0 for $f42 in 1:4}), TEvaInMax(start = {288.15 for $f49 in 1:4}, min = {0.0 for $f50 in 1:4}, nominal = {300.0 for $f48 in 1:4}), ffMin, ffMax) [RECD] (40) parameter Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.NominalValues[4] varSpeDX.dxCoi.dryCoi.coiCap.sta.nomVal = {varSpeDX.dxCoi.dryCoi.datCoi.sta[1].nomVal, varSpeDX.dxCoi.dryCoi.datCoi.sta[2].nomVal, varSpeDX.dxCoi.dryCoi.datCoi.sta[3].nomVal, varSpeDX.dxCoi.dryCoi.datCoi.sta[4].nomVal} (Q_flow_nominal(max = {0.0 for $f4 in 1:4}), COP_nominal, SHR_nominal, m_flow_nominal, TEvaIn_nominal(start = {288.15 for $f12 in 1:4}, min = {0.0 for $f13 in 1:4}, nominal = {300.0 for $f11 in 1:4}), TConIn_nominal(start = {288.15 for $f18 in 1:4}, min = {0.0 for $f19 in 1:4}, nominal = {300.0 for $f17 in 1:4}), phiIn_nominal, p_nominal, tWet, gamma(min = {0.0 for $f29 in 1:4})) [PRMT] (4) parameter Real[4] varSpeDX.dxCoi.dryCoi.coiCap.sta.spe = {varSpeDX.dxCoi.dryCoi.datCoi.sta[1].spe, varSpeDX.dxCoi.dryCoi.datCoi.sta[2].spe, varSpeDX.dxCoi.dryCoi.datCoi.sta[3].spe, varSpeDX.dxCoi.dryCoi.datCoi.sta[4].spe} (fixed = {true for $i138 in 1:4}) [RECD] (104) parameter Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.PerformanceCurve[4] datCoi.sta.perCur = {Buildings.Fluid.DXSystems.Cooling.AirSource.Examples.PerformanceCurves.Curve_I({0.942587793, 0.009543347, 6.8377e-4, -0.011042676, 5.249e-6, -9.72e-6}, {0.8, 0.2, 0.0, 0.0}, {0.342414409, 0.034885008, -6.237e-4, 0.004977216, 4.37951e-4, -7.28028e-4}, {1.1552, -0.1808, 0.0256, 0.0}, 291.15, 319.26111, 285.92778, 297.03889, 0.6, 1.8), Buildings.Fluid.DXSystems.Cooling.AirSource.Examples.PerformanceCurves.Curve_I({0.942587793, 0.009543347, 6.8377e-4, -0.011042676, 5.249e-6, -9.72e-6}, {0.8, 0.2, 0.0, 0.0}, {0.342414409, 0.034885008, -6.237e-4, 0.004977216, 4.37951e-4, -7.28028e-4}, {1.1552, -0.1808, 0.0256, 0.0}, 291.15, 319.26111, 285.92778, 297.03889, 0.6, 1.8), Buildings.Fluid.DXSystems.Cooling.AirSource.Examples.PerformanceCurves.Curve_II({0.766956, 0.0107756, -4.14703e-5, 0.00134961, -2.61144e-4, 4.57488e-4}, {0.8, 0.2, 0.0, 0.0}, {0.297145, 0.0430933, -7.48766e-4, 0.00597727, 4.82112e-4, -9.56448e-4}, {1.1552, -0.1808, 0.0256, 0.0}, 291.15, 319.26111, 285.92778, 297.03889, 0.5, 1.5), Buildings.Fluid.DXSystems.Cooling.AirSource.Examples.PerformanceCurves.Curve_III({0.476428, 0.0401147, 2.26411e-4, -8.27136e-4, -7.3224e-6, -4.46278e-4}, {0.47278589, 1.2433415, -1.0387055, 0.32257813}, {0.632475, -0.0121321, 5.07773e-4, 0.0155377, 2.7284e-4, -6.79201e-4}, {1.0079484, 0.34544129, -0.6922891, 0.33889943}, 297.03889, 319.26111, 285.92778, 297.03889, 0.5, 1.5)} (capFunT, capFunFF, EIRFunT, EIRFunFF, TConInMin(start = {288.15 for $f31 in 1:4}, min = {0.0 for $f32 in 1:4}, nominal = {300.0 for $f30 in 1:4}), TConInMax(start = {288.15 for $f37 in 1:4}, min = {0.0 for $f38 in 1:4}, nominal = {300.0 for $f36 in 1:4}), TEvaInMin(start = {288.15 for $f43 in 1:4}, min = {0.0 for $f44 in 1:4}, nominal = {300.0 for $f42 in 1:4}), TEvaInMax(start = {288.15 for $f49 in 1:4}, min = {0.0 for $f50 in 1:4}, nominal = {300.0 for $f48 in 1:4}), ffMin, ffMax) [RECD] (40) parameter Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.NominalValues[4] datCoi.sta.nomVal = {Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.NominalValues(QCoiC_flow_nominal * 0.375, 3.0, 0.8, 82.8363154406892, 298.15, 308.15, 0.5, 101325.0, 1400.0, 1.5), Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.NominalValues(QCoiC_flow_nominal * 0.5, 3.0, 0.8, 82.8363154406892, 298.15, 308.15, 0.5, 101325.0, 1400.0, 1.5), Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.NominalValues(QCoiC_flow_nominal * 0.75, 3.0, 0.8, 82.8363154406892, 298.15, 308.15, 0.5, 101325.0, 1400.0, 1.5), Buildings.Fluid.DXSystems.Cooling.AirSource.Data.Generic.BaseClasses.NominalValues(QCoiC_flow_nominal, 3.0, 0.8, 82.8363154406892, 298.15, 308.15, 0.5, 101325.0, 1400.0, 1.5)} (Q_flow_nominal(max = {0.0 for $f4 in 1:4}), COP_nominal, SHR_nominal, m_flow_nominal, TEvaIn_nominal(start = {288.15 for $f12 in 1:4}, min = {0.0 for $f13 in 1:4}, nominal = {300.0 for $f11 in 1:4}), TConIn_nominal(start = {288.15 for $f18 in 1:4}, min = {0.0 for $f19 in 1:4}, nominal = {300.0 for $f17 in 1:4}), phiIn_nominal, p_nominal, tWet, gamma(min = {0.0 for $f29 in 1:4})) Following equations were created by fixing variables: [SCAL] (1) $PRE.varSpeDX.watVapEva.off = $START.varSpeDX.watVapEva.off; ($RES_SRT_3133) [SCAL] (1) $PRE.cooModCon.fulMecCoo.oldActive = $START.cooModCon.fulMecCoo.oldActive; ($RES_SRT_3132) [SCAL] (1) $PRE.cooModCon.freCoo.oldActive = $START.cooModCon.freCoo.oldActive; ($RES_SRT_3131) [SCAL] (1) $PRE.cooModCon.parMecCoo.oldActive = $START.cooModCon.parMecCoo.oldActive; ($RES_SRT_3130) Use -d=bltdump for more verbose debug output. Error: Internal error NBInitialization.main failed to apply modules! " [Timeout remaining time 297] [Calling sys.exit(0), Time elapsed: 8.931120609864593]