Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Buildings_13_Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.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 0.001839/0.001839, 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 0.002281/0.002281, allocations: 163.5 kB / 24.97 MB, free: 9.125 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 1.722/1.722, allocations: 177.1 MB / 205.4 MB, free: 5.469 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 3.179/3.179, allocations: 389.5 MB / 0.6361 GB, free: 12.28 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.ThermalZones.Detailed.Validation.RoomCapacityMultiplier,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier") translateModel(Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier") [Timeout 300] OMC exited with status 139 while running: translateModel(Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier") Created ZeroMQ Server. Dumped server port in file: /tmp/openmodelica.hudson.port.006890dbac674c839fc8c2dcb4ce4fdf[stateselection] (0) Forced states by StateSelect.ALWAYS: *********************************************************** [stateselection] (6) Natural states before index reduction: ************************************************************* [STAT] (1) Real roo1.air.vol.U (start = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.roo1.air.vol.dynBal.Medium.specificInternalEnergy(Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo1.air.vol.dynBal.p_start, roo1.air.vol.dynBal.T_start, roo1.air.vol.dynBal.X_start[1:1])) * roo1.air.vol.dynBal.fluidVolume * roo1.air.vol.dynBal.rho_start + roo1.air.vol.dynBal.CSen * ((-273.15) + roo1.air.vol.dynBal.T_start)) [STAT] (1) protected Real roo1.air.vol.dynBal.m (start = roo1.air.vol.V * roo1.air.vol.rho_start, min = 0.0, StateSelect = prefer) [STAT] (1) Real[1] roo1.air.vol.Xi = roo1.air.vol.Xi (start = roo1.air.vol.dynBal.X_start[1:1], min = {max(0.0, ({0.0})[$i3382]) for $i3382 in 1:1}, max = {min(1.0, ({1.0})[$i3383]) for $i3383 in 1:1}) [STAT] (1) Real roo2.air.vol.U (start = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.roo1.air.vol.dynBal.Medium.specificInternalEnergy(Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo2.air.vol.dynBal.p_start, roo2.air.vol.dynBal.T_start, roo2.air.vol.dynBal.X_start[1:1])) * roo2.air.vol.dynBal.fluidVolume * roo2.air.vol.dynBal.rho_start + roo2.air.vol.dynBal.CSen * ((-273.15) + roo2.air.vol.dynBal.T_start)) [STAT] (1) protected Real roo2.air.vol.dynBal.m (start = roo2.air.vol.V * roo2.air.vol.rho_start, min = 0.0, StateSelect = prefer) [STAT] (1) Real[1] roo2.air.vol.Xi = roo2.air.vol.Xi (start = roo2.air.vol.dynBal.X_start[1:1], min = {max(0.0, ({0.0})[$i3378]) for $i3378 in 1:1}, max = {min(1.0, ({1.0})[$i3379]) for $i3379 in 1:1}) [stateselection] Natural discrete states from discrete equations: ******************************************************************* [DISS] (1) protected discrete Real weaDat.decAng.tNext [DISS] (1) protected Integer weaDat.decAng.k [DISS] (1) protected discrete Real weaDat.eqnTim.tNext [DISS] (1) protected Integer weaDat.eqnTim.k [DISS] (1) protected discrete Real weaDat.conTim.tNext [DISS] (1) protected Integer weaDat.conTim.k [DISS] (1) protected discrete Real weaDat.conTimMin.tNext [DISS] (1) protected Integer weaDat.conTimMin.k [DISS] (1) protected discrete Real weaDat.locTim.tNext [DISS] (1) protected Integer weaDat.locTim.k [discreteinfo] pre() and previous() variables from discrete equations: ************************************************************************ [PRE-] (1) discrete Real $PRE.weaDat.decAng.tNext [PRE-] (1) Integer $PRE.weaDat.decAng.k [PRE-] (1) discrete Real $PRE.weaDat.eqnTim.tNext [PRE-] (1) Integer $PRE.weaDat.eqnTim.k [PRE-] (1) discrete Real $PRE.weaDat.conTim.tNext [PRE-] (1) Integer $PRE.weaDat.conTim.k [PRE-] (1) discrete Real $PRE.weaDat.conTimMin.tNext [PRE-] (1) Integer $PRE.weaDat.conTimMin.k [PRE-] (1) discrete Real $PRE.weaDat.locTim.tNext [PRE-] (1) Integer $PRE.weaDat.locTim.k [stateselection] State Order: ******************************* (roo2.air.vol.U --d/dt--> roo2.air.vol.heatPort.Q_flow) (roo1.air.vol.U --d/dt--> roo1.air.vol.heatPort.Q_flow) Created When Replacement Equations (10): ****************************************** [SCAL] (1) weaDat.locTim.k = $PRE.weaDat.locTim.k; ($RES_SRT_1125) [SCAL] (1) weaDat.locTim.tNext = $PRE.weaDat.locTim.tNext; ($RES_SRT_1124) [SCAL] (1) weaDat.conTimMin.k = $PRE.weaDat.conTimMin.k; ($RES_SRT_1123) [SCAL] (1) weaDat.conTimMin.tNext = $PRE.weaDat.conTimMin.tNext; ($RES_SRT_1122) [SCAL] (1) weaDat.conTim.k = $PRE.weaDat.conTim.k; ($RES_SRT_1121) [SCAL] (1) weaDat.conTim.tNext = $PRE.weaDat.conTim.tNext; ($RES_SRT_1120) [SCAL] (1) weaDat.eqnTim.k = $PRE.weaDat.eqnTim.k; ($RES_SRT_1119) [SCAL] (1) weaDat.eqnTim.tNext = $PRE.weaDat.eqnTim.tNext; ($RES_SRT_1118) [SCAL] (1) weaDat.decAng.k = $PRE.weaDat.decAng.k; ($RES_SRT_1117) [SCAL] (1) weaDat.decAng.tNext = $PRE.weaDat.decAng.tNext; ($RES_SRT_1116) Created State Start Equations (6): ************************************ [ARRY] (1) $START.roo2.air.vol.Xi = roo2.air.vol.dynBal.X_start[1:1]; ($RES_SRT_1131) [SCAL] (1) $START.roo2.air.vol.dynBal.m = roo2.air.vol.V * roo2.air.vol.rho_start; ($RES_SRT_1130) [SCAL] (1) $START.roo2.air.vol.U = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.roo1.air.vol.dynBal.Medium.specificInternalEnergy(Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo2.air.vol.dynBal.p_start, roo2.air.vol.dynBal.T_start, roo2.air.vol.dynBal.X_start[1:1])) * roo2.air.vol.dynBal.fluidVolume * roo2.air.vol.dynBal.rho_start + roo2.air.vol.dynBal.CSen * ((-273.15) + roo2.air.vol.dynBal.T_start); ($RES_SRT_1129) [ARRY] (1) $START.roo1.air.vol.Xi = roo1.air.vol.dynBal.X_start[1:1]; ($RES_SRT_1128) [SCAL] (1) $START.roo1.air.vol.dynBal.m = roo1.air.vol.V * roo1.air.vol.rho_start; ($RES_SRT_1127) [SCAL] (1) $START.roo1.air.vol.U = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.roo1.air.vol.dynBal.Medium.specificInternalEnergy(Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo1.air.vol.dynBal.p_start, roo1.air.vol.dynBal.T_start, roo1.air.vol.dynBal.X_start[1:1])) * roo1.air.vol.dynBal.fluidVolume * roo1.air.vol.dynBal.rho_start + roo1.air.vol.dynBal.CSen * ((-273.15) + roo1.air.vol.dynBal.T_start); ($RES_SRT_1126) Created Algebraic Start Equations (22): ***************************************** [ARRY] (2) $START.$FUN_51 = {roo1.air.vol.dynBal.X_start[1], 0.0}; ($RES_SRT_1153) [ARRY] (2) $START.$FUN_45 = {roo2.air.vol.dynBal.X_start[1], 0.0}; ($RES_SRT_1152) [SCAL] (1) $START.$FUN_36 = Modelica.Math.sin(weaDat.zenAng.lat); ($RES_SRT_1151) [SCAL] (1) $START.$FUN_34 = Modelica.Math.cos(weaDat.zenAng.lat); ($RES_SRT_1150) [ARRY] (1) $START.roo2.irRadExc.G = 5.6703744191844314e-8 .* roo2.irRadExc.A .* 0.8 .* 7.385154648771004e9; ($RES_SRT_1149) [ARRY] (1) $START.roo2.irRadExc.J = -7.385154648771004e9 .* 0.8 .* roo2.irRadExc.A .* 5.6703744191844314e-8; ($RES_SRT_1148) [ARRY] (1) $START.roo2.irRadExc.JInConExtWin_internal = 5.6703744191844314e-8 .* roo2.irRadExc.AConExtWinGla .* 0.8 .* 7.385154648771004e9; ($RES_SRT_1147) [SCAL] (1) $START.roo2.air.vol.hOut_internal = roo2.air.vol.dynBal.hStart; ($RES_SRT_1146) [SCAL] (1) $START.roo2.air.vol.dynBal.medium.dT = (-273.15) + roo2.air.vol.dynBal.T_start; ($RES_SRT_1145) [ARRY] (2) $START.roo2.air.vol.dynBal.medium.X = roo2.air.vol.dynBal.X_start; ($RES_SRT_1144) [SCAL] (1) $START.roo2.air.vol.dynBal.medium.d = 1.2 * (9.869232667160129e-6 * roo2.air.vol.dynBal.p_start); ($RES_SRT_1143) [ARRY] (1) $START.roo2.air.vol.mXi = roo2.air.vol.dynBal.rho_start * roo2.air.vol.dynBal.fluidVolume * roo2.air.vol.dynBal.X_start[1:1]; ($RES_SRT_1142) [SCAL] (1) $START.roo2.heaPorAir.T = roo2.air.vol.T_start; ($RES_SRT_1141) [ARRY] (1) $START.roo1.irRadExc.G = 5.6703744191844314e-8 .