Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Buildings_13_Buildings.HeatTransfer.Windows.BaseClasses.Examples.CenterOfGlass.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 0.001814/0.001814, allocations: 80.88 kB / 21.56 MB, free: 2.93 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 0.001891/0.001891, allocations: 170.1 kB / 24.97 MB, free: 9.199 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 1.61/1.61, allocations: 177.1 MB / 205.4 MB, free: 5.461 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 3.332/3.332, allocations: 389.5 MB / 0.6361 GB, free: 12.31 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.HeatTransfer.Windows.BaseClasses.Examples.CenterOfGlass,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.HeatTransfer.Windows.BaseClasses.Examples.CenterOfGlass") translateModel(Buildings.HeatTransfer.Windows.BaseClasses.Examples.CenterOfGlass,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.HeatTransfer.Windows.BaseClasses.Examples.CenterOfGlass") [Timeout 300] "Notification: Performance of FrontEnd - Absyn->SCode: time 2.283e-05/2.283e-05, allocations: 5.125 kB / 0.776 GB, free: 5.34 MB / 0.7292 GB Notification: Performance of NFInst.instantiate(Buildings.HeatTransfer.Windows.BaseClasses.Examples.CenterOfGlass): time 0.008788/0.00881, allocations: 5.034 MB / 0.7809 GB, free: 332 kB / 0.7292 GB Notification: Performance of NFInst.instExpressions: time 0.01023/0.01905, allocations: 4.713 MB / 0.7855 GB, free: 11.62 MB / 0.7448 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.0009282/0.01997, allocations: 17.06 kB / 0.7855 GB, free: 11.6 MB / 0.7448 GB Notification: Performance of NFTyping.typeComponents: time 0.002267/0.02224, allocations: 0.591 MB / 0.7861 GB, free: 11.01 MB / 0.7448 GB Notification: Performance of NFTyping.typeBindings: time 0.001562/0.0238, allocations: 451.3 kB / 0.7865 GB, free: 10.57 MB / 0.7448 GB Notification: Performance of NFTyping.typeClassSections: time 0.002342/0.02614, allocations: 0.7477 MB / 0.7872 GB, free: 9.828 MB / 0.7448 GB Notification: Performance of NFFlatten.flatten: time 0.005456/0.0316, allocations: 3.579 MB / 0.7907 GB, free: 6.293 MB / 0.7448 GB Notification: Performance of NFFlatten.resolveConnections: time 0.0007452/0.03235, allocations: 285.8 kB / 0.791 GB, free: 6 MB / 0.7448 GB Notification: Performance of NFEvalConstants.evaluate: time 0.003624/0.03597, allocations: 1.362 MB / 0.7923 GB, free: 4.637 MB / 0.7448 GB Notification: Performance of NFSimplifyModel.simplify: time 0.002458/0.03843, allocations: 1.096 MB / 0.7934 GB, free: 3.539 MB / 0.7448 GB Notification: Performance of NFPackage.collectConstants: time 0.0004255/0.03885, allocations: 112.7 kB / 0.7935 GB, free: 3.43 MB / 0.7448 GB Notification: Performance of NFFlatten.collectFunctions: time 0.00251/0.04136, allocations: 0.6979 MB / 0.7942 GB, free: 2.73 MB / 0.7448 GB Notification: Performance of combineBinaries: time 0.003935/0.0453, allocations: 2.493 MB / 0.7966 GB, free: 232 kB / 0.7448 GB Notification: Performance of replaceArrayConstructors: time 0.002034/0.04733, allocations: 1.476 MB / 0.7981 GB, free: 14.79 MB / 0.7605 GB Notification: Performance of NFVerifyModel.verify: time 0.0005863/0.04792, allocations: 93.53 kB / 0.7982 GB, free: 14.7 MB / 0.7605 GB Notification: Performance of FrontEnd: time 0.0004845/0.0484, allocations: 35.75 kB / 0.7982 GB, free: 14.66 MB / 0.7605 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 184 (161) * Number of variables: 184 (152) Notification: Performance of [SIM] Bindings: time 0.01617/0.06457, allocations: 10.54 MB / 0.8085 GB, free: 3.867 MB / 0.7605 GB Notification: Performance of [SIM] FunctionAlias: time 0.002319/0.06689, allocations: 1.041 MB / 0.8095 GB, free: 2.805 MB / 0.7605 GB Notification: Performance of [SIM] Early Inline: time 0.01215/0.07905, allocations: 7.095 MB / 0.8164 GB, free: 11.68 MB / 0.7761 GB Notification: Performance of [SIM] Simplify 1: time 0.00135/0.0804, allocations: 0.6792 MB / 0.8171 GB, free: 10.95 MB / 0.7761 GB Notification: Performance of [SIM] Alias: time 0.008656/0.08905, allocations: 3.928 MB / 0.8209 GB, free: 6.742 MB / 0.7761 GB Notification: Performance of [SIM] Simplify 2: time 0.001222/0.09027, allocations: 0.6416 MB / 0.8216 GB, free: 6.07 MB / 0.7761 GB Notification: Performance of [SIM] Remove Stream: time 0.0007393/0.09101, allocations: 383.9 kB / 0.8219 GB, free: 5.66 MB / 0.7761 GB Notification: Performance of [SIM] Detect States: time 0.001708/0.09272, allocations: 1.152 MB / 0.823 GB, free: 4.441 MB / 0.7761 GB Notification: Performance of [SIM] Events: time 0.0006759/0.0934, allocations: 407.8 kB / 0.8234 GB, free: 4.039 MB / 0.7761 GB Notification: Performance of [SIM] Partitioning: time 0.002826/0.09622, allocations: 1.444 MB / 0.8248 GB, free: 2.531 MB / 0.7761 GB Notification: Performance of [SIM] Causalize: time 0.003797/0.1, allocations: 1.853 MB / 0.8267 GB, free: 0.6445 MB / 0.7761 GB Notification: Performance of [SIM] After Index Reduction Inline: time 0.005178/0.1052, allocations: 3.489 MB / 0.8301 GB, free: 13.15 MB / 0.7917 GB Notification: Performance of [INI] Simplify: time 0.006518/0.1117, allocations: 2.985 MB / 0.833 GB, free: 10.09 MB / 0.7917 GB Notification: Performance of [INI] Inline: time 0.01275/0.1245, allocations: 7.273 MB / 0.8401 GB, free: 2.801 MB / 0.7917 GB Notification: Performance of [INI] Partitioning: time 0.0003156/0.1248, allocations: 87.94 kB / 0.8402 GB, free: 2.695 MB / 0.7917 GB Notification: Performance of [INI] Cleanup: time 0.002752/0.1275, allocations: 1.701 MB / 0.8418 GB, free: 0.9805 MB / 0.7917 GB Warning: NBResolveSingularities.balanceInitialization reports an overdetermined initialization! Checking for consistency is not yet supported, following equations had to be removed: [RECD] (9) sha.gas[1].gas = sha.glaSys.gas[1]; ($RES_SIM_386) slice: {8} [RECD] (9) nonSha.gas[1].gas = nonSha.glaSys.gas[1]; ($RES_SIM_385) slice: {8} Error: Internal error NBSorting.tarjan failed to sort system: System Variables (214/328) **************************** (1|1) [ALGB] (1) Real sha.JOut_a (min = 0.0, nominal = 419.0) (2|2) [ALGB] (1) Real sha.JOut_b (min = 0.0, nominal = 419.0) (3|3) [ALGB] (2) Real[2] sha.glass.JIn_a (start = {5.6703744191844314e-8 * sha.glass[$glass1].A * 0.8 * 7.385154648771004e9 for $glass1 in 1:2}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (4|5) [ALGB] (2) Real[2] sha.glass.JIn_b (start = {5.6703744191844314e-8 * sha.glass[$glass1].A * 0.8 * 7.385154648771004e9 for $glass1 in 1:2}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (5|7) [ALGB] (2) Real[2] sha.glass.JOut_a (start = {0.0, 335.01273601689667 * sha.glass[1].A}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (6|9) [ALGB] (2) Real[2] sha.glass.JOut_b (start = {335.01273601689667 * sha.glass[2].A, 0.0}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (7|11) [ALGB] (2) Real[2] sha.glass.u (8|13) [ALGB] (2) Real[2] sha.glass.port_a.T (start = {293.15 for $f2 in 1:2}, min = {0.0 for $f3 in 1:2}, nominal = {300.0 for $f1 in 1:2}) (9|15) [ALGB] (2) flow Real[2] sha.glass.port_a.Q_flow (10|17) [ALGB] (2) Real[2] sha.glass.port_b.T (start = {293.15 for $f2 in 1:2}, min = {0.0 for $f3 in 1:2}, nominal = {300.0 for $f1 in 1:2}) (11|19) [ALGB] (2) flow Real[2] sha.glass.port_b.Q_flow (12|21) [ALGB] (2) protected Real[2] sha.glass.T4_a (start = {7.385154648771004e9 for $f2 in 1:2}, min = {1e8 for $f3 in 1:2}, nominal = {1e10 for $f1 in 1:2}) (13|23) [ALGB] (2) protected Real[2] sha.glass.T4_b (start = {7.385154648771004e9 for $f2 in 1:2}, min = {1e8 for $f3 in 1:2}, nominal = {1e10 for $f1 in 1:2}) (14|25) [ALGB] (2) protected Real[2] sha.glass.E_a (min = {0.0 for $f2 in 1:2}, nominal = {100.0 for $f1 in 1:2}) (15|27) [ALGB] (2) protected Real[2] sha.glass.E_b (min = {0.0 for $f2 in 1:2}, nominal = {100.0 for $f1 in 1:2}) (16|29) [ALGB] (1) Real[1] sha.gas.Q_flow (17|30) [ALGB] (1) Real[1] sha.gas.dT (start = {0.0 for $f1 in 1:1}) (18|31) [ALGB] (1) Real[1] sha.gas.port_a.T (start = {293.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (19|32) [ALGB] (1) flow Real[1] sha.gas.port_a.Q_flow (20|33) [ALGB] (1) Real[1] sha.gas.port_b.T (start = {293.