* roo1.irRadExc.A .* 0.8 .* 7.385154648771004e9; ($RES_SRT_1140) [ARRY] (1) $START.roo1.irRadExc.J = -7.385154648771004e9 .* 0.8 .* roo1.irRadExc.A .* 5.6703744191844314e-8; ($RES_SRT_1139) [ARRY] (1) $START.roo1.irRadExc.JInConExtWin_internal = 5.6703744191844314e-8 .* roo1.irRadExc.AConExtWinGla .* 0.8 .* 7.385154648771004e9; ($RES_SRT_1138) [SCAL] (1) $START.roo1.air.vol.hOut_internal = roo1.air.vol.dynBal.hStart; ($RES_SRT_1137) [SCAL] (1) $START.roo1.air.vol.dynBal.medium.dT = (-273.15) + roo1.air.vol.dynBal.T_start; ($RES_SRT_1136) [ARRY] (2) $START.roo1.air.vol.dynBal.medium.X = roo1.air.vol.dynBal.X_start; ($RES_SRT_1135) [SCAL] (1) $START.roo1.air.vol.dynBal.medium.d = 1.2 * (9.869232667160129e-6 * roo1.air.vol.dynBal.p_start); ($RES_SRT_1134) [ARRY] (1) $START.roo1.air.vol.mXi = roo1.air.vol.dynBal.rho_start * roo1.air.vol.dynBal.fluidVolume * roo1.air.vol.dynBal.X_start[1:1]; ($RES_SRT_1133) [SCAL] (1) $START.roo1.heaPorAir.T = roo1.air.vol.T_start; ($RES_SRT_1132) Created Secondary Parameter Binding Equations (207): ****************************************************** [ARRY] (7) roo2.radTem.surBou = roo2.surBou; ($RES_BND_1492) [ARRY] (36) roo2.radTem.datConBou = roo2.datConBou; ($RES_BND_1491) [ARRY] (36) roo2.radTem.datConPar = roo2.datConPar; ($RES_BND_1490) [ARRY] (85) roo2.radTem.datConExtWin = roo2.datConExtWin; ($RES_BND_1489) [ARRY] (36) roo2.radTem.datConExt = roo2.datConExt; ($RES_BND_1488) [ARRY] (7) roo2.irRadExc.surBou = roo2.surBou; ($RES_BND_1487) [ARRY] (36) roo2.irRadExc.datConBou = roo2.datConBou; ($RES_BND_1486) [ARRY] (36) roo2.irRadExc.datConPar = roo2.datConPar; ($RES_BND_1485) [ARRY] (85) roo2.irRadExc.datConExtWin = roo2.datConExtWin; ($RES_BND_1484) [ARRY] (36) roo2.irRadExc.datConExt = roo2.datConExt; ($RES_BND_1483) [ARRY] (7) roo2.irRadGai.surBou = roo2.surBou; ($RES_BND_1482) [ARRY] (36) roo2.irRadGai.datConBou = roo2.datConBou; ($RES_BND_1481) [ARRY] (36) roo2.irRadGai.datConPar = roo2.datConPar; ($RES_BND_1480) [ARRY] (85) roo2.irRadGai.datConExtWin = roo2.datConExtWin; ($RES_BND_1479) [ARRY] (36) roo2.irRadGai.datConExt = roo2.datConExt; ($RES_BND_1478) [ARRY] (7) roo2.air.surBou = roo2.surBou; ($RES_BND_1476) [ARRY] (36) roo2.air.datConBou = roo2.datConBou; ($RES_BND_1475) [ARRY] (36) roo2.air.datConPar = roo2.datConPar; ($RES_BND_1474) [ARRY] (85) roo2.air.datConExtWin = roo2.datConExtWin; ($RES_BND_1473) [ARRY] (36) roo2.air.datConExt = roo2.datConExt; ($RES_BND_1472) [ARRY] (7) roo1.radTem.surBou = roo1.surBou; ($RES_BND_1471) [ARRY] (36) roo1.radTem.datConBou = roo1.datConBou; ($RES_BND_1470) [ARRY] (36) roo1.radTem.datConPar = roo1.datConPar; ($RES_BND_1469) [ARRY] (85) roo1.radTem.datConExtWin = roo1.datConExtWin; ($RES_BND_1468) [ARRY] (36) roo1.radTem.datConExt = roo1.datConExt; ($RES_BND_1467) [ARRY] (7) roo1.irRadExc.surBou = roo1.surBou; ($RES_BND_1466) [ARRY] (36) roo1.irRadExc.datConBou = roo1.datConBou; ($RES_BND_1465) [ARRY] (36) roo1.irRadExc.datConPar = roo1.datConPar; ($RES_BND_1464) [ARRY] (85) roo1.irRadExc.datConExtWin = roo1.datConExtWin; ($RES_BND_1463) [ARRY] (36) roo1.irRadExc.datConExt = roo1.datConExt; ($RES_BND_1462) [ARRY] (7) roo1.irRadGai.surBou = roo1.surBou; ($RES_BND_1461) [ARRY] (36) roo1.irRadGai.datConBou = roo1.datConBou; ($RES_BND_1460) [ARRY] (36) roo1.irRadGai.datConPar = roo1.datConPar; ($RES_BND_1459) [ARRY] (85) roo1.irRadGai.datConExtWin = roo1.datConExtWin; ($RES_BND_1458) [ARRY] (36) roo1.irRadGai.datConExt = roo1.datConExt; ($RES_BND_1457) [ARRY] (7) roo1.air.surBou = roo1.surBou; ($RES_BND_1455) [ARRY] (36) roo1.air.datConBou = roo1.datConBou; ($RES_BND_1454) [ARRY] (36) roo1.air.datConPar = roo1.datConPar; ($RES_BND_1453) [ARRY] (85) roo1.air.datConExtWin = roo1.datConExtWin; ($RES_BND_1452) [ARRY] (36) roo1.air.datConExt = roo1.datConExt; ($RES_BND_1451) [SCAL] (1) qConGai_flow.y = qConGai_flow.k; ($RES_BND_1431) [SCAL] (1) qRadGai_flow.y = qRadGai_flow.k; ($RES_BND_1430) [SCAL] (1) qLatGai_flow.y = qLatGai_flow.k; ($RES_BND_1429) [ARRY] (1) roo2.radTem.tauSha = {if roo2.radTem.datConExtWin[1].glaSys.haveInteriorShade then roo2.radTem.datConExtWin[1].glaSys.shade.tauIR_a else 1.0}; ($RES_BND_1385) [ARRY] (1) roo2.radTem.epsSha = {roo2.radTem.datConExtWin[1].glaSys.shade.absIR_a}; ($RES_BND_1384) [ARRY] (1) roo2.radTem.epsGla = {roo2.radTem.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1383) [ARRY] (1) roo2.radTem.AGla = roo2.radTem.datConExtWin.AGla; ($RES_BND_1382) [ARRY] (1) roo2.radTem.epsSurBou = roo2.radTem.surBou.absIR; ($RES_BND_1381) [ARRY] (1) roo2.radTem.epsConBou = roo2.radTem.datConBou.layers.absIR_b; ($RES_BND_1380) [ARRY] (1) roo2.radTem.epsConPar_b = roo2.radTem.datConPar.layers.absIR_b; ($RES_BND_1379) [ARRY] (1) roo2.radTem.epsConPar_a = roo2.radTem.datConPar.layers.absIR_a; ($RES_BND_1378) [ARRY] (1) roo2.radTem.epsConExtWinFra = roo2.radTem.datConExtWin.glaSys.absIRFra; ($RES_BND_1377) [ARRY] (1) roo2.radTem.epsConExtWinSha = roo2.radTem.datConExtWin.glaSys.shade.absIR_a; ($RES_BND_1376) [ARRY] (1) roo2.radTem.epsConExtWinUns = {roo2.radTem.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1375) [ARRY] (1) roo2.radTem.epsConExtWinOpa = roo2.radTem.datConExtWin.layers.absIR_b; ($RES_BND_1374) [ARRY] (1) roo2.radTem.epsConExt = roo2.radTem.datConExt.layers.absIR_b; ($RES_BND_1373) [ARRY] (1) roo2.radTem.ASurBou = roo2.radTem.surBou.A; ($RES_BND_1372) [ARRY] (1) roo2.radTem.AConBou = roo2.radTem.datConBou.A; ($RES_BND_1371) [ARRY] (1) roo2.radTem.AConPar = roo2.radTem.datConPar.A; ($RES_BND_1370) [ARRY] (1) roo2.radTem.AConExtWinFra = roo2.radTem.datConExtWin.fFra .* roo2.radTem.datConExtWin.AWin; ($RES_BND_1369) [ARRY] (1) roo2.radTem.AConExtWinGla = (1.0 .- roo2.radTem.datConExtWin.fFra) .* roo2.radTem.datConExtWin.AWin; ($RES_BND_1368) [ARRY] (1) roo2.radTem.AConExtWinOpa = roo2.radTem.datConExtWin.AOpa; ($RES_BND_1367) [ARRY] (1) roo2.radTem.AConExt = roo2.radTem.datConExt.A; ($RES_BND_1366) [ARRY] (1) roo2.irRadExc.epsSurBou = roo2.irRadExc.surBou.absIR; ($RES_BND_1363) [ARRY] (1) roo2.irRadExc.epsConBou = roo2.irRadExc.datConBou.layers.absIR_b; ($RES_BND_1362) [ARRY] (1) roo2.irRadExc.epsConPar_b = roo2.irRadExc.datConPar.layers.absIR_b; ($RES_BND_1361) [ARRY] (1) roo2.irRadExc.epsConPar_a = roo2.irRadExc.datConPar.layers.absIR_a; ($RES_BND_1360) [ARRY] (1) roo2.irRadExc.epsConExtWinFra = roo2.irRadExc.datConExtWin.glaSys.absIRFra; ($RES_BND_1359) [ARRY] (1) roo2.irRadExc.epsConExtWinSha = roo2.irRadExc.datConExtWin.glaSys.shade.absIR_a; ($RES_BND_1358) [ARRY] (1) roo2.irRadExc.epsConExtWinUns = {roo2.irRadExc.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1357) [ARRY] (1) roo2.irRadExc.epsConExtWinOpa = roo2.irRadExc.datConExtWin.layers.absIR_b; ($RES_BND_1356) [ARRY] (1) roo2.irRadExc.epsConExt = roo2.irRadExc.datConExt.layers.absIR_b; ($RES_BND_1355) [ARRY] (1) roo2.irRadExc.ASurBou = roo2.irRadExc.surBou.A; ($RES_BND_1354) [ARRY] (1) roo2.irRadExc.AConBou = roo2.irRadExc.datConBou.A; ($RES_BND_1353) [ARRY] (1) roo2.irRadExc.AConPar = roo2.irRadExc.datConPar.A; ($RES_BND_1352) [ARRY] (1) roo2.irRadExc.AConExtWinFra = roo2.irRadExc.datConExtWin.fFra .* roo2.irRadExc.datConExtWin.AWin; ($RES_BND_1351) [ARRY] (1) roo2.irRadExc.AConExtWinGla = (1.0 .- roo2.irRadExc.datConExtWin.fFra) .* roo2.irRadExc.datConExtWin.AWin; ($RES_BND_1350) [ARRY] (1) roo2.irRadExc.AConExtWinOpa = roo2.irRadExc.datConExtWin.AOpa; ($RES_BND_1349) [ARRY] (1) roo2.irRadExc.AConExt = roo2.irRadExc.datConExt.A; ($RES_BND_1348) [ARRY] (1) roo2.irRadGai.AEpsSurBou = {roo2.irRadGai.epsSurBou[1] * roo2.irRadGai.ASurBou[1]}; ($RES_BND_1345) [ARRY] (1) roo2.irRadGai.AEpsConBou = {roo2.irRadGai.epsConBou[1] * roo2.irRadGai.AConBou[1]}; ($RES_BND_1344) [ARRY] (1) roo2.irRadGai.AEpsConPar_b = {roo2.irRadGai.epsConPar_b[1] * roo2.irRadGai.AConPar[1]}; ($RES_BND_1343) [ARRY] (1) roo2.irRadGai.AEpsConPar_a = {roo2.irRadGai.epsConPar_a[1] * roo2.irRadGai.AConPar[1]}; ($RES_BND_1342) [ARRY] (1) roo2.irRadGai.AEpsConExtWinFra = {roo2.irRadGai.epsConExtWinFra[1] * roo2.irRadGai.AConExtWinFra[1]}; ($RES_BND_1341) [ARRY] (1) roo2.irRadGai.AEpsConExtWinOpa = {roo2.irRadGai.epsConExtWinOpa[1] * roo2.irRadGai.AConExtWinOpa[1]}; ($RES_BND_1340) [ARRY] (1) roo2.irRadGai.AEpsConExt = {roo2.irRadGai.epsConExt[1] * roo2.irRadGai.AConExt[1]}; ($RES_BND_1339) [ARRY] (1) roo2.irRadGai.epsSurBou = roo2.irRadGai.surBou.absIR; ($RES_BND_1338) [ARRY] (1) roo2.irRadGai.epsConBou = roo2.irRadGai.datConBou.layers.absIR_b; ($RES_BND_1337) [ARRY] (1) roo2.irRadGai.epsConPar_b = roo2.irRadGai.datConPar.layers.absIR_b; ($RES_BND_1336) [ARRY] (1) roo2.irRadGai.epsConPar_a = roo2.irRadGai.datConPar.layers.absIR_a; ($RES_BND_1335) [ARRY] (1) roo2.irRadGai.epsConExtWinFra = roo2.irRadGai.datConExtWin.glaSys.absIRFra; ($RES_BND_1334) [ARRY] (1) roo2.irRadGai.epsConExtWinSha = roo2.irRadGai.datConExtWin.glaSys.shade.absIR_a; ($RES_BND_1333) [ARRY] (1) roo2.irRadGai.epsConExtWinUns = {roo2.irRadGai.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1332) [ARRY] (1) roo2.irRadGai.epsConExtWinOpa = roo2.irRadGai.datConExtWin.layers.absIR_b; ($RES_BND_1331) [ARRY] (1) roo2.irRadGai.epsConExt = roo2.irRadGai.datConExt.layers.absIR_b; ($RES_BND_1330) [ARRY] (1) roo2.irRadGai.ASurBou = roo2.irRadGai.surBou.A; ($RES_BND_1329) [ARRY] (1) roo2.irRadGai.AConBou = roo2.irRadGai.datConBou.A; ($RES_BND_1328) [ARRY] (1) roo2.irRadGai.AConPar = roo2.irRadGai.datConPar.A; ($RES_BND_1327) [ARRY] (1) roo2.irRadGai.AConExtWinFra = roo2.irRadGai.datConExtWin.fFra .* roo2.irRadGai.datConExtWin.AWin; ($RES_BND_1326) [ARRY] (1) roo2.irRadGai.AConExtWinGla = (1.0 .- roo2.irRadGai.datConExtWin.fFra) .* roo2.irRadGai.datConExtWin.AWin; ($RES_BND_1325) [ARRY] (1) roo2.irRadGai.AConExtWinOpa = roo2.irRadGai.datConExtWin.AOpa; ($RES_BND_1324) [ARRY] (1) roo2.irRadGai.AConExt = roo2.irRadGai.datConExt.A; ($RES_BND_1323) [ARRY] (1) roo2.air.convSurBou.is_floor = {$FUN_82 < 1e-9 and roo2.air.convSurBou[1].cosTil < 0.0}; ($RES_BND_1320) [ARRY] (1) roo2.air.convSurBou.is_ceiling = {$FUN_82 < 1e-9 and roo2.air.convSurBou[1].cosTil > 0.0}; ($RES_BND_1319) [ARRY] (1) roo2.air.convSurBou.sinTil = {$FUN_81}; ($RES_BND_1318) [ARRY] (1) roo2.air.convSurBou.cosTil = {$FUN_80}; ($RES_BND_1317) [ARRY] (1) roo2.air.convSurBou.til = {roo2.air.surBou[1].til}; ($RES_BND_1316) [SCAL] (1) roo2.air.convSurBou[1].hFixed = roo2.air.hFixed; ($RES_BND_1315) [ARRY] (1) roo2.air.convSurBou.A = {roo2.air.ASurBou[1]}; ($RES_BND_1314) [SCAL] (1) roo2.air.vol.dynBal.rho_start = $FUN_77; ($RES_BND_1311) [ARRY] (1) roo2.air.ASurBou = roo2.air.surBou.A; ($RES_BND_1294) [ARRY] (1) roo2.air.AConBou = roo2.air.datConBou.A; ($RES_BND_1293) [ARRY] (1) roo2.air.AConPar = roo2.air.datConPar.A; ($RES_BND_1292) [ARRY] (1) roo2.air.AConExtWinFra = roo2.air.datConExtWin.fFra .* roo2.air.datConExtWin.AWin; ($RES_BND_1291) [ARRY] (1) roo2.air.AConExtWinGla = (1.0 .- roo2.air.datConExtWin.fFra) .* roo2.air.datConExtWin.AWin; ($RES_BND_1290) [ARRY] (1) roo2.air.AConExtWinOpa = roo2.air.datConExtWin.AOpa; ($RES_BND_1289) [ARRY] (1) roo2.air.AConExt = roo2.air.datConExt.A; ($RES_BND_1288) [SCAL] (1) roo2.datConBou[1].T_b_start = roo2.T_start; ($RES_BND_1282) [SCAL] (1) roo2.datConBou[1].T_a_start = roo2.T_start; ($RES_BND_1281) [SCAL] (1) roo2.datConPar[1].T_b_start = roo2.T_start; ($RES_BND_1280) [SCAL] (1) roo2.datConPar[1].T_a_start = roo2.T_start; ($RES_BND_1279) [SCAL] (1) roo2.datConExtWin[1].T_b_start = roo2.T_start; ($RES_BND_1274) [SCAL] (1) roo2.datConExtWin[1].T_a_start = roo2.T_start; ($RES_BND_1273) [SCAL] (1) roo2.datConExt[1].T_b_start = roo2.T_start; ($RES_BND_1272) [SCAL] (1) roo2.datConExt[1].T_a_start = roo2.T_start; ($RES_BND_1271) [ARRY] (1) roo1.radTem.tauSha = {if roo1.radTem.datConExtWin[1].glaSys.haveInteriorShade then roo1.radTem.datConExtWin[1].glaSys.shade.tauIR_a else 1.0}; ($RES_BND_1267) [ARRY] (1) roo1.radTem.epsSha = {roo1.radTem.datConExtWin[1].glaSys.shade.absIR_a}; ($RES_BND_1266) [ARRY] (1) roo1.radTem.epsGla = {roo1.radTem.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1265) [ARRY] (1) roo1.radTem.AGla = roo1.radTem.datConExtWin.AGla; ($RES_BND_1264) [ARRY] (1) roo1.radTem.epsSurBou = roo1.radTem.surBou.absIR; ($RES_BND_1263) [ARRY] (1) roo1.radTem.epsConBou = roo1.radTem.datConBou.layers.absIR_b; ($RES_BND_1262) [ARRY] (1) roo1.radTem.epsConPar_b = roo1.radTem.datConPar.layers.absIR_b; ($RES_BND_1261) [ARRY] (1) roo1.radTem.epsConPar_a = roo1.radTem.datConPar.layers.absIR_a; ($RES_BND_1260) [ARRY] (1) roo1.radTem.epsConExtWinFra = roo1.radTem.datConExtWin.glaSys.absIRFra; ($RES_BND_1259) [ARRY] (1) roo1.radTem.epsConExtWinSha = roo1.radTem.datConExtWin.glaSys.shade.absIR_a; ($RES_BND_1258) [ARRY] (1) roo1.radTem.epsConExtWinUns = {roo1.radTem.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1257) [ARRY] (1) roo1.radTem.epsConExtWinOpa = roo1.radTem.datConExtWin.layers.absIR_b; ($RES_BND_1256) [ARRY] (1) roo1.radTem.epsConExt = roo1.radTem.datConExt.layers.absIR_b; ($RES_BND_1255) [ARRY] (1) roo1.radTem.ASurBou = roo1.radTem.surBou.A; ($RES_BND_1254) [ARRY] (1) roo1.radTem.AConBou = roo1.radTem.datConBou.A; ($RES_BND_1253) [ARRY] (1) roo1.radTem.AConPar = roo1.radTem.datConPar.A; ($RES_BND_1252) [ARRY] (1) roo1.radTem.AConExtWinFra = roo1.radTem.datConExtWin.fFra .* roo1.radTem.datConExtWin.AWin; ($RES_BND_1251) [ARRY] (1) roo1.radTem.AConExtWinGla = (1.0 .- roo1.radTem.datConExtWin.fFra) .* roo1.radTem.datConExtWin.AWin; ($RES_BND_1250) [ARRY] (1) roo1.radTem.AConExtWinOpa = roo1.radTem.datConExtWin.AOpa; ($RES_BND_1249) [ARRY] (1) roo1.radTem.AConExt = roo1.radTem.datConExt.A; ($RES_BND_1248) [ARRY] (1) roo1.irRadExc.epsSurBou = roo1.irRadExc.surBou.absIR; ($RES_BND_1245) [ARRY] (1) roo1.irRadExc.epsConBou = roo1.irRadExc.datConBou.layers.absIR_b; ($RES_BND_1244) [ARRY] (1) roo1.irRadExc.epsConPar_b = roo1.irRadExc.datConPar.layers.absIR_b; ($RES_BND_1243) [ARRY] (1) roo1.irRadExc.epsConPar_a = roo1.irRadExc.datConPar.layers.absIR_a; ($RES_BND_1242) [ARRY] (1) roo1.irRadExc.epsConExtWinFra = roo1.irRadExc.datConExtWin.glaSys.absIRFra; ($RES_BND_1241) [ARRY] (1) roo1.irRadExc.epsConExtWinSha = roo1.irRadExc.datConExtWin.glaSys.shade.absIR_a; ($RES_BND_1240) [ARRY] (1) roo1.irRadExc.epsConExtWinUns = {roo1.irRadExc.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1239) [ARRY] (1) roo1.irRadExc.epsConExtWinOpa = roo1.irRadExc.datConExtWin.layers.absIR_b; ($RES_BND_1238) [ARRY] (1) roo1.irRadExc.epsConExt = roo1.irRadExc.datConExt.layers.absIR_b; ($RES_BND_1237) [ARRY] (1) roo1.irRadExc.ASurBou = roo1.irRadExc.surBou.A; ($RES_BND_1236) [ARRY] (1) roo1.irRadExc.AConBou = roo1.irRadExc.datConBou.A; ($RES_BND_1235) [ARRY] (1) roo1.irRadExc.AConPar = roo1.irRadExc.datConPar.A; ($RES_BND_1234) [ARRY] (1) roo1.irRadExc.AConExtWinFra = roo1.irRadExc.datConExtWin.fFra .* roo1.irRadExc.datConExtWin.AWin; ($RES_BND_1233) [ARRY] (1) roo1.irRadExc.AConExtWinGla = (1.0 .- roo1.irRadExc.datConExtWin.fFra) .