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (21|34) [ALGB] (1) flow Real[1] sha.gas.port_b.Q_flow (22|35) [ALGB] (1) Real[1] sha.gas.u (23|36) [ALGB] (1) Real[1] sha.gas.hCon (start = {3.0 for $f1 in 1:1}, min = {0.0 for $f2 in 1:1}) (24|37) [ALGB] (1) Real[1] sha.gas.q_flow (25|38) [ALGB] (1) Real[1] sha.gas.Nu (min = {0.0 for $f1 in 1:1}) (26|39) [ALGB] (1) Real[1] sha.gas.Ra (min = {0.0 for $f1 in 1:1}) (27|40) [ALGB] (1) protected Real[1] sha.gas.T_a (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (28|41) [ALGB] (1) protected Real[1] sha.gas.T_b (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (29|42) [ALGB] (1) protected Real[1] sha.gas.T_m (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (30|43) [ALGB] (1) protected Real[1] sha.gas.deltaNu = {0.1 for $f1 in 1:1} (min = {0.01 for $f2 in 1:1}) (31|44) [ALGB] (1) protected Real[1] sha.gas.deltaRa = {100.0 for $f1 in 1:1} (min = {0.01 for $f2 in 1:1}) (32|45) [ALGB] (2) Real[2] sha.QAbs_flow (33|47) [ALGB] (1) Real uSha.y (min = -1.000002000004e-6, max = 1.0000010000019999) (34|48) [ALGB] (1) flow Real TAirOut.port.Q_flow (35|49) [ALGB] (1) flow Real TAirRoo.port.Q_flow (36|50) [ALGB] (1) Real radIn.JIn (start = 5.6703744191844314e-8 * radIn.A * 0.8 * 7.385154648771004e9, min = 0.0, nominal = 419.0) (37|51) [ALGB] (1) Real radIn.JOut (start = 5.6703744191844314e-8 * radIn.A * 0.8 * 7.385154648771004e9, min = 0.0, nominal = 419.0) (38|52) [ALGB] (1) protected Real radIn.T4 (start = 7.385154648771004e9, min = 1e8, nominal = 1e10) (39|53) [ALGB] (1) flow Real TRadRoo.port.Q_flow (40|54) [ALGB] (1) Real radShaInt.JOut_1 (start = 335.01273601689667 * sha.A, min = 0.0, nominal = 419.0) (41|55) [ALGB] (1) Real radShaInt.JOut_2 (start = 335.01273601689667 * nonSha.A, min = 0.0, nominal = 419.0) (42|56) [ALGB] (1) Real nonSha.JOut_a (min = 0.0, nominal = 419.0) (43|57) [ALGB] (1) Real nonSha.JOut_b (min = 0.0, nominal = 419.0) (44|58) [ALGB] (2) Real[2] nonSha.glass.JIn_a (start = {5.6703744191844314e-8 * nonSha.glass[$glass1].A * 0.8 * 7.385154648771004e9 for $glass1 in 1:2}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (45|60) [ALGB] (2) Real[2] nonSha.glass.JIn_b (start = {5.6703744191844314e-8 * nonSha.glass[$glass1].A * 0.8 * 7.385154648771004e9 for $glass1 in 1:2}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (46|62) [ALGB] (2) Real[2] nonSha.glass.JOut_a (start = {0.0, 335.01273601689667 * nonSha.glass[1].A}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (47|64) [ALGB] (2) Real[2] nonSha.glass.JOut_b (start = {335.01273601689667 * nonSha.glass[2].A, 0.0}, min = {0.0 for $f2 in 1:2}, nominal = {419.0 for $f1 in 1:2}) (48|66) [ALGB] (2) Real[2] nonSha.glass.u (49|68) [ALGB] (2) Real[2] nonSha.glass.port_a.T (start = {293.15 for $f2 in 1:2}, min = {0.0 for $f3 in 1:2}, nominal = {300.0 for $f1 in 1:2}) (50|70) [ALGB] (2) flow Real[2] nonSha.glass.port_a.Q_flow (51|72) [ALGB] (2) Real[2] nonSha.glass.port_b.T (start = {293.15 for $f2 in 1:2}, min = {0.0 for $f3 in 1:2}, nominal = {300.0 for $f1 in 1:2}) (52|74) [ALGB] (2) flow Real[2] nonSha.glass.port_b.Q_flow (53|76) [ALGB] (2) protected Real[2] nonSha.glass.T4_a (start = {7.385154648771004e9 for $f2 in 1:2}, min = {1e8 for $f3 in 1:2}, nominal = {1e10 for $f1 in 1:2}) (54|78) [ALGB] (2) protected Real[2] nonSha.glass.T4_b (start = {7.385154648771004e9 for $f2 in 1:2}, min = {1e8 for $f3 in 1:2}, nominal = {1e10 for $f1 in 1:2}) (55|80) [ALGB] (2) protected Real[2] nonSha.glass.E_a (min = {0.0 for $f2 in 1:2}, nominal = {100.0 for $f1 in 1:2}) (56|82) [ALGB] (2) protected Real[2] nonSha.glass.E_b (min = {0.0 for $f2 in 1:2}, nominal = {100.0 for $f1 in 1:2}) (57|84) [ALGB] (1) Real[1] nonSha.gas.Q_flow (58|85) [ALGB] (1) Real[1] nonSha.gas.dT (start = {0.0 for $f1 in 1:1}) (59|86) [ALGB] (1) Real[1] nonSha.gas.port_a.T (start = {293.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (60|87) [ALGB] (1) flow Real[1] nonSha.gas.port_a.Q_flow (61|88) [ALGB] (1) Real[1] nonSha.gas.port_b.T (start = {293.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (62|89) [ALGB] (1) flow Real[1] nonSha.gas.port_b.Q_flow (63|90) [ALGB] (1) Real[1] nonSha.gas.u (64|91) [ALGB] (1) Real[1] nonSha.gas.hCon (start = {3.0 for $f1 in 1:1}, min = {0.0 for $f2 in 1:1}) (65|92) [ALGB] (1) Real[1] nonSha.gas.q_flow (66|93) [ALGB] (1) Real[1] nonSha.gas.Nu (min = {0.0 for $f1 in 1:1}) (67|94) [ALGB] (1) Real[1] nonSha.gas.Ra (min = {0.0 for $f1 in 1:1}) (68|95) [ALGB] (1) protected Real[1] nonSha.gas.T_a (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (69|96) [ALGB] (1) protected Real[1] nonSha.gas.T_b (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (70|97) [ALGB] (1) protected Real[1] nonSha.gas.T_m (start = {288.15 for $f2 in 1:1}, min = {0.0 for $f3 in 1:1}, nominal = {300.0 for $f1 in 1:1}) (71|98) [ALGB] (1) protected Real[1] nonSha.gas.deltaNu = {0.1 for $f1 in 1:1} (min = {0.01 for $f2 in 1:1}) (72|99) [ALGB] (1) protected Real[1] nonSha.gas.deltaRa = {100.0 for $f1 in 1:1} (min = {0.01 for $f2 in 1:1}) (73|100) [ALGB] (1) Real nonSha.glass_a.T (start = 288.15, min = 0.0, nominal = 300.0) (74|101) [ALGB] (1) Real nonSha.glass_b.T (start = 288.15, min = 0.0, nominal = 300.0) (75|102) [ALGB] (2) Real[2] nonSha.QAbs_flow (76|104) [ALGB] (1) Real radShaOut.JOut_1 (start = 335.01273601689667 * sha.A, min = 0.0, nominal = 419.0) (77|105) [ALGB] (1) Real radShaOut.JOut_2 (start = 335.01273601689667 * nonSha.A, min = 0.0, nominal = 419.0) (78|106) [ALGB] (1) Real radOut.TRad4 (79|107) [ALGB] (1) Real radOut.TRad (start = 288.15, min = 0.0, nominal = 300.0) (80|108) [ALGB] (1) Real radOut.JOut (min = 0.0, nominal = 419.0) (81|109) [ALGB] (1) Real conRooSha.Q_flow (82|110) [ALGB] (1) Real conRooSha.dT (83|111) [ALGB] (1) Real conRooSha.solid.T (start = 288.15, min = 0.0, nominal = 300.0) (84|112) [ALGB] (1) Real conOutSha.Q_flow (85|113) [ALGB] (1) Real conOutSha.dT (start = 0.0) (86|114) [ALGB] (1) Real conOutSha.Gc (87|115) [ALGB] (1) Real conOutSha.solid.T (start = 288.15, min = 0.0, nominal = 300.0) (88|116) [ALGB] (1) Real conOutNonSha1.Q_flow (89|117) [ALGB] (1) Real conOutNonSha1.dT (start = 0.0) (90|118) [ALGB] (1) Real conOutNonSha1.Gc (91|119) [ALGB] (1) Real conRooNonSha.Q_flow (92|120) [ALGB] (1) Real conRooNonSha.dT (93|121) [ALGB] (2) Real[2] sumJ.u (94|123) [ALGB] (1) Real $FUN_1 (min = 0.0) (95|124) [ALGB] (1) Real $FUN_2 (start = Buildings.HeatTransfer.Data.Gases.specificHeatCapacity(sha.gas[1].gas, sha.gas[1].T_m)) (96|125) [ALGB] (1) Real $FUN_3 (start = Buildings.HeatTransfer.Data.Gases.dynamicViscosity(sha.gas[1].gas, sha.gas[1].T_m), min = 0.0) (97|126) [ALGB] (1) Real $FUN_4 (start = Buildings.HeatTransfer.Data.Gases.thermalConductivity(sha.gas[1].gas, sha.gas[1].T_m)) (98|127) [ALGB] (1) Real $FUN_5 (99|128) [ALGB] (1) Real $FUN_8 (100|129) [ALGB] (1) Real $FUN_7 (101|130) [ALGB] (1) Real $FUN_6 (102|131) [ALGB] (1) Real $FUN_9 (min = 0.0) (103|132) [ALGB] (1) Real $FUN_10 (start = Buildings.HeatTransfer.Data.Gases.specificHeatCapacity(nonSha.gas[1].gas, nonSha.gas[1].T_m)) (104|133) [ALGB] (1) Real $FUN_11 (start = Buildings.HeatTransfer.Data.Gases.dynamicViscosity(nonSha.gas[1].gas, nonSha.gas[1].T_m), min = 0.0) (105|134) [ALGB] (1) Real $FUN_12 (start = Buildings.HeatTransfer.Data.Gases.thermalConductivity(nonSha.gas[1].gas, nonSha.gas[1].T_m)) (106|135) [ALGB] (1) Real $FUN_13 (107|136) [ALGB] (1) Real $FUN_16 (108|137) [ALGB] (1) Real $FUN_15 (109|138) [ALGB] (1) Real $FUN_14 (110|139) [DISC] (1) Boolean $SEV_1 (111|140) [DISC] (1) Boolean $SEV_0 (112|141) [STRT] (1) Real $START.$FUN_12 (113|142) [STRT] (1) Real $START.$FUN_11 (114|143) [STRT] (1) Real $START.$FUN_10 (115|144) [STRT] (1) Real $START.$FUN_4 (116|145) [STRT] (1) Real $START.$FUN_3 (117|146) [STRT] (1) Real $START.