* roo1.irRadExc.datConExtWin.AWin; ($RES_BND_1232) [ARRY] (1) roo1.irRadExc.AConExtWinOpa = roo1.irRadExc.datConExtWin.AOpa; ($RES_BND_1231) [ARRY] (1) roo1.irRadExc.AConExt = roo1.irRadExc.datConExt.A; ($RES_BND_1230) [ARRY] (1) roo1.irRadGai.AEpsSurBou = {roo1.irRadGai.epsSurBou[1] * roo1.irRadGai.ASurBou[1]}; ($RES_BND_1227) [ARRY] (1) roo1.irRadGai.AEpsConBou = {roo1.irRadGai.epsConBou[1] * roo1.irRadGai.AConBou[1]}; ($RES_BND_1226) [ARRY] (1) roo1.irRadGai.AEpsConPar_b = {roo1.irRadGai.epsConPar_b[1] * roo1.irRadGai.AConPar[1]}; ($RES_BND_1225) [ARRY] (1) roo1.irRadGai.AEpsConPar_a = {roo1.irRadGai.epsConPar_a[1] * roo1.irRadGai.AConPar[1]}; ($RES_BND_1224) [ARRY] (1) roo1.irRadGai.AEpsConExtWinFra = {roo1.irRadGai.epsConExtWinFra[1] * roo1.irRadGai.AConExtWinFra[1]}; ($RES_BND_1223) [ARRY] (1) roo1.irRadGai.AEpsConExtWinOpa = {roo1.irRadGai.epsConExtWinOpa[1] * roo1.irRadGai.AConExtWinOpa[1]}; ($RES_BND_1222) [ARRY] (1) roo1.irRadGai.AEpsConExt = {roo1.irRadGai.epsConExt[1] * roo1.irRadGai.AConExt[1]}; ($RES_BND_1221) [ARRY] (1) roo1.irRadGai.epsSurBou = roo1.irRadGai.surBou.absIR; ($RES_BND_1220) [ARRY] (1) roo1.irRadGai.epsConBou = roo1.irRadGai.datConBou.layers.absIR_b; ($RES_BND_1219) [ARRY] (1) roo1.irRadGai.epsConPar_b = roo1.irRadGai.datConPar.layers.absIR_b; ($RES_BND_1218) [ARRY] (1) roo1.irRadGai.epsConPar_a = roo1.irRadGai.datConPar.layers.absIR_a; ($RES_BND_1217) [ARRY] (1) roo1.irRadGai.epsConExtWinFra = roo1.irRadGai.datConExtWin.glaSys.absIRFra; ($RES_BND_1216) [ARRY] (1) roo1.irRadGai.epsConExtWinSha = roo1.irRadGai.datConExtWin.glaSys.shade.absIR_a; ($RES_BND_1215) [ARRY] (1) roo1.irRadGai.epsConExtWinUns = {roo1.irRadGai.datConExtWin[1].glaSys.glass[1].absIR_b}; ($RES_BND_1214) [ARRY] (1) roo1.irRadGai.epsConExtWinOpa = roo1.irRadGai.datConExtWin.layers.absIR_b; ($RES_BND_1213) [ARRY] (1) roo1.irRadGai.epsConExt = roo1.irRadGai.datConExt.layers.absIR_b; ($RES_BND_1212) [ARRY] (1) roo1.irRadGai.ASurBou = roo1.irRadGai.surBou.A; ($RES_BND_1211) [ARRY] (1) roo1.irRadGai.AConBou = roo1.irRadGai.datConBou.A; ($RES_BND_1210) [ARRY] (1) roo1.irRadGai.AConPar = roo1.irRadGai.datConPar.A; ($RES_BND_1209) [ARRY] (1) roo1.irRadGai.AConExtWinFra = roo1.irRadGai.datConExtWin.fFra .* roo1.irRadGai.datConExtWin.AWin; ($RES_BND_1208) [ARRY] (1) roo1.irRadGai.AConExtWinGla = (1.0 .- roo1.irRadGai.datConExtWin.fFra) .* roo1.irRadGai.datConExtWin.AWin; ($RES_BND_1207) [ARRY] (1) roo1.irRadGai.AConExtWinOpa = roo1.irRadGai.datConExtWin.AOpa; ($RES_BND_1206) [ARRY] (1) roo1.irRadGai.AConExt = roo1.irRadGai.datConExt.A; ($RES_BND_1205) [ARRY] (1) roo1.air.convSurBou.is_floor = {$FUN_74 < 1e-9 and roo1.air.convSurBou[1].cosTil < 0.0}; ($RES_BND_1202) [ARRY] (1) roo1.air.convSurBou.is_ceiling = {$FUN_74 < 1e-9 and roo1.air.convSurBou[1].cosTil > 0.0}; ($RES_BND_1201) [ARRY] (1) roo1.air.convSurBou.sinTil = {$FUN_73}; ($RES_BND_1200) [ARRY] (1) roo1.air.convSurBou.cosTil = {$FUN_72}; ($RES_BND_1199) [ARRY] (1) roo1.air.convSurBou.til = {roo1.air.surBou[1].til}; ($RES_BND_1198) [SCAL] (1) roo1.air.convSurBou[1].hFixed = roo1.air.hFixed; ($RES_BND_1197) [ARRY] (1) roo1.air.convSurBou.A = {roo1.air.ASurBou[1]}; ($RES_BND_1196) [SCAL] (1) roo1.air.vol.dynBal.rho_start = $FUN_69; ($RES_BND_1193) [ARRY] (1) roo1.air.ASurBou = roo1.air.surBou.A; ($RES_BND_1177) [ARRY] (1) roo1.air.AConBou = roo1.air.datConBou.A; ($RES_BND_1176) [ARRY] (1) roo1.air.AConPar = roo1.air.datConPar.A; ($RES_BND_1175) [ARRY] (1) roo1.air.AConExtWinFra = roo1.air.datConExtWin.fFra .* roo1.air.datConExtWin.AWin; ($RES_BND_1174) [ARRY] (1) roo1.air.AConExtWinGla = (1.0 .- roo1.air.datConExtWin.fFra) .* roo1.air.datConExtWin.AWin; ($RES_BND_1173) [ARRY] (1) roo1.air.AConExtWinOpa = roo1.air.datConExtWin.AOpa; ($RES_BND_1172) [ARRY] (1) roo1.air.AConExt = roo1.air.datConExt.A; ($RES_BND_1171) [SCAL] (1) roo1.datConBou[1].T_b_start = roo1.T_start; ($RES_BND_1165) [SCAL] (1) roo1.datConBou[1].T_a_start = roo1.T_start; ($RES_BND_1164) [SCAL] (1) roo1.datConPar[1].T_b_start = roo1.T_start; ($RES_BND_1163) [SCAL] (1) roo1.datConPar[1].T_a_start = roo1.T_start; ($RES_BND_1162) [SCAL] (1) roo1.datConExtWin[1].T_b_start = roo1.T_start; ($RES_BND_1157) [SCAL] (1) roo1.datConExtWin[1].T_a_start = roo1.T_start; ($RES_BND_1156) [SCAL] (1) roo1.datConExt[1].T_b_start = roo1.T_start; ($RES_BND_1155) [SCAL] (1) roo1.datConExt[1].T_a_start = roo1.T_start; ($RES_BND_1154) Created Primary Parameter Binding Equations (156): **************************************************** BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter String weaDat.datRea30Min.fileName = weaDat.filNam ### Equation: [SCAL] (1) weaDat.datRea30Min.fileName = weaDat.filNam; ($RES_BND_1412) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.horInfRadSel.p = weaDat.HInfHor ### Equation: [SCAL] (1) weaDat.horInfRadSel.p = weaDat.HInfHor; ($RES_BND_1408) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.winDirSel.p = weaDat.winDir ### Equation: [SCAL] (1) weaDat.winDirSel.p = weaDat.winDir; ($RES_BND_1407) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.winSpeSel.p = weaDat.winSpe ### Equation: [SCAL] (1) weaDat.winSpeSel.p = weaDat.winSpe; ($RES_BND_1406) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.totSkyCovSel.p = weaDat.totSkyCov ### Equation: [SCAL] (1) weaDat.totSkyCovSel.p = weaDat.totSkyCov; ($RES_BND_1405) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.ceiHeiSel.p = weaDat.ceiHei ### Equation: [SCAL] (1) weaDat.ceiHeiSel.p = weaDat.ceiHei; ($RES_BND_1404) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.opaSkyCovSel.p = weaDat.opaSkyCov ### Equation: [SCAL] (1) weaDat.opaSkyCovSel.p = weaDat.opaSkyCov; ($RES_BND_1403) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.relHumSel.p = weaDat.relHum ### Equation: [SCAL] (1) weaDat.relHumSel.p = weaDat.relHum; ($RES_BND_1402) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.TBlaSkySel.p = weaDat.TBlaSky ### Equation: [SCAL] (1) weaDat.TBlaSkySel.p = weaDat.TBlaSky; ($RES_BND_1401) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.TDryBulSel.p = weaDat.TDryBul ### Equation: [SCAL] (1) weaDat.TDryBulSel.p = weaDat.TDryBul; ($RES_BND_1400) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.TDewPoiSel.p = weaDat.TDewPoi ### Equation: [SCAL] (1) weaDat.TDewPoiSel.p = weaDat.TDewPoi; ($RES_BND_1399) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.pAtmSel.p = weaDat.pAtm ### Equation: [SCAL] (1) weaDat.pAtmSel.p = weaDat.pAtm; ($RES_BND_1398) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter String weaDat.datRea.fileName = weaDat.filNam ### Equation: [SCAL] (1) weaDat.datRea.fileName = weaDat.filNam; ($RES_BND_1394) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: protected final parameter Real[2] weaDat.timeSpan = Buildings.BoundaryConditions.WeatherData.BaseClasses.getTimeSpanTMY3(weaDat.filNam, "tab1") ### Equation: [ARRY] (2) weaDat.timeSpan = Buildings.BoundaryConditions.WeatherData.BaseClasses.getTimeSpanTMY3(weaDat.filNam, "tab1"); ($RES_BND_1393) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real weaDat.alt = Buildings.BoundaryConditions.WeatherData.BaseClasses.getAltitudeLocationTMY3(weaDat.filNam) ### Equation: [SCAL] (1) weaDat.alt = Buildings.BoundaryConditions.WeatherData.BaseClasses.getAltitudeLocationTMY3(weaDat.filNam); ($RES_BND_1392) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real weaDat.timZon = Buildings.BoundaryConditions.WeatherData.BaseClasses.getTimeZoneTMY3(weaDat.filNam) ### Equation: [SCAL] (1) weaDat.timZon = Buildings.BoundaryConditions.WeatherData.BaseClasses.getTimeZoneTMY3(weaDat.filNam); ($RES_BND_1391) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real weaDat.lat = Buildings.BoundaryConditions.WeatherData.BaseClasses.getLatitudeTMY3(weaDat.filNam) ### Equation: [SCAL] (1) weaDat.lat = Buildings.BoundaryConditions.WeatherData.BaseClasses.getLatitudeTMY3(weaDat.filNam); ($RES_BND_1390) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real weaDat.lon = Buildings.BoundaryConditions.WeatherData.BaseClasses.getLongitudeTMY3(weaDat.filNam) ### Equation: [SCAL] (1) weaDat.lon = Buildings.BoundaryConditions.WeatherData.BaseClasses.getLongitudeTMY3(weaDat.filNam); ($RES_BND_1389) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo2.heaGai.AFlo = roo2.AFlo ### Equation: [SCAL] (1) roo2.heaGai.AFlo = roo2.AFlo; ($RES_BND_1388) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real[1] roo2.tauIRSha_glass = roo2.datConExtWin.glaSys.shade.tauIR_b ### Equation: [ARRY] (1) roo2.tauIRSha_glass = roo2.datConExtWin.glaSys.shade.tauIR_b; ($RES_BND_1387) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real[1] roo2.tauIRSha_air = roo2.datConExtWin.glaSys.shade.tauIR_a ### Equation: [ARRY] (1) roo2.tauIRSha_air = roo2.datConExtWin.glaSys.shade.tauIR_a; ($RES_BND_1386) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo2.radTem.dummyCon.nSta = {roo2.radTem.