$FUN_2 (118|147) [STRT] (1) Real $START.radShaOut.JOut_2 (119|148) [STRT] (1) Real $START.radShaOut.JOut_1 (120|149) [STRT] (2) Real[2] $START.nonSha.glass.JOut_b (121|151) [STRT] (2) Real[2] $START.nonSha.glass.JOut_a (122|153) [STRT] (2) Real[2] $START.nonSha.glass.JIn_b (123|155) [STRT] (2) Real[2] $START.nonSha.glass.JIn_a (124|157) [STRT] (1) Real $START.radShaInt.JOut_2 (125|158) [STRT] (1) Real $START.radShaInt.JOut_1 (126|159) [STRT] (1) Real $START.radIn.JOut (127|160) [STRT] (1) Real $START.radIn.JIn (128|161) [STRT] (2) Real[2] $START.sha.glass.JOut_b (129|163) [STRT] (2) Real[2] $START.sha.glass.JOut_a (130|165) [STRT] (2) Real[2] $START.sha.glass.JIn_b (131|167) [STRT] (2) Real[2] $START.sha.glass.JIn_a (132|169) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.x = {nonSha.glaSys.gas[1].x} (fixed = {true for $i89 in 1:1}) (133|170) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.a_k = {nonSha.glaSys.gas[1].a_k} (fixed = {true for $i88 in 1:1}) (134|171) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.b_k = {nonSha.glaSys.gas[1].b_k} (fixed = {true for $i87 in 1:1}) (135|172) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.a_mu = {nonSha.glaSys.gas[1].a_mu} (fixed = {true for $i86 in 1:1}, min = {0.0 for $f6 in 1:1}) (136|173) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.b_mu = {nonSha.glaSys.gas[1].b_mu} (fixed = {true for $i85 in 1:1}) (137|174) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.a_c = {nonSha.glaSys.gas[1].a_c} (fixed = {true for $i84 in 1:1}) (138|175) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.b_c = {nonSha.glaSys.gas[1].b_c} (fixed = {true for $i83 in 1:1}) (139|176) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.MM = {nonSha.glaSys.gas[1].MM} (fixed = {true for $i82 in 1:1}, min = {0.0 for $f13 in 1:1}) (140|177) [PRMT] (1) final parameter Real[1] nonSha.gas.gas.P0 = {nonSha.glaSys.gas[1].P0} (fixed = {true for $i81 in 1:1}) (141|178) [PRMT] (1) parameter Boolean nonSha.glaSys.haveExteriorShade = true (fixed = true) (142|179) [PRMT] (1) parameter Boolean nonSha.glaSys.haveInteriorShade = true (fixed = true) (143|180) [RECD] (16) parameter Buildings.HeatTransfer.Data.Glasses.Generic[2] nonSha.glaSys.glass = glaSys.glass (x, k, tauSol, rhoSol_a, rhoSol_b, tauIR, absIR_a, absIR_b) (144|196) [RECD] (9) parameter Buildings.HeatTransfer.Data.Gases.Generic[1] nonSha.glaSys.gas = {Buildings.HeatTransfer.Data.Gases.Air(0.0127, 0.002873, 7.76e-5, 3.723e-6, 4.94e-8, 1002.737, 0.012324, 0.02897, 101325.0)} (x, a_k, b_k, a_mu(min = {0.0 for $f28 in 1:1}), b_mu, a_c, b_c, MM(min = {0.0 for $f35 in 1:1}), P0) (145|205) [RECD] (8) parameter Buildings.HeatTransfer.Data.Shades.Generic nonSha.glaSys.shade = glaSys.shade (tauSol_a, tauSol_b, rhoSol_a, rhoSol_b, absIR_a, absIR_b, tauIR_a, tauIR_b) (146|213) [PRMT] (1) parameter Real nonSha.glaSys.UFra = glaSys.UFra (fixed = true) (147|214) [PRMT] (1) parameter Real nonSha.glaSys.absIRFra = glaSys.absIRFra (fixed = true) (148|215) [PRMT] (1) parameter Real nonSha.glaSys.absSolFra = glaSys.absSolFra (fixed = true) (149|216) [PRMT] (1) final parameter Boolean nonSha.glaSys.haveShade = true (fixed = true) (150|217) [PRMT] (1) final parameter Boolean nonSha.glaSys.haveControllableWindow = false (fixed = true) (151|218) [PRMT] (1) final parameter Real[1] sha.gas.gas.x = {sha.glaSys.gas[1].x} (fixed = {true for $i143 in 1:1}) (152|219) [PRMT] (1) final parameter Real[1] sha.gas.gas.a_k = {sha.glaSys.gas[1].a_k} (fixed = {true for $i142 in 1:1}) (153|220) [PRMT] (1) final parameter Real[1] sha.gas.gas.b_k = {sha.glaSys.gas[1].b_k} (fixed = {true for $i141 in 1:1}) (154|221) [PRMT] (1) final parameter Real[1] sha.gas.gas.a_mu = {sha.glaSys.gas[1].a_mu} (fixed = {true for $i140 in 1:1}, min = {0.0 for $f6 in 1:1}) (155|222) [PRMT] (1) final parameter Real[1] sha.gas.gas.b_mu = {sha.glaSys.gas[1].b_mu} (fixed = {true for $i139 in 1:1}) (156|223) [PRMT] (1) final parameter Real[1] sha.gas.gas.a_c = {sha.glaSys.gas[1].a_c} (fixed = {true for $i138 in 1:1}) (157|224) [PRMT] (1) final parameter Real[1] sha.gas.gas.b_c = {sha.glaSys.gas[1].b_c} (fixed = {true for $i137 in 1:1}) (158|225) [PRMT] (1) final parameter Real[1] sha.gas.gas.MM = {sha.glaSys.gas[1].MM} (fixed = {true for $i136 in 1:1}, min = {0.0 for $f13 in 1:1}) (159|226) [PRMT] (1) final parameter Real[1] sha.gas.gas.P0 = {sha.glaSys.gas[1].P0} (fixed = {true for $i135 in 1:1}) (160|227) [PRMT] (1) parameter Boolean sha.glaSys.haveExteriorShade = true (fixed = true) (161|228) [PRMT] (1) parameter Boolean sha.glaSys.haveInteriorShade = true (fixed = true) (162|229) [RECD] (16) parameter Buildings.HeatTransfer.Data.Glasses.Generic[2] sha.glaSys.glass = glaSys.glass (x, k, tauSol, rhoSol_a, rhoSol_b, tauIR, absIR_a, absIR_b) (163|245) [RECD] (9) parameter Buildings.HeatTransfer.Data.Gases.Generic[1] sha.glaSys.gas = {Buildings.HeatTransfer.Data.Gases.Air(0.0127, 0.002873, 7.76e-5, 3.723e-6, 4.94e-8, 1002.737, 0.012324, 0.02897, 101325.0)} (x, a_k, b_k, a_mu(min = {0.0 for $f28 in 1:1}), b_mu, a_c, b_c, MM(min = {0.0 for $f35 in 1:1}), P0) (164|254) [RECD] (8) parameter Buildings.HeatTransfer.Data.Shades.Generic sha.glaSys.shade = glaSys.shade (tauSol_a, tauSol_b, rhoSol_a, rhoSol_b, absIR_a, absIR_b, tauIR_a, tauIR_b) (165|262) [PRMT] (1) parameter Real sha.glaSys.UFra = glaSys.UFra (fixed = true) (166|263) [PRMT] (1) parameter Real sha.glaSys.absIRFra = glaSys.absIRFra (fixed = true) (167|264) [PRMT] (1) parameter Real sha.glaSys.absSolFra = glaSys.absSolFra (fixed = true) (168|265) [PRMT] (1) final parameter Boolean sha.glaSys.haveShade = true (fixed = true) (169|266) [PRMT] (1) final parameter Boolean sha.glaSys.haveControllableWindow = false (fixed = true) (170|267) [PRMT] (2) Real[2] QAbs.y = QAbs.k (fixed = {true for $i177 in 1:2}, start = QAbs.k) (171|269) [PRMT] (1) Real $FUN_34 (fixed = false) (172|270) [PRMT] (1) Real $FUN_33 (fixed = false) (173|271) [PRMT] (1) Real $FUN_30 (fixed = false) (174|272) [PRMT] (1) Real $FUN_31 (fixed = false) (175|273) [PRMT] (1) Real $FUN_32 (fixed = false) (176|274) [PRMT] (1) Real $FUN_29 (fixed = false) (177|275) [PRMT] (1) Real $FUN_28 (fixed = false) (178|276) [PRMT] (1) Real $FUN_27 (fixed = false, min = 0.0) (179|277) [PRMT] (1) Real $FUN_26 (fixed = false) (180|278) [PRMT] (1) Real $FUN_25 (fixed = false, min = 0.0) (181|279) [PRMT] (1) Real $FUN_22 (fixed = false) (182|280) [PRMT] (1) Real $FUN_23 (fixed = false) (183|281) [PRMT] (1) Real $FUN_24 (fixed = false) (184|282) [PRMT] (1) Real $FUN_21 (fixed = false) (185|283) [PRMT] (1) Real $FUN_20 (fixed = false) (186|284) [PRMT] (1) Real $FUN_19 (fixed = false, min = 0.0) (187|285) [PRMT] (1) Real $FUN_18 (fixed = false) (188|286) [PRMT] (1) Real $FUN_17 (fixed = false, min = 0.0) (189|287) [PRMT] (1) protected parameter Real[1] nonSha.gas.Ra0 (fixed = {false for $f1 in 1:1}, min = {0.0 for $f2 in 1:1}) (190|288) [PRMT] (1) protected parameter Real[1] nonSha.gas.Nu0 (fixed = {false for $f1 in 1:1}, min = {0.0 for $f2 in 1:1}) (191|289) [PRMT] (1) protected parameter Real[1] nonSha.gas.hCon0 (fixed = {false for $f1 in 1:1}) (192|290) [PRMT] (1) parameter Real[1] nonSha.gas.h = {$FUN_34} (fixed = {true for $i79 in 1:1}, min = {0.0 for $f1 in 1:1}) (193|291) [PRMT] (1) final parameter Real[1] nonSha.gas.A = {nonSha.A for $f1 in 1:1} (fixed = {true for $i80 in 1:1}) (194|292) [PRMT] (2) protected final parameter Real[2] nonSha.glass.R = {nonSha.glass[$glass1].x / (nonSha.glass[$glass1].A * 2.0 * nonSha.glass[$glass1].k) for $glass1 in 1:2} (fixed = {true for $i90 in 1:2}) (195|294) [PRMT] (2) final parameter Real[2] nonSha.glass.k = {nonSha.glaSys.glass[$glass1].k for $glass1 in 1:2} (fixed = {true for $i91 in 1:2}) (196|296) [PRMT] (2) final parameter Real[2] nonSha.glass.x = {nonSha.glaSys.glass[$glass1].x for $glass1 in 1:2} (fixed = {true for $i92 in 1:2}) (197|298) [PRMT] (2) final parameter Real[2] nonSha.glass.tauIR = {nonSha.glaSys.glass[$glass1].tauIR for $glass1 in 1:2} (fixed = {true for $i97 in 1:2}) (198|300) [PRMT] (2) final parameter Real[2] nonSha.glass.rhoIR_b = {1.0 - (nonSha.glass[$glass1].tauIR + nonSha.glass[$glass1].absIR_b) for $glass1 in 1:2} (fixed = {true for $i98 in 1:2}) (199|302) [PRMT] (2) final parameter Real[2] nonSha.glass.rhoIR_a = {1.0 - (nonSha.glass[$glass1].tauIR + nonSha.glass[$glass1].absIR_a) for $glass1 in 1:2} (fixed = {true for $i99 in 1:2}) (200|304) [PRMT] (2) final parameter Real[2] nonSha.glass.absIR_b = {nonSha.glaSys.glass[$glass1].absIR_b for $glass1 in 1:2} (fixed = {true for $i100 in 1:2}) (201|306) [PRMT] (2) final parameter Real[2] nonSha.glass.absIR_a = {nonSha.glaSys.glass[$glass1].absIR_a for $glass1 in 1:2} (fixed = {true for $i101 in 1:2}) (202|308) [PRMT] (1) protected parameter Real[1] sha.gas.Ra0 (fixed = {false for $f1 in 1:1}, min = {0.0 for $f2 in 1:1}) (203|309) [PRMT] (1) protected parameter Real[1] sha.gas.Nu0 (fixed = {false for $f1 in 1:1}, min = {0.0 for $f2 in 1:1}) (204|310) [PRMT] (1) protected parameter Real[1] sha.gas.hCon0 (fixed = {false for $f1 in 1:1}) (205|311) [PRMT] (1) parameter Real[1] sha.gas.h = {$FUN_33} (fixed = {true for $i133 in 1:1}, min = {0.0 for $f1 in 1:1}) (206|312) [PRMT] (1) final parameter Real[1] sha.gas.A = {sha.A for $f1 in 1:1} (fixed = {true for $i134 in 1:1}) (207|313) [PRMT] (2) protected final parameter Real[2] sha.glass.R = {sha.glass[$glass1].x / (sha.glass[$glass1].A * 2.0 * sha.glass[$glass1].k) for $glass1 in 1:2} (fixed = {true for $i144 in 1:2}) (208|315) [PRMT] (2) final parameter Real[2] sha.glass.k = {sha.glaSys.glass[$glass1].k for $glass1 in 1:2} (fixed = {true for $i145 in 1:2}) (209|317) [PRMT] (2) final parameter Real[2] sha.glass.x = {sha.glaSys.glass[$glass1].x for $glass1 in 1:2} (fixed = {true for $i146 in 1:2}) (210|319) [PRMT] (2) final parameter Real[2] sha.glass.tauIR = {sha.glaSys.glass[$glass1].tauIR for $glass1 in 1:2} (fixed = {true for $i151 in 1:2}) (211|321) [PRMT] (2) final parameter Real[2] sha.glass.rhoIR_b = {1.0 - (sha.glass[$glass1].tauIR + sha.glass[$glass1].absIR_b) for $glass1 in 1:2} (fixed = {true for $i152 in 1:2}) (212|323) [PRMT] (2) final parameter Real[2] sha.glass.rhoIR_a = {1.0 - (sha.glass[$glass1].tauIR + sha.glass[$glass1].absIR_a) for $glass1 in 1:2} (fixed = {true for $i153 in 1:2}) (213|325) [PRMT] (2) final parameter Real[2] sha.glass.absIR_b = {sha.glaSys.glass[$glass1].absIR_b for $glass1 in 1:2} (fixed = {true for $i154 in 1:2}) (214|327) [PRMT] (2) final parameter Real[2] sha.glass.absIR_a = {sha.glaSys.glass[$glass1].absIR_a for $glass1 in 1:2} (fixed = {true for $i155 in 1:2}) System Equations (192/312) **************************** (1|1) [TUPL] (3) (nonSha.gas[1].Nu0, nonSha.gas[1].hCon0) = ($FUN_30, $FUN_31, $FUN_32); ($RES_SIM_0) (2|4) [SCAL] (1) nonSha.gas[1].Ra0 = $FUN_29; ($RES_SIM_1) (3|5) [ALGO] (0) ($RES_SIM_2) (3|5) [----] assert(noEvent(nonSha.gas[1].gas.x > 0.0), \"The gas thickness must be non-negative. Obtained gas.x = \" + String(nonSha.gas[1].gas.x, 6, 0, true) + \". Check the parameter for the gas thickness of the window model.\", AssertionLevel.error); (4|5) [ALGO] (0) ($RES_SIM_3) (4|5) [----] for $i30 in 1:2 loop (4|5) [----] assert(noEvent(abs(1.0 - (nonSha.glass[$i30].tauIR + nonSha.glass[$i30].rhoIR_b + nonSha.glass[$i30].absIR_b)) < 1e-8), \"Absorptivity, reflectivity and transmissivity of surface b do not add up to one. Check parameters.\", AssertionLevel.error); (4|5) [----] end for; (5|5) [ALGO] (0) ($RES_SIM_4) (5|5) [----] for $i31 in 1:2 loop (5|5) [----] assert(noEvent(abs(1.0 - (nonSha.glass[$i31].tauIR + nonSha.glass[$i31].rhoIR_a + nonSha.glass[$i31].absIR_a)) < 1e-8), \"Absorptivity, reflectivity and transmissivity of surface a do not add up to one. Check parameters.\", AssertionLevel.error); (5|5) [----] end for; (6|5) [ALGO] (0) ($RES_SIM_5) (6|5) [----] assert(noEvent(abs(1.0 - (radIn.tauIR + radIn.rhoIR + radIn.absIR)) < 1e-8), \"Absorptivity, reflectivity and transmissivity do not add up to one. Check parameters.\", AssertionLevel.error); (7|5) [TUPL] (3) (sha.gas[1].Nu0, sha.gas[1].hCon0) = ($FUN_22, $FUN_23, $FUN_24); ($RES_SIM_6) (8|8) [SCAL] (1) sha.gas[1].Ra0 = $FUN_21; ($RES_SIM_7) (9|9) [ALGO] (0) ($RES_SIM_8) (9|9) [----] assert(noEvent(sha.gas[1].gas.x > 0.0), \"The gas thickness must be non-negative. Obtained gas.x = \" + String(sha.gas[1].gas.x, 6, 0, true) + \". Check the parameter for the gas thickness of the window model.\", AssertionLevel.error); (10|9) [ALGO] (0) ($RES_SIM_9) (10|9) [----] for $i7 in 1:2 loop (10|9) [----] assert(noEvent(abs(1.0 - (sha.glass[$i7].tauIR + sha.glass[$i7].rhoIR_b + sha.glass[$i7].absIR_b)) < 1e-8), \"Absorptivity, reflectivity and transmissivity of surface b do not add up to one. Check parameters.\", AssertionLevel.error); (10|9) [----] end for; (11|9) [ALGO] (0) ($RES_SIM_10) (11|9) [----] for $i8 in 1:2 loop (11|9) [----] assert(noEvent(abs(1.0 - (sha.glass[$i8].tauIR + sha.glass[$i8].rhoIR_a + sha.glass[$i8].absIR_a)) < 1e-8), \"Absorptivity, reflectivity and transmissivity of surface a do not add up to one. Check parameters.\", AssertionLevel.error); (11|9) [----] end for; (12|9) [SCAL] (1) radIn.JIn = sumJ.k * sumJ.u; ($RES_SIM_11) (13|10) [SCAL] (1) conOutNonSha1.Gc = hA.k * (1.0 - (1e-6 + 0.999998 * uSha.y)); ($RES_SIM_16) (14|11) [SCAL] (1) conOutSha.Gc = hA.k * (1e-6 + 0.999998 * uSha.y); ($RES_SIM_17) (15|12) [SCAL] (1) conRooNonSha.Q_flow = conOutNonSha1.Gc * conRooNonSha.dT; ($RES_SIM_19) (16|13) [SCAL] (1) conRooNonSha.dT = nonSha.glass_b.T - TRoo.k; ($RES_SIM_22) (17|14) [SCAL] (1) conOutNonSha1.Q_flow = conOutNonSha1.Gc * conOutNonSha1.dT; ($RES_SIM_23) (18|15) [SCAL] (1) conOutNonSha1.dT = nonSha.glass_a.T - TOut.k; ($RES_SIM_26) (19|16) [SCAL] (1) conOutSha.Q_flow = conOutSha.Gc * conOutSha.dT; ($RES_SIM_27) (20|17) [SCAL] (1) conOutSha.dT = conOutSha.solid.T - TOut.k; ($RES_SIM_30) (21|18) [SCAL] (1) conRooSha.Q_flow = conOutSha.Gc * conRooSha.dT; ($RES_SIM_31) (22|19) [SCAL] (1) conRooSha.dT = conRooSha.solid.T - TRoo.k; ($RES_SIM_34) (23|20) [SCAL] (1) radOut.TRad = radOut.TRad4 ^ 0.25; ($RES_SIM_35) (24|21) [SCAL] (1) radOut.JOut = 5.6703744191844314e-8 * radOut.A * radOut.TRad4; ($RES_SIM_36) (25|22) [SCAL] (1) radOut.TRad4 = radOut.vieFacSky * TOut.k ^ 4.0 + (1.0 - radOut.vieFacSky) * TOut.k ^ 4.0; ($RES_SIM_37) (26|23) [SCAL] (1) radShaOut.JOut_2 = (1.0 - (1e-6 + 0.999998 * uSha.y)) * radOut.JOut; ($RES_SIM_38) (27|24) [SCAL] (1) radShaOut.JOut_1 = (1e-6 + 0.999998 * uSha.y) * radOut.JOut; ($RES_SIM_39) (28|25) [SCAL] (1) nonSha.gas[1].port_b.Q_flow = -nonSha.gas[1].Q_flow; ($RES_SIM_40) (29|26) [SCAL] (1) nonSha.gas[1].port_a.Q_flow = nonSha.gas[1].Q_flow; ($RES_SIM_41) (30|27) [SCAL] (1) nonSha.gas[1].dT = nonSha.gas[1].port_a.T - nonSha.gas[1].port_b.T; ($RES_SIM_42) (31|28) [SCAL] (1) nonSha.gas[1].Q_flow = nonSha.gas[1].A * nonSha.gas[1].u * homotopy(nonSha.gas[1].q_flow, nonSha.gas[1].hCon0 * nonSha.gas[1].dT); ($RES_SIM_43) (32|29) [SCAL] (1) nonSha.gas[1].Ra = $FUN_13; ($RES_SIM_45) (33|30) [SCAL] (1) nonSha.gas[1].T_m = 0.5 * (nonSha.gas[1].port_a.T + nonSha.gas[1].port_b.T); ($RES_SIM_46) (34|31) [SCAL] (1) nonSha.gas[1].T_b = nonSha.gas[1].port_b.T; ($RES_SIM_47) (35|32) [SCAL] (1) nonSha.gas[1].T_a = nonSha.gas[1].port_a.T; ($RES_SIM_48) (36|33) [FOR-] (2) ($RES_SIM_49) (36|33) [----] for $i1 in 1:2 loop (36|33) [----] [SCAL] (1) nonSha.glass[$i1].JOut_b = nonSha.glass[$i1].rhoIR_b * nonSha.glass[$i1].JIn_b + nonSha.glass[$i1].E_b + nonSha.glass[$i1].tauIR * nonSha.glass[$i1].JIn_a; ($RES_SIM_50) (36|33) [----] end for; (37|35) [FOR-] (2) ($RES_SIM_51) (37|35) [----] for $i1 in 1:2 loop (37|35) [----] [SCAL] (1) nonSha.glass[$i1].JOut_a = nonSha.glass[$i1].rhoIR_a * nonSha.glass[$i1].JIn_a + nonSha.glass[$i1].E_a + nonSha.glass[$i1].tauIR * nonSha.glass[$i1].JIn_b; ($RES_SIM_52) (37|35) [----] end for; (38|37) [FOR-] (2) ($RES_SIM_53) (38|37) [----] for $i1 in 1:2 loop (38|37) [----] [SCAL] (1) nonSha.glass[$i1].E_b = 5.6703744191844314e-8 * nonSha.glass[$i1].absIR_b * nonSha.glass[$i1].A * nonSha.glass[$i1].u * nonSha.glass[$i1].T4_b; ($RES_SIM_54) (38|37) [----] end for; (39|39) [FOR-] (2) ($RES_SIM_55) (39|39) [----] for $i1 in 1:2 loop (39|39) [----] [SCAL] (1) nonSha.glass[$i1].E_a = 5.6703744191844314e-8 * nonSha.glass[$i1].absIR_a * nonSha.glass[$i1].A * nonSha.glass[$i1].u * nonSha.glass[$i1].T4_a; ($RES_SIM_56) (39|39) [----] end for; (40|41) [FOR-] (2) ($RES_SIM_57) (40|41) [----] for $i1 in 1:2 loop (40|41) [----] [SCAL] (1) nonSha.glass[$i1].T4_a = homotopy(nonSha.glass[$i1].port_a.T ^ 4.0, 4.0 * nonSha.glass[$i1].T03 * nonSha.glass[$i1].port_a.T - 3.0 * nonSha.glass[$i1].T04); ($RES_SIM_58) (40|41) [----] end for; (41|43) [FOR-] (2) ($RES_SIM_59) (41|43) [----] for $i1 in 1:2 loop (41|43) [----] [SCAL] (1) nonSha.glass[$i1].T4_b = homotopy(nonSha.glass[$i1].port_b.T ^ 4.0, 4.0 * nonSha.glass[$i1].T03 * nonSha.glass[$i1].port_b.T - 3.0 * nonSha.glass[$i1].T04); ($RES_SIM_60) (41|43) [----] end for; (42|45) [FOR-] (2) ($RES_SIM_61) (42|45) [----] for $i1 in 1:2 loop (42|45) [----] [SCAL] (1) nonSha.glass[$i1].u * (nonSha.glass[$i1].port_b.T - nonSha.glass[$i1].port_a.T) = 2.0 * nonSha.glass[$i1].R * ((nonSha.glass[$i1].JOut_a + nonSha.glass[$i1].tauIR * (nonSha.glass[$i1].JIn_a - nonSha.glass[$i1].JIn_b)) - (nonSha.glass[$i1].JIn_a + 0.5 * nonSha.QAbs_flow[$i1] + nonSha.glass[$i1].port_a.Q_flow)); ($RES_SIM_62) (42|45) [----] end for; (43|47) [FOR-] (2) ($RES_SIM_63) (43|47) [----] for $i1 in 1:2 loop (43|47) [----] [SCAL] (1) 0.0 = (nonSha.glass[$i1].JIn_b + nonSha.glass[$i1].JIn_a + nonSha.QAbs_flow[$i1] + nonSha.glass[$i1].port_b.Q_flow + nonSha.glass[$i1].port_a.Q_flow) - (nonSha.glass[$i1].JOut_b + nonSha.glass[$i1].JOut_a); ($RES_SIM_64) (43|47) [----] end for; (44|49) [SCAL] (1) radShaInt.JOut_2 = (1.0 - (1e-6 + 0.999998 * uSha.y)) * radIn.JOut; ($RES_SIM_65) (45|50) [SCAL] (1) radShaInt.JOut_1 = (1e-6 + 0.999998 * uSha.y) * radIn.JOut; ($RES_SIM_66) (46|51) [SCAL] (1) 0.0 = radIn.JIn - (radIn.JOut + TRadRoo.port.Q_flow); ($RES_SIM_69) (47|52) [SCAL] (1) radIn.JOut = 5.6703744191844314e-8 * radIn.absIR * radIn.A * radIn.T4 + radIn.rhoIR * radIn.JIn; ($RES_SIM_70) (48|53) [SCAL] (1) radIn.T4 = TRoo.k ^ 4.0; ($RES_SIM_71) (49|54) [SCAL] (1) uSha.y = uSha.offset + (if $SEV_0 then 0.0 else if $SEV_1 then (uSha.height * (time - uSha.startTime)) / uSha.duration else uSha.height); ($RES_SIM_75) (50|55) [SCAL] (1) sha.gas[1].port_b.Q_flow = -sha.gas[1].Q_flow; ($RES_SIM_76) (51|56) [SCAL] (1) sha.gas[1].port_a.Q_flow = sha.gas[1].Q_flow; ($RES_SIM_77) (52|57) [SCAL] (1) sha.gas[1].dT = sha.gas[1].port_a.T - sha.gas[1].port_b.T; ($RES_SIM_78) (53|58) [SCAL] (1) sha.gas[1].Q_flow = sha.gas[1].A * sha.gas[1].u * homotopy(sha.gas[1].q_flow, sha.gas[1].hCon0 * sha.gas[1].dT); ($RES_SIM_79) (54|59) [SCAL] (1) sha.gas[1].Ra = $FUN_5; ($RES_SIM_81) (55|60) [SCAL] (1) sha.gas[1].T_m = 0.5 * (sha.gas[1].port_a.T + sha.gas[1].port_b.T); ($RES_SIM_82) (56|61) [SCAL] (1) sha.gas[1].T_b = sha.gas[1].port_b.T; ($RES_SIM_83) (57|62) [SCAL] (1) sha.gas[1].T_a = sha.gas[1].port_a.T; ($RES_SIM_84) (58|63) [FOR-] (2) ($RES_SIM_85) (58|63) [----] for $i1 in 1:2 loop (58|63) [----] [SCAL] (1) sha.glass[$i1].JOut_b = sha.glass[$i1].rhoIR_b * sha.glass[$i1].JIn_b + sha.glass[$i1].E_b + sha.glass[$i1].tauIR * sha.glass[$i1].JIn_a; ($RES_SIM_86) (58|63) [----] end for; (59|65) [FOR-] (2) ($RES_SIM_87) (59|65) [----] for $i1 in 1:2 loop (59|65) [----] [SCAL] (1) sha.glass[$i1].JOut_a = sha.glass[$i1].rhoIR_a * sha.glass[$i1].JIn_a + sha.glass[$i1].E_a + sha.glass[$i1].tauIR * sha.glass[$i1].JIn_b; ($RES_SIM_88) (59|65) [----] end for; (60|67) [FOR-] (2) ($RES_SIM_89) (60|67) [----] for $i1 in 1:2 loop (60|67) [----] [SCAL] (1) sha.glass[$i1].E_b = 5.6703744191844314e-8 * sha.glass[$i1].absIR_b * sha.glass[$i1].A * sha.glass[$i1].u * sha.glass[$i1].T4_b; ($RES_SIM_90) (60|67) [----] end for; (61|69) [FOR-] (2) ($RES_SIM_91) (61|69) [----] for $i1 in 1:2 loop (61|69) [----] [SCAL] (1) sha.glass[$i1].E_a = 5.6703744191844314e-8 * sha.glass[$i1].absIR_a * sha.glass[$i1].A * sha.glass[$i1].u * sha.glass[$i1].T4_a; ($RES_SIM_92) (61|69) [----] end for; (62|71) [FOR-] (2) ($RES_SIM_93) (62|71) [----] for $i1 in 1:2 loop (62|71) [----] [SCAL] (1) sha.glass[$i1].T4_a = homotopy(sha.glass[$i1].port_a.T ^ 4.0, 4.0 * sha.glass[$i1].T03 * sha.glass[$i1].port_a.T - 3.0 * sha.glass[$i1].T04); ($RES_SIM_94) (62|71) [----] end for; (63|73) [FOR-] (2) ($RES_SIM_95) (63|73) [----] for $i1 in 1:2 loop (63|73) [----] [SCAL] (1) sha.glass[$i1].T4_b = homotopy(sha.glass[$i1].port_b.T ^ 4.0, 4.0 * sha.glass[$i1].T03 * sha.glass[$i1].port_b.T - 3.0 * sha.glass[$i1].T04); ($RES_SIM_96) (63|73) [----] end for; (64|75) [FOR-] (2) ($RES_SIM_97) (64|75) [----] for $i1 in 1:2 loop (64|75) [----] [SCAL] (1) sha.glass[$i1].u * (sha.glass[$i1].port_b.T - sha.glass[$i1].port_a.T) = 2.0 * sha.glass[$i1].R * ((sha.glass[$i1].JOut_a + sha.glass[$i1].tauIR * (sha.glass[$i1].JIn_a - sha.glass[$i1].JIn_b)) - (sha.glass[$i1].JIn_a + 0.5 * sha.QAbs_flow[$i1] + sha.glass[$i1].port_a.Q_flow)); ($RES_SIM_98) (64|75) [----] end for; (65|77) [FOR-] (2) ($RES_SIM_99) (65|77) [----] for $i1 in 1:2 loop (65|77) [----] [SCAL] (1) 0.0 = (sha.glass[$i1].JIn_b + sha.glass[$i1].JIn_a + sha.QAbs_flow[$i1] + sha.glass[$i1].port_b.Q_flow + sha.glass[$i1].port_a.Q_flow) - (sha.glass[$i1].JOut_b + sha.glass[$i1].JOut_a); ($RES_SIM_100) (65|77) [----] end for; (66|79) [SCAL] (1) TAirRoo.port.Q_flow - (conRooSha.Q_flow + conRooNonSha.Q_flow) = 0.0; ($RES_SIM_101) (67|80) [SCAL] (1) TAirOut.port.Q_flow - (conOutSha.Q_flow + conOutNonSha1.Q_flow) = 0.0; ($RES_SIM_102) (68|81) [SCAL] (1) nonSha.glass[2].port_a.Q_flow + nonSha.gas[1].port_b.Q_flow = 0.0; ($RES_SIM_107) (69|82) [SCAL] (1) nonSha.glass[1].port_b.Q_flow + nonSha.gas[1].port_a.Q_flow = 0.0; ($RES_SIM_108) (70|83) [SCAL] (1) sha.glass[2].port_a.Q_flow + sha.gas[1].port_b.Q_flow = 0.0; ($RES_SIM_110) (71|84) [SCAL] (1) sha.glass[1].port_b.Q_flow + sha.gas[1].port_a.Q_flow = 0.0; ($RES_SIM_111) (72|85) [SCAL] (1) nonSha.JOut_b = sumJ.u[2]; ($RES_SIM_112) (73|86) [SCAL] (1) sha.JOut_b = sumJ.u[1]; ($RES_SIM_113) (74|87) [SCAL] (1) QAbs[2].k = nonSha.QAbs_flow[2]; ($RES_SIM_118) (75|88) [SCAL] (1) QAbs[2].k = sha.QAbs_flow[2]; ($RES_SIM_119) (76|89) [SCAL] (1) QAbs[1].k = nonSha.QAbs_flow[1]; ($RES_SIM_120) (77|90) [SCAL] (1) QAbs[1].k = sha.QAbs_flow[1]; ($RES_SIM_121) (78|91) [SCAL] (1) radShaInt.JOut_2 = nonSha.glass[2].JIn_b; ($RES_SIM_154) (79|92) [SCAL] (1) nonSha.glass[2].JOut_b = nonSha.JOut_b; ($RES_SIM_155) (80|93) [SCAL] (1) nonSha.glass[1].JOut_a = nonSha.JOut_a; ($RES_SIM_156) (81|94) [SCAL] (1) radShaOut.JOut_2 = nonSha.glass[1].JIn_a; ($RES_SIM_157) (82|95) [SCAL] (1) conOutNonSha1.Q_flow + nonSha.glass[1].port_a.Q_flow = 0.0; ($RES_SIM_158) (83|96) [SCAL] (1) nonSha.glass_a.T = nonSha.glass[1].port_a.T; ($RES_SIM_159) (84|97) [SCAL] (1) conRooNonSha.Q_flow + nonSha.glass[2].port_b.Q_flow = 0.0; ($RES_SIM_160) (85|98) [SCAL] (1) nonSha.glass_b.T = nonSha.glass[2].port_b.T; ($RES_SIM_161) (86|99) [SCAL] (1) 1.0 - (1e-6 + 0.999998 * uSha.y) = nonSha.gas[1].u; ($RES_SIM_162) (87|100) [SCAL] (1) 1.0 - (1e-6 + 0.999998 * uSha.y) = nonSha.glass[1].u; ($RES_SIM_163) (88|101) [SCAL] (1) 1.0 - (1e-6 + 0.999998 * uSha.y) = nonSha.glass[2].u; ($RES_SIM_164) (89|102) [SCAL] (1) nonSha.glass[1].JIn_b = nonSha.glass[2].JOut_a; ($RES_SIM_165) (90|103) [SCAL] (1) nonSha.glass[1].JOut_b = nonSha.glass[2].JIn_a; ($RES_SIM_166) (91|104) [SCAL] (1) nonSha.gas[1].port_b.T = nonSha.glass[2].port_a.T; ($RES_SIM_167) (92|105) [SCAL] (1) nonSha.glass[1].port_b.T = nonSha.gas[1].port_a.T; ($RES_SIM_168) (93|106) [SCAL] (1) radShaInt.JOut_1 = sha.glass[2].JIn_b; ($RES_SIM_170) (94|107) [SCAL] (1) sha.glass[2].JOut_b = sha.JOut_b; ($RES_SIM_171) (95|108) [SCAL] (1) sha.glass[1].JOut_a = sha.JOut_a; ($RES_SIM_172) (96|109) [SCAL] (1) radShaOut.JOut_1 = sha.glass[1].JIn_a; ($RES_SIM_173) (97|110) [SCAL] (1) conOutSha.Q_flow + sha.glass[1].port_a.Q_flow = 0.0; ($RES_SIM_174) (98|111) [SCAL] (1) conOutSha.solid.T = sha.glass[1].port_a.T; ($RES_SIM_175) (99|112) [SCAL] (1) conRooSha.Q_flow + sha.glass[2].port_b.Q_flow = 0.0; ($RES_SIM_176) (100|113) [SCAL] (1) conRooSha.solid.T = sha.glass[2].port_b.T; ($RES_SIM_177) (101|114) [SCAL] (1) 1e-6 + 0.999998 * uSha.y = sha.gas[1].u; ($RES_SIM_178) (102|115) [SCAL] (1) 1e-6 + 0.999998 * uSha.y = sha.glass[1].u; ($RES_SIM_179) (103|116) [SCAL] (1) 1e-6 + 0.999998 * uSha.y = sha.glass[2].u; ($RES_SIM_180) (104|117) [SCAL] (1) sha.glass[1].JIn_b = sha.glass[2].JOut_a; ($RES_SIM_181) (105|118) [SCAL] (1) sha.glass[1].JOut_b = sha.glass[2].JIn_a; ($RES_SIM_182) (106|119) [SCAL] (1) sha.gas[1].port_b.T = sha.glass[2].port_a.T; ($RES_SIM_183) (107|120) [SCAL] (1) sha.glass[1].port_b.T = sha.gas[1].port_a.T; ($RES_SIM_184) (108|121) [SCAL] (1) nonSha.gas[1].deltaRa = 100.0; ($RES_BND_188) (109|122) [SCAL] (1) nonSha.gas[1].deltaNu = 0.1; ($RES_BND_187) (110|123) [SCAL] (1) sha.gas[1].deltaRa = 100.0; ($RES_BND_186) (111|124) [SCAL] (1) sha.gas[1].deltaNu = 0.1; ($RES_BND_185) (112|125) [SCAL] (1) $FUN_1 = (0.12027235504272604 * sha.gas[1].gas.MM * sha.gas[1].gas.P0) / sha.gas[1].T_m; ($RES_AUX_200) (113|126) [SCAL] (1) $FUN_2 = sha.gas[1].gas.a_c + sha.gas[1].gas.b_c * sha.gas[1].T_m; ($RES_AUX_199) (114|127) [SCAL] (1) $FUN_3 = sha.gas[1].gas.a_mu + sha.gas[1].gas.b_mu * sha.gas[1].T_m; ($RES_AUX_198) (115|128) [SCAL] (1) $FUN_4 = sha.gas[1].gas.a_k + sha.gas[1].gas.b_k * sha.gas[1].T_m; ($RES_AUX_197) (116|129) [SCAL] (1) $FUN_5 = smooth(1, if noEvent((-100.0) + (19.6133 * abs(sha.gas[1].T_a - sha.gas[1].T_b) * $FUN_2 * sha.gas[1].gas.x ^ 3.0 * $FUN_1 ^ 2.0) / ($FUN_4 * $FUN_3 * (sha.gas[1].T_a + sha.gas[1].T_b)) > 10.0) then (19.6133 * abs(sha.gas[1].T_a - sha.gas[1].T_b) * $FUN_2 * sha.gas[1].gas.x ^ 3.0 * $FUN_1 ^ 2.0) / ($FUN_4 * $FUN_3 * (sha.gas[1].T_a + sha.gas[1].T_b)) else if noEvent(noEvent(noEvent((-100.0) + (19.6133 * abs(sha.gas[1].T_a - sha.gas[1].T_b) * $FUN_2 * sha.gas[1].gas.x ^ 3.0 * $FUN_1 ^ 2.0) / ($FUN_4 * $FUN_3 * (sha.gas[1].T_a + sha.gas[1].T_b)) < (-10.0)))) then 100.0 else 0.25 * (100.0 - (19.6133 * abs(sha.gas[1].T_a - sha.gas[1].T_b) * $FUN_2 * sha.gas[1].gas.x ^ 3.0 * $FUN_1 ^ 2.0) / ($FUN_4 * $FUN_3 * (sha.gas[1].T_a + sha.gas[1].T_b))) * ((-3.0) + (((-100.0) + (19.6133 * $FUN_1 ^ 2.0 * sha.gas[1].gas.x ^ 3.0 * $FUN_2 * abs(sha.gas[1].T_a - sha.gas[1].T_b)) / ((sha.gas[1].T_b + sha.gas[1].T_a) * $FUN_3 * $FUN_4)) / 10.0) ^ 2.0) * (0.1 * ((-100.0) + (19.6133 * abs(sha.gas[1].T_a - sha.gas[1].T_b) * $FUN_2 * sha.gas[1].gas.x ^ 3.0 * $FUN_1 ^ 2.0) / ($FUN_4 * $FUN_3 * (sha.gas[1].T_a + sha.gas[1].T_b)))) + 0.5 * (100.0 + (19.6133 * abs(sha.gas[1].T_a - sha.gas[1].T_b) * $FUN_2 * sha.gas[1].gas.x ^ 3.0 * $FUN_1 ^ 2.0) / ($FUN_4 * $FUN_3 * (sha.gas[1].T_a + sha.gas[1].T_b)))); ($RES_AUX_196) (117|130) [TUPL] (3) ($FUN_6, $FUN_7, $FUN_8) = Buildings.HeatTransfer.Windows.BaseClasses.convectionVerticalCavity(sha.gas[1].gas, sha.gas[1].Ra, sha.gas[1].T_m, sha.gas[1].dT, sha.gas[1].h, sha.gas[1].deltaNu, sha.gas[1].deltaRa); ($RES_AUX_195) (118|133) [SCAL] (1) $FUN_9 = (0.12027235504272604 * nonSha.gas[1].gas.MM * nonSha.gas[1].gas.P0) / nonSha.gas[1].T_m; ($RES_AUX_194) (119|134) [SCAL] (1) $FUN_10 = nonSha.gas[1].gas.a_c + nonSha.gas[1].gas.b_c * nonSha.gas[1].T_m; ($RES_AUX_193) (120|135) [SCAL] (1) $FUN_11 = nonSha.gas[1].gas.a_mu + nonSha.gas[1].gas.b_mu * nonSha.gas[1].T_m; ($RES_AUX_192) (121|136) [SCAL] (1) $FUN_12 = nonSha.gas[1].gas.a_k + nonSha.gas[1].gas.b_k * nonSha.gas[1].T_m; ($RES_AUX_191) (122|137) [SCAL] (1) $FUN_13 = smooth(1, if noEvent((-100.0) + (19.6133 * abs(nonSha.gas[1].T_a - nonSha.gas[1].T_b) * $FUN_10 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_9 ^ 2.0) / ($FUN_12 * $FUN_11 * (nonSha.gas[1].T_a + nonSha.gas[1].T_b)) > 10.0) then (19.6133 * abs(nonSha.gas[1].T_a - nonSha.gas[1].T_b) * $FUN_10 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_9 ^ 2.0) / ($FUN_12 * $FUN_11 * (nonSha.gas[1].T_a + nonSha.gas[1].T_b)) else if noEvent(noEvent(noEvent((-100.0) + (19.6133 * abs(nonSha.gas[1].T_a - nonSha.gas[1].T_b) * $FUN_10 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_9 ^ 2.0) / ($FUN_12 * $FUN_11 * (nonSha.gas[1].T_a + nonSha.gas[1].T_b)) < (-10.0)))) then 100.0 else 0.25 * (100.0 - (19.6133 * abs(nonSha.gas[1].T_a - nonSha.gas[1].T_b) * $FUN_10 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_9 ^ 2.0) / ($FUN_12 * $FUN_11 * (nonSha.gas[1].T_a + nonSha.gas[1].T_b))) * ((-3.0) + (((-100.0) + (19.6133 * $FUN_9 ^ 2.0 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_10 * abs(nonSha.gas[1].T_a - nonSha.gas[1].T_b)) / ((nonSha.gas[1].T_b + nonSha.gas[1].T_a) * $FUN_11 * $FUN_12)) / 10.0) ^ 2.0) * (0.1 * ((-100.0) + (19.6133 * abs(nonSha.gas[1].T_a - nonSha.gas[1].T_b) * $FUN_10 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_9 ^ 2.0) / ($FUN_12 * $FUN_11 * (nonSha.gas[1].T_a + nonSha.gas[1].T_b)))) + 0.5 * (100.0 + (19.6133 * abs(nonSha.gas[1].T_a - nonSha.gas[1].T_b) * $FUN_10 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_9 ^ 2.0) / ($FUN_12 * $FUN_11 * (nonSha.gas[1].T_a + nonSha.gas[1].T_b)))); ($RES_AUX_190) (123|138) [TUPL] (3) ($FUN_14, $FUN_15, $FUN_16) = Buildings.HeatTransfer.Windows.BaseClasses.convectionVerticalCavity(nonSha.gas[1].gas, nonSha.gas[1].Ra, nonSha.gas[1].T_m, nonSha.gas[1].dT, nonSha.gas[1].h, nonSha.gas[1].deltaNu, nonSha.gas[1].deltaRa); ($RES_AUX_189) (124|141) [SCAL] (1) $FUN_17 = (0.12027235504272604 * sha.gas[1].gas.MM * sha.gas[1].gas.P0) / sha.gas[1].T0; ($RES_AUX_214) (125|142) [SCAL] (1) $FUN_18 = sha.gas[1].gas.a_c + sha.gas[1].gas.b_c * sha.gas[1].T0; ($RES_AUX_213) (126|143) [SCAL] (1) $FUN_19 = sha.gas[1].gas.a_mu + sha.gas[1].gas.b_mu * sha.gas[1].T0; ($RES_AUX_212) (127|144) [SCAL] (1) $FUN_20 = sha.gas[1].gas.a_k + sha.gas[1].gas.b_k * sha.gas[1].T0; ($RES_AUX_211) (128|145) [SCAL] (1) $FUN_21 = smooth(1, if noEvent((-100.0) + (196.13299999999998 * $FUN_18 * sha.gas[1].gas.x ^ 3.0 * $FUN_17 ^ 2.0) / ($FUN_20 * $FUN_19 * (sha.gas[1].T0 + sha.gas[1].T0)) > 10.0) then (196.13299999999998 * $FUN_18 * sha.gas[1].gas.x ^ 3.0 * $FUN_17 ^ 2.0) / ($FUN_20 * $FUN_19 * (sha.gas[1].T0 + sha.gas[1].T0)) else if noEvent(noEvent(noEvent((-100.0) + (196.13299999999998 * $FUN_18 * sha.gas[1].gas.x ^ 3.0 * $FUN_17 ^ 2.0) / ($FUN_20 * $FUN_19 * (sha.gas[1].T0 + sha.gas[1].T0)) < (-10.0)))) then 100.0 else 0.25 * (100.0 - (196.13299999999998 * $FUN_18 * sha.gas[1].gas.x ^ 3.0 * $FUN_17 ^ 2.0) / ($FUN_20 * $FUN_19 * (sha.gas[1].T0 + sha.gas[1].T0))) * ((-3.0) + (((-100.0) + (196.13299999999998 * $FUN_17 ^ 2.0 * sha.gas[1].gas.x ^ 3.0 * $FUN_18) / ((sha.gas[1].T0 + sha.gas[1].T0) * $FUN_19 * $FUN_20)) / 10.0) ^ 2.0) * (0.1 * ((-100.0) + (196.13299999999998 * $FUN_18 * sha.gas[1].gas.x ^ 3.0 * $FUN_17 ^ 2.0) / ($FUN_20 * $FUN_19 * (sha.gas[1].T0 + sha.gas[1].T0)))) + 0.5 * (100.0 + (196.13299999999998 * $FUN_18 * sha.gas[1].gas.x ^ 3.0 * $FUN_17 ^ 2.0) / ($FUN_20 * $FUN_19 * (sha.gas[1].T0 + sha.gas[1].T0)))); ($RES_AUX_210) (129|146) [TUPL] (3) ($FUN_22, $FUN_23, $FUN_24) = Buildings.HeatTransfer.Windows.BaseClasses.convectionVerticalCavity(sha.gas[1].gas, sha.gas[1].Ra0, sha.gas[1].T0, 10.0, sha.gas[1].h, sha.gas[1].deltaNu, sha.gas[1].deltaRa); ($RES_AUX_209) (130|149) [SCAL] (1) $FUN_25 = (0.12027235504272604 * nonSha.gas[1].gas.MM * nonSha.gas[1].gas.P0) / nonSha.gas[1].T0; ($RES_AUX_208) (131|150) [SCAL] (1) $FUN_26 = nonSha.gas[1].gas.a_c + nonSha.gas[1].gas.b_c * nonSha.gas[1].T0; ($RES_AUX_207) (132|151) [SCAL] (1) $FUN_27 = nonSha.gas[1].gas.a_mu + nonSha.gas[1].gas.b_mu * nonSha.gas[1].T0; ($RES_AUX_206) (133|152) [SCAL] (1) $FUN_28 = nonSha.gas[1].gas.a_k + nonSha.gas[1].gas.b_k * nonSha.gas[1].T0; ($RES_AUX_205) (134|153) [SCAL] (1) $FUN_29 = smooth(1, if noEvent((-100.0) + (196.13299999999998 * $FUN_26 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_25 ^ 2.0) / ($FUN_28 * $FUN_27 * (nonSha.gas[1].T0 + nonSha.gas[1].T0)) > 10.0) then (196.13299999999998 * $FUN_26 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_25 ^ 2.0) / ($FUN_28 * $FUN_27 * (nonSha.gas[1].T0 + nonSha.gas[1].T0)) else if noEvent(noEvent(noEvent((-100.0) + (196.13299999999998 * $FUN_26 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_25 ^ 2.0) / ($FUN_28 * $FUN_27 * (nonSha.gas[1].T0 + nonSha.gas[1].T0)) < (-10.0)))) then 100.0 else 0.25 * (100.0 - (196.13299999999998 * $FUN_26 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_25 ^ 2.0) / ($FUN_28 * $FUN_27 * (nonSha.gas[1].T0 + nonSha.gas[1].T0))) * ((-3.0) + (((-100.0) + (196.13299999999998 * $FUN_25 ^ 2.0 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_26) / ((nonSha.gas[1].T0 + nonSha.gas[1].T0) * $FUN_27 * $FUN_28)) / 10.0) ^ 2.0) * (0.1 * ((-100.0) + (196.13299999999998 * $FUN_26 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_25 ^ 2.0) / ($FUN_28 * $FUN_27 * (nonSha.gas[1].T0 + nonSha.gas[1].T0)))) + 0.5 * (100.0 + (196.13299999999998 * $FUN_26 * nonSha.gas[1].gas.x ^ 3.0 * $FUN_25 ^ 2.0) / ($FUN_28 * $FUN_27 * (nonSha.gas[1].T0 + nonSha.gas[1].T0)))); ($RES_AUX_204) (135|154) [TUPL] (3) ($FUN_30, $FUN_31, $FUN_32) = Buildings.HeatTransfer.Windows.BaseClasses.convectionVerticalCavity(nonSha.gas[1].gas, nonSha.gas[1].Ra0, nonSha.gas[1].T0, 10.0, nonSha.gas[1].h, nonSha.gas[1].deltaNu, nonSha.gas[1].deltaRa); ($RES_AUX_203) (136|157) [SCAL] (1) $FUN_33 = sqrt(sha.gas[1].A); ($RES_AUX_202) (137|158) [SCAL] (1) $FUN_34 = sqrt(nonSha.gas[1].A); ($RES_AUX_201) (138|159) [SCAL] (1) nonSha.gas[1].q_flow = $FUN_16; ($RES_SIM_220) (139|160) [SCAL] (1) nonSha.gas[1].hCon = $FUN_15; ($RES_SIM_219) (140|161) [SCAL] (1) nonSha.gas[1].Nu = $FUN_14; ($RES_SIM_218) (141|162) [SCAL] (1) sha.gas[1].q_flow = $FUN_8; ($RES_SIM_217) (142|163) [SCAL] (1) sha.gas[1].hCon = $FUN_7; ($RES_SIM_216) (143|164) [SCAL] (1) sha.gas[1].Nu = $FUN_6; ($RES_SIM_215) (144|165) [SCAL] (1) $SEV_1 = time < (uSha.startTime + uSha.duration); ($RES_EVT_270) (145|166) [SCAL] (1) $SEV_0 = time < uSha.startTime; ($RES_EVT_269) (146|167) [SCAL] (1) $START.$FUN_12 = nonSha.gas[1].gas.a_k + nonSha.gas[1].gas.b_k * $START.nonSha.gas[1].T_m; ($RES_SRT_294) (147|168) [SCAL] (1) $START.$FUN_11 = nonSha.gas[1].gas.a_mu + nonSha.gas[1].gas.b_mu * $START.nonSha.gas[1].T_m; ($RES_SRT_293) (148|169) [SCAL] (1) $START.$FUN_10 = nonSha.gas[1].gas.a_c + nonSha.gas[1].gas.b_c * $START.nonSha.gas[1].T_m; ($RES_SRT_292) (149|170) [SCAL] (1) $START.$FUN_4 = sha.gas[1].gas.a_k + sha.gas[1].gas.b_k * $START.sha.gas[1].T_m; ($RES_SRT_291) (150|171) [SCAL] (1) $START.$FUN_3 = sha.gas[1].gas.a_mu + sha.gas[1].gas.b_mu * $START.sha.gas[1].T_m; ($RES_SRT_290) (151|172) [SCAL] (1) $START.$FUN_2 = sha.gas[1].gas.a_c + sha.gas[1].gas.b_c * $START.sha.gas[1].T_m; ($RES_SRT_289) (152|173) [SCAL] (1) $START.radShaOut.JOut_2 = 335.01273601689667 * nonSha.A; ($RES_SRT_288) (153|174) [SCAL] (1) $START.radShaOut.JOut_1 = 335.01273601689667 * sha.A; ($RES_SRT_287) (154|175) [FOR-] (2) ($RES_SRT_283) (154|175) [----] for $i181 in 1:2 loop (154|175) [----] [SCAL] (1) $START.nonSha.glass[$i181].JIn_b = 335.01273601689667 * nonSha.glass[$i181].A; ($RES_SRT_284) (154|175) [----] end for; (155|177) [FOR-] (2) ($RES_SRT_281) (155|177) [----] for $i180 in 1:2 loop (155|177) [----] [SCAL] (1) $START.nonSha.glass[$i180].JIn_a = 335.01273601689667 * nonSha.glass[$i180].A; ($RES_SRT_282) (155|177) [----] end for; (156|179) [SCAL] (1) $START.radShaInt.JOut_2 = 335.01273601689667 * nonSha.A; ($RES_SRT_280) (157|180) [SCAL] (1) $START.radShaInt.JOut_1 = 335.01273601689667 * sha.A; ($RES_SRT_279) (158|181) [SCAL] (1) $START.radIn.JOut = 335.01273601689667 * radIn.A; ($RES_SRT_278) (159|182) [SCAL] (1) $START.radIn.JIn = 335.01273601689667 * radIn.A; ($RES_SRT_277) (160|183) [FOR-] (2) ($RES_SRT_273) (160|183) [----] for $i179 in 1:2 loop (160|183) [----] [SCAL] (1) $START.sha.glass[$i179].JIn_b = 335.01273601689667 * sha.glass[$i179].A; ($RES_SRT_274) (160|183) [----] end for; (161|185) [FOR-] (2) ($RES_SRT_271) (161|185) [----] for $i178 in 1:2 loop (161|185) [----] [SCAL] (1) $START.sha.glass[$i178].JIn_a = 335.01273601689667 * sha.glass[$i178].A; ($RES_SRT_272) (161|185) [----] end for; (162|187) [RECD] (40) nonSha.glaSys = glaSys; ($RES_BND_375) (163|227) [RECD] (40) sha.glaSys = glaSys; ($RES_BND_373) (164|267) [ARRY] (2) QAbs.y = QAbs.k; ($RES_BND_354) (165|269) [SCAL] (1) nonSha.gas[1].A = nonSha.A; ($RES_BND_348) (166|270) [FOR-] (2) ($RES_BND_346) (166|270) [----] for $i1 in 1:2 loop (166|270) [----] [SCAL] (1) nonSha.glass[$i1].R = nonSha.glass[$i1].x / nonSha.glass[$i1].A / 2.0 / nonSha.glass[$i1].k; ($RES_BND_347) (166|270) [----] end for; (167|272) [FOR-] (2) ($RES_BND_344) (167|272) [----] for $i1 in 1:2 loop (167|272) [----] [SCAL] (1) nonSha.glass[$i1].k = nonSha.glaSys.glass[$i1].k; ($RES_BND_345) (167|272) [----] end for; (168|274) [FOR-] (2) ($RES_BND_342) (168|274) [----] for $i1 in 1:2 loop (168|274) [----] [SCAL] (1) nonSha.glass[$i1].x = nonSha.glaSys.glass[$i1].x; ($RES_BND_343) (168|274) [----] end for; (169|276) [FOR-] (2) ($RES_BND_336) (169|276) [----] for $i1 in 1:2 loop (169|276) [----] [SCAL] (1) nonSha.glass[$i1].tauIR = nonSha.glaSys.glass[$i1].tauIR; ($RES_BND_337) (169|276) [----] end for; (170|278) [FOR-] (2) ($RES_BND_334) (170|278) [----] for $i1 in 1:2 loop (170|278) [----] [SCAL] (1) nonSha.glass[$i1].rhoIR_b = 1.0 - nonSha.glass[$i1].tauIR - nonSha.glass[$i1].absIR_b; ($RES_BND_335) (170|278) [----] end for; (171|280) [FOR-] (2) ($RES_BND_332) (171|280) [----] for $i1 in 1:2 loop (171|280) [----] [SCAL] (1) nonSha.glass[$i1].rhoIR_a = 1.0 - nonSha.glass[$i1].tauIR - nonSha.glass[$i1].absIR_a; ($RES_BND_333) (171|280) [----] end for; (172|282) [FOR-] (2) ($RES_BND_330) (172|282) [----] for $i1 in 1:2 loop (172|282) [----] [SCAL] (1) nonSha.glass[$i1].absIR_b = nonSha.glaSys.glass[$i1].absIR_b; ($RES_BND_331) (172|282) [----] end for; (173|284) [FOR-] (2) ($RES_BND_328) (173|284) [----] for $i1 in 1:2 loop (173|284) [----] [SCAL] (1) nonSha.glass[$i1].absIR_a = nonSha.glaSys.glass[$i1].absIR_a; ($RES_BND_329) (173|284) [----] end for; (174|286) [SCAL] (1) sha.gas[1].A = sha.A; ($RES_BND_318) (175|287) [FOR-] (2) ($RES_BND_316) (175|287) [----] for $i1 in 1:2 loop (175|287) [----] [SCAL] (1) sha.glass[$i1].R = sha.glass[$i1].x / sha.glass[$i1].A / 2.0 / sha.glass[$i1].k; ($RES_BND_317) (175|287) [----] end for; (176|289) [FOR-] (2) ($RES_BND_314) (176|289) [----] for $i1 in 1:2 loop (176|289) [----] [SCAL] (1) sha.glass[$i1].k = sha.glaSys.glass[$i1].k; ($RES_BND_315) (176|289) [----] end for; (177|291) [FOR-] (2) ($RES_BND_312) (177|291) [----] for $i1 in 1:2 loop (177|291) [----] [SCAL] (1) sha.glass[$i1].x = sha.glaSys.glass[$i1].x; ($RES_BND_313) (177|291) [----] end for; (178|293) [FOR-] (2) ($RES_BND_306) (178|293) [----] for $i1 in 1:2 loop (178|293) [----] [SCAL] (1) sha.glass[$i1].tauIR = sha.glaSys.glass[$i1].tauIR; ($RES_BND_307) (178|293) [----] end for; (179|295) [FOR-] (2) ($RES_BND_304) (179|295) [----] for $i1 in 1:2 loop (179|295) [----] [SCAL] (1) sha.glass[$i1].rhoIR_b = 1.0 - sha.glass[$i1].tauIR - sha.glass[$i1].absIR_b; ($RES_BND_305) (179|295) [----] end for; (180|297) [FOR-] (2) ($RES_BND_302) (180|297) [----] for $i1 in 1:2 loop (180|297) [----] [SCAL] (1) sha.glass[$i1].rhoIR_a = 1.0 - sha.glass[$i1].tauIR - sha.glass[$i1].absIR_a; ($RES_BND_303) (180|297) [----] end for; (181|299) [FOR-] (2) ($RES_BND_300) (181|299) [----] for $i1 in 1:2 loop (181|299) [----] [SCAL] (1) sha.glass[$i1].absIR_b = sha.glaSys.glass[$i1].absIR_b; ($RES_BND_301) (181|299) [----] end for; (182|301) [FOR-] (2) ($RES_BND_298) (182|301) [----] for $i1 in 1:2 loop (182|301) [----] [SCAL] (1) sha.glass[$i1].absIR_a = sha.glaSys.glass[$i1].absIR_a; ($RES_BND_299) (182|301) [----] end for; (183|303) [SCAL] (1) sha.gas[1].h = $FUN_33; ($RES_SIM_388) (184|304) [SCAL] (1) nonSha.gas[1].h = $FUN_34; ($RES_SIM_387) (185|305) [SCAL] (1) $START.sha.glass[2].JOut_a = 335.01273601689667 * sha.glass[1].A; ($RES_SIM_384) (186|306) [SCAL] (1) $START.sha.glass[1].JOut_a = 0.0; ($RES_SIM_383) (187|307) [SCAL] (1) $START.sha.glass[2].JOut_b = 0.0; ($RES_SIM_382) (188|308) [SCAL] (1) $START.sha.glass[1].JOut_b = 335.01273601689667 * sha.glass[2].A; ($RES_SIM_381) (189|309) [SCAL] (1) $START.nonSha.glass[2].JOut_a = 335.01273601689667 * nonSha.glass[1].A; ($RES_SIM_380) (190|310) [SCAL] (1) $START.nonSha.glass[1].JOut_a = 0.0; ($RES_SIM_379) (191|311) [SCAL] (1) $START.nonSha.glass[2].JOut_b = 0.0; ($RES_SIM_378) (192|312) [SCAL] (1) $START.nonSha.glass[1].JOut_b = 335.01273601689667 * nonSha.glass[2].A; ($RES_SIM_377) =================== Scalar Matching =================== variable to equation ********************** var 1 --> eqn 108 var 2 --> eqn 86 var 3 --> eqn 109 var 4 --> eqn 118 var 5 --> eqn 117 var 6 --> eqn 106 var 7 --> eqn 75 var 8 --> eqn 78 var 9 --> eqn 77 var 10 --> eqn 107 var 11 --> eqn 115 var 12 --> eqn 116 var 13 --> eqn 71 var 14 --> eqn 72 var 15 --> eqn 110 var 16 --> eqn 76 var 17 --> eqn 73 var 18 --> eqn 74 var 19 --> eqn 84 var 20 --> eqn 112 var 21 --> eqn 69 var 22 --> eqn 70 var 23 --> eqn 67 var 24 --> eqn 68 var 25 --> eqn 65 var 26 --> eqn 66 var 27 --> eqn 63 var 28 --> eqn 64 var 29 --> eqn 55 var 30 --> eqn 57 var 31 --> eqn 120 var 32 --> eqn 56 var 33 --> eqn 119 var 34 --> eqn 83 var 35 --> eqn 114 var 36 --> eqn 163 var 37 --> eqn 162 var 38 --> eqn 164 var 39 --> eqn 59 var 40 --> eqn 62 var 41 --> eqn 61 var 42 --> eqn 60 var 43 --> eqn 124 var 44 --> eqn 123 var 45 --> eqn 90 var 46 --> eqn 88 var 47 --> eqn 54 var 48 --> eqn 80 var 49 --> eqn 79 var 50 --> eqn 52 var 51 --> eqn 49 var 52 --> eqn 53 var 53 --> eqn 51 var 54 --> eqn 50 var 55 --> eqn 91 var 56 --> eqn -1 var 57 --> eqn 92 var 58 --> eqn 94 var 59 --> eqn 36 var 60 --> eqn 33 var 61 --> eqn 46 var 62 --> eqn 93 var 63 --> eqn 102 var 64 --> eqn 103 var 65 --> eqn 34 var 66 --> eqn 100 var 67 --> eqn 101 var 68 --> eqn 41 var 69 --> eqn 104 var 70 --> eqn 95 var 71 --> eqn 81 var 72 --> eqn 45 var 73 --> eqn 98 var 74 --> eqn 47 var 75 --> eqn 48 var 76 --> eqn 39 var 77 --> eqn 42 var 78 --> eqn 43 var 79 --> eqn 44 var 80 --> eqn 35 var 81 --> eqn 40 var 82 --> eqn 37 var 83 --> eqn 38 var 84 --> eqn 26 var 85 --> eqn 27 var 86 --> eqn 105 var 87 --> eqn 82 var 88 --> eqn 30 var 89 --> eqn 25 var 90 --> eqn 99 var 91 --> eqn 160 var 92 --> eqn 159 var 93 --> eqn 161 var 94 --> eqn 29 var 95 --> eqn 32 var 96 --> eqn 31 var 97 --> eqn 135 var 98 --> eqn 122 var 99 --> eqn 121 var 100 --> eqn 96 var 101 --> eqn 13 var 102 --> eqn 89 var 103 --> eqn 87 var 104 --> eqn 24 var 105 --> eqn 23 var 106 --> eqn 22 var 107 --> eqn 20 var 108 --> eqn 21 var 109 --> eqn 18 var 110 --> eqn 19 var 111 --> eqn 113 var 112 --> eqn 16 var 113 --> eqn 17 var 114 --> eqn 11 var 115 --> eqn 111 var 116 --> eqn 14 var 117 --> eqn 15 var 118 --> eqn 10 var 119 --> eqn 97 var 120 --> eqn 12 var 121 --> eqn 9 var 122 --> eqn 85 var 123 --> eqn 125 var 124 --> eqn -1 var 125 --> eqn -1 var 126 --> eqn -1 var 127 --> eqn 129 var 128 --> eqn 132 var 129 --> eqn 131 var 130 --> eqn 130 var 131 --> eqn -1 var 132 --> eqn -1 var 133 --> eqn -1 var 134 --> eqn -1 var 135 --> eqn 137 var 136 --> eqn 140 var 137 --> eqn 139 var 138 --> eqn -1 var 139 --> eqn 165 var 140 --> eqn 166 var 141 --> eqn 167 var 142 --> eqn 168 var 143 --> eqn 169 var 144 --> eqn 170 var 145 --> eqn -1 var 146 --> eqn 172 var 147 --> eqn 173 var 148 --> eqn 174 var 149 --> eqn 312 var 150 --> eqn 311 var 151 --> eqn 310 var 152 --> eqn 309 var 153 --> eqn 175 var 154 --> eqn 176 var 155 --> eqn 177 var 156 --> eqn 178 var 157 --> eqn 179 var 158 --> eqn 180 var 159 --> eqn 181 var 160 --> eqn 182 