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo2.radTem.dummyCon.nSta = {roo2.radTem.dummyCon.material[1].nSta}; ($RES_BND_1365) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.radTem.dummyCon.R = roo2.radTem.dummyCon.material[1].R ### Equation: [SCAL] (1) roo2.radTem.dummyCon.R = roo2.radTem.dummyCon.material[1].R; ($RES_BND_1364) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo2.irRadExc.dummyCon.nSta = {roo2.irRadExc.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo2.irRadExc.dummyCon.nSta = {roo2.irRadExc.dummyCon.material[1].nSta}; ($RES_BND_1347) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.irRadExc.dummyCon.R = roo2.irRadExc.dummyCon.material[1].R ### Equation: [SCAL] (1) roo2.irRadExc.dummyCon.R = roo2.irRadExc.dummyCon.material[1].R; ($RES_BND_1346) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo2.irRadGai.dummyCon.nSta = {roo2.irRadGai.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo2.irRadGai.dummyCon.nSta = {roo2.irRadGai.dummyCon.material[1].nSta}; ($RES_BND_1322) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.irRadGai.dummyCon.R = roo2.irRadGai.dummyCon.material[1].R ### Equation: [SCAL] (1) roo2.irRadGai.dummyCon.R = roo2.irRadGai.dummyCon.material[1].R; ($RES_BND_1321) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.hFixed = roo2.hIntFixed ### Equation: [SCAL] (1) roo2.air.hFixed = roo2.hIntFixed; ($RES_BND_1299) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: final parameter Real[2] roo2.air.X_start = roo2.X_start ### Equation: [ARRY] (2) roo2.air.X_start = roo2.X_start; ($RES_BND_1297) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.T_start = roo2.T_start ### Equation: [SCAL] (1) roo2.air.T_start = roo2.T_start; ($RES_BND_1296) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.p_start = roo2.p_start ### Equation: [SCAL] (1) roo2.air.p_start = roo2.p_start; ($RES_BND_1295) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo2.air.dummyCon.nSta = {roo2.air.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo2.air.dummyCon.nSta = {roo2.air.dummyCon.material[1].nSta}; ($RES_BND_1286) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.dummyCon.R = roo2.air.dummyCon.material[1].R ### Equation: [SCAL] (1) roo2.air.dummyCon.R = roo2.air.dummyCon.material[1].R; ($RES_BND_1285) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.V = roo2.AFlo * roo2.hRoo ### Equation: [SCAL] (1) roo2.V = roo2.AFlo * roo2.hRoo; ($RES_BND_1283) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo2.datConExtWin.AWin = {roo2.datConExtWin[1].wWin * roo2.datConExtWin[1].hWin} ### Equation: [ARRY] (1) roo2.datConExtWin.AWin = {roo2.datConExtWin[1].wWin * roo2.datConExtWin[1].hWin}; ($RES_BND_1275) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo1.heaGai.AFlo = roo1.AFlo ### Equation: [SCAL] (1) roo1.heaGai.AFlo = roo1.AFlo; ($RES_BND_1270) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real[1] roo1.tauIRSha_glass = roo1.datConExtWin.glaSys.shade.tauIR_b ### Equation: [ARRY] (1) roo1.tauIRSha_glass = roo1.datConExtWin.glaSys.shade.tauIR_b; ($RES_BND_1269) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real[1] roo1.tauIRSha_air = roo1.datConExtWin.glaSys.shade.tauIR_a ### Equation: [ARRY] (1) roo1.tauIRSha_air = roo1.datConExtWin.glaSys.shade.tauIR_a; ($RES_BND_1268) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo1.radTem.dummyCon.nSta = {roo1.radTem.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo1.radTem.dummyCon.nSta = {roo1.radTem.dummyCon.material[1].nSta}; ($RES_BND_1247) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.radTem.dummyCon.R = roo1.radTem.dummyCon.material[1].R ### Equation: [SCAL] (1) roo1.radTem.dummyCon.R = roo1.radTem.dummyCon.material[1].R; ($RES_BND_1246) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo1.irRadExc.dummyCon.nSta = {roo1.irRadExc.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo1.irRadExc.dummyCon.nSta = {roo1.irRadExc.dummyCon.material[1].nSta}; ($RES_BND_1229) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.irRadExc.dummyCon.R = roo1.irRadExc.dummyCon.material[1].R ### Equation: [SCAL] (1) roo1.irRadExc.dummyCon.R = roo1.irRadExc.dummyCon.material[1].R; ($RES_BND_1228) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo1.irRadGai.dummyCon.nSta = {roo1.irRadGai.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo1.irRadGai.dummyCon.nSta = {roo1.irRadGai.dummyCon.material[1].nSta}; ($RES_BND_1204) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.irRadGai.dummyCon.R = roo1.irRadGai.dummyCon.material[1].R ### Equation: [SCAL] (1) roo1.irRadGai.dummyCon.R = roo1.irRadGai.dummyCon.material[1].R; ($RES_BND_1203) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.hFixed = roo1.hIntFixed ### Equation: [SCAL] (1) roo1.air.hFixed = roo1.hIntFixed; ($RES_BND_1182) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: final parameter Real[2] roo1.air.X_start = roo1.X_start ### Equation: [ARRY] (2) roo1.air.X_start = roo1.X_start; ($RES_BND_1180) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.T_start = roo1.T_start ### Equation: [SCAL] (1) roo1.air.T_start = roo1.T_start; ($RES_BND_1179) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.p_start = roo1.p_start ### Equation: [SCAL] (1) roo1.air.p_start = roo1.p_start; ($RES_BND_1178) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Integer[1] roo1.air.dummyCon.nSta = {roo1.air.dummyCon.material[1].nSta} ### Equation: [ARRY] (1) roo1.air.dummyCon.nSta = {roo1.air.dummyCon.material[1].nSta}; ($RES_BND_1169) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.dummyCon.R = roo1.air.dummyCon.material[1].R ### Equation: [SCAL] (1) roo1.air.dummyCon.R = roo1.air.dummyCon.material[1].R; ($RES_BND_1168) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.V = roo1.AFlo * roo1.hRoo ### Equation: [SCAL] (1) roo1.V = roo1.AFlo * roo1.hRoo; ($RES_BND_1166) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo1.datConExtWin.AWin = {roo1.datConExtWin[1].wWin * roo1.datConExtWin[1].hWin} ### Equation: [ARRY] (1) roo1.datConExtWin.AWin = {roo1.datConExtWin[1].wWin * roo1.datConExtWin[1].hWin}; ($RES_BND_1158) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Integer $FUN_85 ### Equation: [SCAL] (1) $FUN_85 = Modelica.Utilities.Strings.findLast(weaDat.datRea.fileName, ".csv", 0, false); ($RES_AUX_728) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Integer $FUN_86 ### Equation: [SCAL] (1) $FUN_86 = Modelica.Utilities.Strings.length(weaDat.datRea.fileName); ($RES_AUX_727) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Integer $FUN_89 ### Equation: [SCAL] (1) $FUN_89 = Modelica.Utilities.Strings.findLast(weaDat.datRea30Min.fileName, ".csv", 0, false); ($RES_AUX_724) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Integer $FUN_90 ### Equation: [SCAL] (1) $FUN_90 = Modelica.Utilities.Strings.length(weaDat.datRea30Min.fileName); ($RES_AUX_723) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo1.weaBus.pAtm = weaDat.pAtmSel.p ### Equation: [SCAL] (1) roo1.weaBus.pAtm = weaDat.pAtmSel.p; ($RES_BND_1450) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo2.weaBus.pAtm = weaDat.pAtmSel.p ### Equation: [SCAL] (1) roo2.weaBus.pAtm = weaDat.pAtmSel.p; ($RES_BND_1449) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real weaDat.weaBus.pAtm = weaDat.pAtmSel.p ### Equation: [SCAL] (1) weaDat.weaBus.pAtm = weaDat.pAtmSel.p; ($RES_BND_1448) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected Real weaDat.chePre.pAtm = weaDat.pAtmSel.p ### Equation: [SCAL] (1) weaDat.chePre.pAtm = weaDat.pAtmSel.p; ($RES_BND_1447) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected Real weaDat.chePre.PIn = weaDat.pAtmSel.p ### Equation: [SCAL] (1) weaDat.chePre.PIn = weaDat.pAtmSel.p; ($RES_BND_1446) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected Real weaDat.pAtmSel.y = weaDat.pAtmSel.p ### Equation: [SCAL] (1) weaDat.pAtmSel.y = weaDat.pAtmSel.p; ($RES_BND_1445) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.altitude.Altitude = weaDat.alt ### Equation: [SCAL] (1) weaDat.altitude.Altitude = weaDat.alt; ($RES_BND_1426) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.longitude.longitude = weaDat.lon ### Equation: [SCAL] (1) weaDat.longitude.longitude = weaDat.lon; ($RES_BND_1425) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.latitude.latitude = weaDat.lat ### Equation: [SCAL] (1) weaDat.latitude.latitude = weaDat.lat; ($RES_BND_1424) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.conTim.weaDatEndTim = weaDat.timeSpan[2] ### Equation: [SCAL] (1) weaDat.conTim.weaDatEndTim = weaDat.timeSpan[2]; ($RES_BND_1421) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.conTim.weaDatStaTim = weaDat.timeSpan[1] ### Equation: [SCAL] (1) weaDat.conTim.weaDatStaTim = weaDat.timeSpan[1]; ($RES_BND_1420) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.conTimMin.weaDatEndTim = weaDat.timeSpan[2] ### Equation: [SCAL] (1) weaDat.conTimMin.weaDatEndTim = weaDat.timeSpan[2]; ($RES_BND_1417) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.conTimMin.weaDatStaTim = weaDat.timeSpan[1] ### Equation: [SCAL] (1) weaDat.conTimMin.weaDatStaTim = weaDat.timeSpan[1]; ($RES_BND_1416) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Boolean weaDat.datRea30Min.isCsvExt = 3 + $FUN_89 == $FUN_90 ### Equation: [SCAL] (1) weaDat.datRea30Min.isCsvExt = 3 + $FUN_89 == $FUN_90; ($RES_BND_1415) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.locTim.lon = weaDat.lon ### Equation: [SCAL] (1) weaDat.locTim.lon = weaDat.lon; ($RES_BND_1410) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.locTim.timZon = weaDat.timZon ### Equation: [SCAL] (1) weaDat.locTim.timZon = weaDat.timZon; ($RES_BND_1409) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Boolean weaDat.datRea.isCsvExt = 3 + $FUN_85 == $FUN_86 ### Equation: [SCAL] (1) weaDat.datRea.isCsvExt = 3 + $FUN_85 == $FUN_86; ($RES_BND_1397) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: final parameter Real[2] roo2.air.vol.X_start = roo2.air.X_start ### Equation: [ARRY] (2) roo2.air.vol.X_start = roo2.air.X_start; ($RES_BND_1302) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.vol.T_start = roo2.air.T_start ### Equation: [SCAL] (1) roo2.air.vol.T_start = roo2.air.T_start; ($RES_BND_1301) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.vol.p_start = roo2.air.p_start ### Equation: [SCAL] (1) roo2.air.vol.p_start = roo2.air.p_start; ($RES_BND_1300) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.V = roo2.V ### Equation: [SCAL] (1) roo2.air.V = roo2.V; ($RES_BND_1287) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: parameter Real roo2.m_flow_nominal = (1.2 * roo2.V) / 3600.0 ### Equation: [SCAL] (1) roo2.m_flow_nominal = 1.2 * roo2.V / 3600.0; ($RES_BND_1284) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo2.datConExtWin.AFra = {roo2.datConExtWin[1].AWin * roo2.datConExtWin[1].fFra} ### Equation: [ARRY] (1) roo2.datConExtWin.AFra = {roo2.datConExtWin[1].AWin * roo2.datConExtWin[1].fFra}; ($RES_BND_1277) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo2.datConExtWin.AOpa = {roo2.datConExtWin[1].A - roo2.datConExtWin[1].AWin} ### Equation: [ARRY] (1) roo2.datConExtWin.AOpa = {roo2.datConExtWin[1].A - roo2.datConExtWin[1].AWin}; ($RES_BND_1276) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: final parameter Real[2] roo1.air.vol.X_start = roo1.air.X_start ### Equation: [ARRY] (2) roo1.air.vol.X_start = roo1.air.X_start; ($RES_BND_1185) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.vol.T_start = roo1.air.T_start ### Equation: [SCAL] (1) roo1.air.vol.T_start = roo1.air.T_start; ($RES_BND_1184) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.vol.p_start = roo1.air.p_start ### Equation: [SCAL] (1) roo1.air.vol.p_start = roo1.air.p_start; ($RES_BND_1183) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.V = roo1.V ### Equation: [SCAL] (1) roo1.air.V = roo1.V; ($RES_BND_1170) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: parameter Real roo1.m_flow_nominal = (1.2 * roo1.V) / 3600.0 ### Equation: [SCAL] (1) roo1.m_flow_nominal = 1.2 * roo1.V / 3600.0; ($RES_BND_1167) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo1.datConExtWin.AFra = {roo1.datConExtWin[1].AWin * roo1.datConExtWin[1].fFra} ### Equation: [ARRY] (1) roo1.datConExtWin.AFra = {roo1.datConExtWin[1].AWin * roo1.datConExtWin[1].fFra}; ($RES_BND_1160) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo1.datConExtWin.AOpa = {roo1.datConExtWin[1].A - roo1.datConExtWin[1].AWin} ### Equation: [ARRY] (1) roo1.datConExtWin.AOpa = {roo1.datConExtWin[1].A - roo1.datConExtWin[1].AWin}; ($RES_BND_1159) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_34 ### Equation: [SCAL] (1) $FUN_34 = cos(weaDat.latitude.latitude); ($RES_AUX_685) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_36 ### Equation: [SCAL] (1) $FUN_36 = sin(weaDat.latitude.latitude); ($RES_AUX_683) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Modelica.Blocks.Types.ExternalCombiTable1D weaDat.datRea30Min.tableID = Modelica.Blocks.Types.ExternalCombiTable1D.constructor(if weaDat.datRea30Min.isCsvExt then "Values" else "tab1", if weaDat.datRea30Min.fileName <> "NoName" and not Modelica.Utilities.Strings.isEmpty(weaDat.datRea30Min.fileName) then weaDat.datRea30Min.fileName else "NoName", {}, {9, 10, 11}, Modelica.Blocks.Types.Smoothness.ContinuousDerivative, Modelica.Blocks.Types.Extrapolation.LastTwoPoints, false, ",", 0) ### Equation: [SCAL] (1) weaDat.datRea30Min.tableID = Modelica.Blocks.Types.ExternalCombiTable1D.constructor(if weaDat.datRea30Min.isCsvExt then "Values" else "tab1", if weaDat.datRea30Min.fileName <> "NoName" and not Modelica.Utilities.Strings.isEmpty(weaDat.datRea30Min.fileName) then weaDat.datRea30Min.fileName else "NoName", {}, {9, 10, 11}, Modelica.Blocks.Types.Smoothness.ContinuousDerivative, Modelica.Blocks.Types.Extrapolation.LastTwoPoints, false, ",", 0); ($RES_BND_1494) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Modelica.Blocks.Types.ExternalCombiTable1D weaDat.datRea.tableID = Modelica.Blocks.Types.ExternalCombiTable1D.constructor(if weaDat.datRea.isCsvExt then "Values" else "tab1", if weaDat.datRea.fileName <> "NoName" and not Modelica.Utilities.Strings.isEmpty(weaDat.datRea.fileName) then weaDat.datRea.fileName else "NoName", {}, {2, 3, 4, 5, 6, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 8}, Modelica.Blocks.Types.Smoothness.ContinuousDerivative, Modelica.Blocks.Types.Extrapolation.LastTwoPoints, false, ",", 0) ### Equation: [SCAL] (1) weaDat.datRea.tableID = Modelica.Blocks.Types.ExternalCombiTable1D.constructor(if weaDat.datRea.isCsvExt then "Values" else "tab1", if weaDat.datRea.fileName <> "NoName" and not Modelica.Utilities.Strings.isEmpty(weaDat.datRea.fileName) then weaDat.datRea.fileName else "NoName", {}, {2, 3, 4, 5, 6, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 8}, Modelica.Blocks.Types.Smoothness.ContinuousDerivative, Modelica.Blocks.Types.Extrapolation.LastTwoPoints, false, ",", 0); ($RES_BND_1493) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 4) -------------------------------------------------------------------- ### Variable: protected final parameter MediumA.ThermodynamicState roo2.air.vol.state_start = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo2.air.vol.p_start, roo2.air.vol.T_start, roo2.air.vol.X_start[1:1]) ### Equation: [RECD] (4) roo2.air.vol.state_start = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo2.air.vol.p_start, roo2.air.vol.T_start, roo2.air.vol.X_start[1:1]); ($RES_BND_1477) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 4) -------------------------------------------------------------------- ### Variable: protected final parameter MediumA.ThermodynamicState roo1.air.vol.state_start = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo1.air.vol.p_start, roo1.air.vol.T_start, roo1.air.vol.X_start[1:1]) ### Equation: [RECD] (4) roo1.air.vol.state_start = Buildings.ThermalZones.Detailed.Validation.RoomCapacityMultiplier.MediumA.setState_pTX(roo1.air.vol.p_start, roo1.air.vol.T_start, roo1.air.vol.X_start[1:1]); ($RES_BND_1456) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected Real weaDat.zenAng.lat = weaDat.latitude.latitude ### Equation: [SCAL] (1) weaDat.zenAng.lat = weaDat.latitude.latitude; ($RES_BND_1444) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo1.weaBus.lat = weaDat.latitude.latitude ### Equation: [SCAL] (1) roo1.weaBus.lat = weaDat.latitude.latitude; ($RES_BND_1443) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo2.weaBus.lat = weaDat.latitude.latitude ### Equation: [SCAL] (1) roo2.weaBus.lat = weaDat.latitude.latitude; ($RES_BND_1442) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real weaDat.weaBus.lat = weaDat.latitude.latitude ### Equation: [SCAL] (1) weaDat.weaBus.lat = weaDat.latitude.latitude; ($RES_BND_1441) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected Real weaDat.latitude.y = weaDat.latitude.latitude ### Equation: [SCAL] (1) weaDat.latitude.y = weaDat.latitude.latitude; ($RES_BND_1440) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo1.weaBus.lon = weaDat.longitude.longitude ### Equation: [SCAL] (1) roo1.weaBus.lon = weaDat.longitude.longitude; ($RES_BND_1439) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo2.weaBus.lon = weaDat.longitude.longitude ### Equation: [SCAL] (1) roo2.weaBus.lon = weaDat.longitude.longitude; ($RES_BND_1438) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real weaDat.weaBus.lon = weaDat.longitude.longitude ### Equation: [SCAL] (1) weaDat.weaBus.lon = weaDat.longitude.longitude; ($RES_BND_1437) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected Real weaDat.longitude.y = weaDat.longitude.longitude ### Equation: [SCAL] (1) weaDat.longitude.y = weaDat.longitude.longitude; ($RES_BND_1436) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo1.weaBus.alt = weaDat.altitude.Altitude ### Equation: [SCAL] (1) roo1.weaBus.alt = weaDat.altitude.Altitude; ($RES_BND_1435) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo2.weaBus.alt = weaDat.altitude.Altitude ### Equation: [SCAL] (1) roo2.weaBus.alt = weaDat.altitude.Altitude; ($RES_BND_1434) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real weaDat.weaBus.alt = weaDat.altitude.Altitude ### Equation: [SCAL] (1) weaDat.weaBus.alt = weaDat.altitude.Altitude; ($RES_BND_1433) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected Real weaDat.altitude.y = weaDat.altitude.Altitude ### Equation: [SCAL] (1) weaDat.altitude.y = weaDat.altitude.Altitude; ($RES_BND_1432) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo2.air.vol.p = roo2.air.vol.p_start ### Equation: [SCAL] (1) roo2.air.vol.p = roo2.air.vol.p_start; ($RES_BND_1428) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real roo1.air.vol.p = roo1.air.vol.p_start ### Equation: [SCAL] (1) roo1.air.vol.p = roo1.air.vol.p_start; ($RES_BND_1427) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Real weaDat.conTim.lenWea = weaDat.conTim.weaDatEndTim - weaDat.conTim.weaDatStaTim ### Equation: [SCAL] (1) weaDat.conTim.lenWea = weaDat.conTim.weaDatEndTim - weaDat.conTim.weaDatStaTim; ($RES_BND_1422) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Real weaDat.conTimMin.lenWea = weaDat.conTimMin.weaDatEndTim - weaDat.conTimMin.weaDatStaTim ### Equation: [SCAL] (1) weaDat.conTimMin.lenWea = weaDat.conTimMin.weaDatEndTim - weaDat.conTimMin.weaDatStaTim; ($RES_BND_1418) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.locTim.diff = (weaDat.locTim.lon * 43200.0) / 3.141592653589793 - weaDat.locTim.timZon ### Equation: [SCAL] (1) weaDat.locTim.diff = weaDat.locTim.lon * 43200.0 / 3.141592653589793 - weaDat.locTim.timZon; ($RES_BND_1411) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: protected final parameter Real[2] roo2.air.vol.dynBal.X_start = roo2.air.vol.X_start ### Equation: [ARRY] (2) roo2.air.vol.dynBal.X_start = roo2.air.vol.X_start; ($RES_BND_1308) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo2.air.vol.dynBal.T_start = roo2.air.vol.T_start ### Equation: [SCAL] (1) roo2.air.vol.dynBal.T_start = roo2.air.vol.T_start; ($RES_BND_1307) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo2.air.vol.dynBal.p_start = roo2.air.vol.p_start ### Equation: [SCAL] (1) roo2.air.vol.dynBal.p_start = roo2.air.vol.p_start; ($RES_BND_1306) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.vol.V = roo2.air.V ### Equation: [SCAL] (1) roo2.air.vol.V = roo2.air.V; ($RES_BND_1305) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.m_flow_nominal = roo2.m_flow_nominal ### Equation: [SCAL] (1) roo2.air.m_flow_nominal = roo2.m_flow_nominal; ($RES_BND_1298) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo2.datConExtWin.AGla = {roo2.datConExtWin[1].AWin - roo2.datConExtWin[1].AFra} ### Equation: [ARRY] (1) roo2.datConExtWin.AGla = {roo2.datConExtWin[1].AWin - roo2.datConExtWin[1].AFra}; ($RES_BND_1278) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: protected final parameter Real[2] roo1.air.vol.dynBal.X_start = roo1.air.vol.X_start ### Equation: [ARRY] (2) roo1.air.vol.dynBal.X_start = roo1.air.vol.X_start; ($RES_BND_1191) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo1.air.vol.dynBal.T_start = roo1.air.vol.T_start ### Equation: [SCAL] (1) roo1.air.vol.dynBal.T_start = roo1.air.vol.T_start; ($RES_BND_1190) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo1.air.vol.dynBal.p_start = roo1.air.vol.p_start ### Equation: [SCAL] (1) roo1.air.vol.dynBal.p_start = roo1.air.vol.p_start; ($RES_BND_1189) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.vol.V = roo1.air.V ### Equation: [SCAL] (1) roo1.air.vol.V = roo1.air.V; ($RES_BND_1188) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.m_flow_nominal = roo1.m_flow_nominal ### Equation: [SCAL] (1) roo1.air.m_flow_nominal = roo1.m_flow_nominal; ($RES_BND_1181) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real[1] roo1.datConExtWin.AGla = {roo1.datConExtWin[1].AWin - roo1.datConExtWin[1].AFra} ### Equation: [ARRY] (1) roo1.datConExtWin.AGla = {roo1.datConExtWin[1].AWin - roo1.datConExtWin[1].AFra}; ($RES_BND_1161) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_67 ### Equation: [SCAL] (1) $FUN_67 = abs(roo1.air.m_flow_nominal); ($RES_AUX_746) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_70 ### Equation: [SCAL] (1) $FUN_70 = 1006.0 * ((-273.15) + roo1.air.vol.dynBal.T_start) * (1.0 - roo1.air.vol.dynBal.X_start[1]) + (2.5010145e6 + 1860.0 * ((-273.15) + roo1.air.vol.dynBal.T_start)) * roo1.air.vol.dynBal.X_start[1]; ($RES_AUX_743) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_71 ### Equation: [SCAL] (1) $FUN_71 = 1.1843079200592153e-5 * roo1.air.vol.state_start.p; ($RES_AUX_742) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_75 ### Equation: [SCAL] (1) $FUN_75 = abs(roo2.air.m_flow_nominal); ($RES_AUX_738) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_78 ### Equation: [SCAL] (1) $FUN_78 = 1006.0 * ((-273.15) + roo2.air.vol.dynBal.T_start) * (1.0 - roo2.air.vol.dynBal.X_start[1]) + (2.5010145e6 + 1860.0 * ((-273.15) + roo2.air.vol.dynBal.T_start)) * roo2.air.vol.dynBal.X_start[1]; ($RES_AUX_735) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_79 ### Equation: [SCAL] (1) $FUN_79 = 1.1843079200592153e-5 * roo2.air.vol.state_start.p; ($RES_AUX_734) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_83 ### Equation: [SCAL] (1) $FUN_83 = Modelica.Blocks.Tables.Internal.getTable1DAbscissaUmin(weaDat.datRea.tableID); ($RES_AUX_730) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_84 ### Equation: [SCAL] (1) $FUN_84 = Modelica.Blocks.Tables.Internal.getTable1DAbscissaUmax(weaDat.datRea.tableID); ($RES_AUX_729) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_87 ### Equation: [SCAL] (1) $FUN_87 = Modelica.Blocks.Tables.Internal.getTable1DAbscissaUmin(weaDat.datRea30Min.tableID); ($RES_AUX_726) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_88 ### Equation: [SCAL] (1) $FUN_88 = Modelica.Blocks.Tables.Internal.getTable1DAbscissaUmax(weaDat.datRea30Min.tableID); ($RES_AUX_725) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_91 ### Equation: [SCAL] (1) $FUN_91 = abs(mod(weaDat.conTimMin.lenWea, 3.1536e7)); ($RES_AUX_722) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $FUN_92 ### Equation: [SCAL] (1) $FUN_92 = abs(mod(weaDat.conTim.lenWea, 3.1536e7)); ($RES_AUX_721) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: Real[2] $START.$FUN_51 ### Equation: [ARRY] (2) $START.$FUN_51 = {roo1.air.vol.dynBal.X_start[1], 0.0}; ($RES_SRT_1153) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 2) -------------------------------------------------------------------- ### Variable: Real[2] $START.$FUN_45 ### Equation: [ARRY] (2) $START.$FUN_45 = {roo2.air.vol.dynBal.X_start[1], 0.0}; ($RES_SRT_1152) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $START.$FUN_36 ### Equation: [SCAL] (1) $START.$FUN_36 = Modelica.Math.sin(weaDat.zenAng.lat); ($RES_SRT_1151) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: Real $START.$FUN_34 ### Equation: [SCAL] (1) $START.$FUN_34 = Modelica.Math.cos(weaDat.zenAng.lat); ($RES_SRT_1150) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Boolean weaDat.conTim.canRepeatWeatherFile = $FUN_92 < 0.01 ### Equation: [SCAL] (1) weaDat.conTim.canRepeatWeatherFile = $FUN_92 < 0.01; ($RES_BND_1423) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Boolean weaDat.conTimMin.canRepeatWeatherFile = $FUN_91 < 0.01 ### Equation: [SCAL] (1) weaDat.conTimMin.canRepeatWeatherFile = $FUN_91 < 0.01; ($RES_BND_1419) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.datRea30Min.u_max = $FUN_88 ### Equation: [SCAL] (1) weaDat.datRea30Min.u_max = $FUN_88; ($RES_BND_1414) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.datRea30Min.u_min = $FUN_87 ### Equation: [SCAL] (1) weaDat.datRea30Min.u_min = $FUN_87; ($RES_BND_1413) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.datRea.u_max = $FUN_84 ### Equation: [SCAL] (1) weaDat.datRea.u_max = $FUN_84; ($RES_BND_1396) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real weaDat.datRea.u_min = $FUN_83 ### Equation: [SCAL] (1) weaDat.datRea.u_min = $FUN_83; ($RES_BND_1395) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Real roo2.air.vol.rho_start = $FUN_79 ### Equation: [SCAL] (1) roo2.air.vol.rho_start = $FUN_79; ($RES_BND_1313) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Real roo2.air.vol.dynBal.hStart = $FUN_78 ### Equation: [SCAL] (1) roo2.air.vol.dynBal.hStart = $FUN_78; ($RES_BND_1312) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo2.air.vol.dynBal.fluidVolume = roo2.air.vol.V ### Equation: [SCAL] (1) roo2.air.vol.dynBal.fluidVolume = roo2.air.vol.V; ($RES_BND_1309) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: parameter Real roo2.air.vol.m_flow_small = 1e-4 * $FUN_75 ### Equation: [SCAL] (1) roo2.air.vol.m_flow_small = 1e-4 * $FUN_75; ($RES_BND_1304) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo2.air.vol.m_flow_nominal = roo2.air.m_flow_nominal ### Equation: [SCAL] (1) roo2.air.vol.m_flow_nominal = roo2.air.m_flow_nominal; ($RES_BND_1303) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Real roo1.air.vol.rho_start = $FUN_71 ### Equation: [SCAL] (1) roo1.air.vol.rho_start = $FUN_71; ($RES_BND_1195) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected parameter Real roo1.air.vol.dynBal.hStart = $FUN_70 ### Equation: [SCAL] (1) roo1.air.vol.dynBal.hStart = $FUN_70; ($RES_BND_1194) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo1.air.vol.dynBal.fluidVolume = roo1.air.vol.V ### Equation: [SCAL] (1) roo1.air.vol.dynBal.fluidVolume = roo1.air.vol.V; ($RES_BND_1192) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: parameter Real roo1.air.vol.m_flow_small = 1e-4 * $FUN_67 ### Equation: [SCAL] (1) roo1.air.vol.m_flow_small = 1e-4 * $FUN_67; ($RES_BND_1187) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: final parameter Real roo1.air.vol.m_flow_nominal = roo1.air.m_flow_nominal ### Equation: [SCAL] (1) roo1.air.vol.m_flow_nominal = roo1.air.m_flow_nominal; ($RES_BND_1186) BLOCK: Single Strong Component (status = Solve.EXPLICIT, size = 1) -------------------------------------------------------------------- ### Variable: protected final parameter Real roo2.air.vol.dynBal.CSen = roo2.air.vol.dynBal.cp_default * 1.2 * roo2.air.vol.dynBal.fluidVolume ### Equation: [SCAL] (1) roo2.air.vol.dynBal.CSen = roo2.air.vol.dynBal.cp_default * 1.2 * roo2.air.vol.dynBal.fluidVolume; ($RES_BND_1310) ############################## Balance Initialization ############################## Not underdetermined. ********************** Not overdetermined. ********************* Not underdetermined. ********************** Not overdetermined. ********************* Limited backtrace at point of segmentation fault /usr/lib/x86_64-linux-gnu/libc.so.6(+0x45cb0) [0x781fef224cb0] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x9) [0x781ff13a7a89] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1ec) [0x781ff13a7c6c] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1ec) [0x781ff13a7c6c] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1ec) [0x781ff13a7c6c] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1af) [0x781ff13a7c2f] /var/lib/jenkins/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../lib/x86_64-linux-gnu/omc/libOpenModelicaRuntimeMMC.so(valueCompare+0x1ec) [0x781ff13a7c6c] Segmentation fault (core dumped) [Calling os._exit(0), Time elapsed: 12.115010676905513]