var 161 --> eqn 308 var 162 --> eqn 307 var 163 --> eqn 306 var 164 --> eqn 305 var 165 --> eqn 183 var 166 --> eqn 184 var 167 --> eqn 185 var 168 --> eqn 186 var 169 --> eqn 155 var 170 --> eqn 154 var 171 --> eqn 136 var 172 --> eqn 151 var 173 --> eqn 156 var 174 --> eqn 138 var 175 --> eqn 134 var 176 --> eqn 133 var 177 --> eqn 149 var 178 --> eqn 187 var 179 --> eqn 188 var 180 --> eqn 189 var 181 --> eqn 190 var 182 --> eqn 191 var 183 --> eqn 192 var 184 --> eqn 193 var 185 --> eqn 194 var 186 --> eqn 195 var 187 --> eqn 196 var 188 --> eqn 197 var 189 --> eqn 198 var 190 --> eqn 199 var 191 --> eqn 200 var 192 --> eqn 201 var 193 --> eqn 202 var 194 --> eqn 203 var 195 --> eqn 204 var 196 --> eqn 205 var 197 --> eqn 206 var 198 --> eqn 207 var 199 --> eqn 208 var 200 --> eqn 209 var 201 --> eqn 210 var 202 --> eqn 211 var 203 --> eqn 212 var 204 --> eqn 213 var 205 --> eqn 214 var 206 --> eqn 215 var 207 --> eqn 216 var 208 --> eqn 217 var 209 --> eqn 218 var 210 --> eqn 219 var 211 --> eqn 220 var 212 --> eqn 221 var 213 --> eqn 222 var 214 --> eqn 223 var 215 --> eqn 224 var 216 --> eqn 225 var 217 --> eqn 226 var 218 --> eqn 148 var 219 --> eqn 144 var 220 --> eqn 128 var 221 --> eqn 171 var 222 --> eqn 127 var 223 --> eqn 142 var 224 --> eqn 126 var 225 --> eqn -1 var 226 --> eqn 147 var 227 --> eqn 227 var 228 --> eqn 228 var 229 --> eqn 229 var 230 --> eqn 230 var 231 --> eqn 231 var 232 --> eqn 232 var 233 --> eqn 233 var 234 --> eqn 234 var 235 --> eqn 235 var 236 --> eqn 236 var 237 --> eqn 237 var 238 --> eqn 238 var 239 --> eqn 239 var 240 --> eqn 240 var 241 --> eqn 241 var 242 --> eqn 242 var 243 --> eqn 243 var 244 --> eqn 244 var 245 --> eqn 245 var 246 --> eqn 246 var 247 --> eqn 247 var 248 --> eqn 248 var 249 --> eqn 249 var 250 --> eqn 250 var 251 --> eqn 251 var 252 --> eqn 252 var 253 --> eqn 253 var 254 --> eqn 254 var 255 --> eqn 255 var 256 --> eqn 256 var 257 --> eqn 257 var 258 --> eqn 258 var 259 --> eqn 259 var 260 --> eqn 260 var 261 --> eqn 261 var 262 --> eqn 262 var 263 --> eqn 263 var 264 --> eqn 264 var 265 --> eqn 265 var 266 --> eqn 266 var 267 --> eqn 267 var 268 --> eqn 268 var 269 --> eqn 158 var 270 --> eqn 157 var 271 --> eqn 1 var 272 --> eqn 2 var 273 --> eqn 3 var 274 --> eqn 153 var 275 --> eqn 152 var 276 --> eqn -1 var 277 --> eqn 150 var 278 --> eqn -1 var 279 --> eqn 146 var 280 --> eqn 6 var 281 --> eqn 7 var 282 --> eqn 145 var 283 --> eqn -1 var 284 --> eqn 143 var 285 --> eqn -1 var 286 --> eqn 141 var 287 --> eqn 4 var 288 --> eqn -1 var 289 --> eqn 28 var 290 --> eqn 304 var 291 --> eqn 269 var 292 --> eqn 270 var 293 --> eqn 271 var 294 --> eqn 272 var 295 --> eqn 273 var 296 --> eqn 274 var 297 --> eqn 275 var 298 --> eqn 276 var 299 --> eqn 277 var 300 --> eqn 278 var 301 --> eqn 279 var 302 --> eqn 280 var 303 --> eqn 281 var 304 --> eqn 282 var 305 --> eqn 283 var 306 --> eqn 284 var 307 --> eqn 285 var 308 --> eqn 8 var 309 --> eqn 5 var 310 --> eqn 58 var 311 --> eqn 303 var 312 --> eqn 286 var 313 --> eqn 287 var 314 --> eqn 288 var 315 --> eqn 289 var 316 --> eqn 290 var 317 --> eqn 291 var 318 --> eqn 292 var 319 --> eqn 293 var 320 --> eqn 294 var 321 --> eqn 295 var 322 --> eqn 296 var 323 --> eqn 297 var 324 --> eqn 298 var 325 --> eqn 299 var 326 --> eqn 300 var 327 --> eqn 301 var 328 --> eqn 302 equation to variable ********************** eqn 1 --> var 271 eqn 2 --> var 272 eqn 3 --> var 273 eqn 4 --> var 287 eqn 5 --> var 309 eqn 6 --> var 280 eqn 7 --> var 281 eqn 8 --> var 308 eqn 9 --> var 121 eqn 10 --> var 118 eqn 11 --> var 114 eqn 12 --> var 120 eqn 13 --> var 101 eqn 14 --> var 116 eqn 15 --> var 117 eqn 16 --> var 112 eqn 17 --> var 113 eqn 18 --> var 109 eqn 19 --> var 110 eqn 20 --> var 107 eqn 21 --> var 108 eqn 22 --> var 106 eqn 23 --> var 105 eqn 24 --> var 104 eqn 25 --> var 89 eqn 26 --> var 84 eqn 27 --> var 85 eqn 28 --> var 289 eqn 29 --> var 94 eqn 30 --> var 88 eqn 31 --> var 96 eqn 32 --> var 95 eqn 33 --> var 60 eqn 34 --> var 65 eqn 35 --> var 80 eqn 36 --> var 59 eqn 37 --> var 82 eqn 38 --> var 83 eqn 39 --> var 76 eqn 40 --> var 81 eqn 41 --> var 68 eqn 42 --> var 77 eqn 43 --> var 78 eqn 44 --> var 79 eqn 45 --> var 72 eqn 46 --> var 61 eqn 47 --> var 74 eqn 48 --> var 75 eqn 49 --> var 51 eqn 50 --> var 54 eqn 51 --> var 53 eqn 52 --> var 50 eqn 53 --> var 52 eqn 54 --> var 47 eqn 55 --> var 29 eqn 56 --> var 32 eqn 57 --> var 30 eqn 58 --> var 310 eqn 59 --> var 39 eqn 60 --> var 42 eqn 61 --> var 41 eqn 62 --> var 40 eqn 63 --> var 27 eqn 64 --> var 28 eqn 65 --> var 25 eqn 66 --> var 26 eqn 67 --> var 23 eqn 68 --> var 24 eqn 69 --> var 21 eqn 70 --> var 22 eqn 71 --> var 13 eqn 72 --> var 14 eqn 73 --> var 17 eqn 74 --> var 18 eqn 75 --> var 7 eqn 76 --> var 16 eqn 77 --> var 9 eqn 78 --> var 8 eqn 79 --> var 49 eqn 80 --> var 48 eqn 81 --> var 71 eqn 82 --> var 87 eqn 83 --> var 34 eqn 84 --> var 19 eqn 85 --> var 122 eqn 86 --> var 2 eqn 87 --> var 103 eqn 88 --> var 46 eqn 89 --> var 102 eqn 90 --> var 45 eqn 91 --> var 55 eqn 92 --> var 57 eqn 93 --> var 62 eqn 94 --> var 58 eqn 95 --> var 70 eqn 96 --> var 100 eqn 97 --> var 119 eqn 98 --> var 73 eqn 99 --> var 90 eqn 100 --> var 66 eqn 101 --> var 67 eqn 102 --> var 63 eqn 103 --> var 64 eqn 104 --> var 69 eqn 105 --> var 86 eqn 106 --> var 6 eqn 107 --> var 10 eqn 108 --> var 1 eqn 109 --> var 3 eqn 110 --> var 15 eqn 111 --> var 115 eqn 112 --> var 20 eqn 113 --> var 111 eqn 114 --> var 35 eqn 115 --> var 11 eqn 116 --> var 12 eqn 117 --> var 5 eqn 118 --> var 4 eqn 119 --> var 33 eqn 120 --> var 31 eqn 121 --> var 99 eqn 122 --> var 98 eqn 123 --> var 44 eqn 124 --> var 43 eqn 125 --> var 123 eqn 126 --> var 224 eqn 127 --> var 222 eqn 128 --> var 220 eqn 129 --> var 127 eqn 130 --> var 130 eqn 131 --> var 129 eqn 132 --> var 128 eqn 133 --> var 176 eqn 134 --> var 175 eqn 135 --> var 97 eqn 136 --> var 171 eqn 137 --> var 135 eqn 138 --> var 174 eqn 139 --> var 137 eqn 140 --> var 136 eqn 141 --> var 286 eqn 142 --> var 223 eqn 143 --> var 284 eqn 144 --> var 219 eqn 145 --> var 282 eqn 146 --> var 279 eqn 147 --> var 226 eqn 148 --> var 218 eqn 149 --> var 177 eqn 150 --> var 277 eqn 151 --> var 172 eqn 152 --> var 275 eqn 153 --> var 274 eqn 154 --> var 170 eqn 155 --> var 169 eqn 156 --> var 173 eqn 157 --> var 270 eqn 158 --> var 269 eqn 159 --> var 92 eqn 160 --> var 91 eqn 161 --> var 93 eqn 162 --> var 37 eqn 163 --> var 36 eqn 164 --> var 38 eqn 165 --> var 139 eqn 166 --> var 140 eqn 167 --> var 141 eqn 168 --> var 142 eqn 169 --> var 143 eqn 170 --> var 144 eqn 171 --> var 221 eqn 172 --> var 146 eqn 173 --> var 147 eqn 174 --> var 148 eqn 175 --> var 153 eqn 176 --> var 154 eqn 177 --> var 155 eqn 178 --> var 156 eqn 179 --> var 157 eqn 180 --> var 158 eqn 181 --> var 159 eqn 182 --> var 160 eqn 183 --> var 165 eqn 184 --> var 166 eqn 185 --> var 167 eqn 186 --> var 168 eqn 187 --> var 178 eqn 188 --> var 179 eqn 189 --> var 180 eqn 190 --> var 181 eqn 191 --> var 182 eqn 192 --> var 183 eqn 193 --> var 184 eqn 194 --> var 185 eqn 195 --> var 186 eqn 196 --> var 187 eqn 197 --> var 188 eqn 198 --> var 189 eqn 199 --> var 190 eqn 200 --> var 191 eqn 201 --> var 192 eqn 202 --> var 193 eqn 203 --> var 194 eqn 204 --> var 195 eqn 205 --> var 196 eqn 206 --> var 197 eqn 207 --> var 198 eqn 208 --> var 199 eqn 209 --> var 200 eqn 210 --> var 201 eqn 211 --> var 202 eqn 212 --> var 203 eqn 213 --> var 204 eqn 214 --> var 205 eqn 215 --> var 206 eqn 216 --> var 207 eqn 217 --> var 208 eqn 218 --> var 209 eqn 219 --> var 210 eqn 220 --> var 211 eqn 221 --> var 212 eqn 222 --> var 213 eqn 223 --> var 214 eqn 224 --> var 215 eqn 225 --> var 216 eqn 226 --> var 217 eqn 227 --> var 227 eqn 228 --> var 228 eqn 229 --> var 229 eqn 230 --> var 230 eqn 231 --> var 231 eqn 232 --> var 232 eqn 233 --> var 233 eqn 234 --> var 234 eqn 235 --> var 235 eqn 236 --> var 236 eqn 237 --> var 237 eqn 238 --> var 238 eqn 239 --> var 239 eqn 240 --> var 240 eqn 241 --> var 241 eqn 242 --> var 242 eqn 243 --> var 243 eqn 244 --> var 244 eqn 245 --> var 245 eqn 246 --> var 246 eqn 247 --> var 247 eqn 248 --> var 248 eqn 249 --> var 249 eqn 250 --> var 250 eqn 251 --> var 251 eqn 252 --> var 252 eqn 253 --> var 253 eqn 254 --> var 254 eqn 255 --> var 255 eqn 256 --> var 256 eqn 257 --> var 257 eqn 258 --> var 258 eqn 259 --> var 259 eqn 260 --> var 260 eqn 261 --> var 261 eqn 262 --> var 262 eqn 263 --> var 263 eqn 264 --> var 264 eqn 265 --> var 265 eqn 266 --> var 266 eqn 267 --> var 267 eqn 268 --> var 268 eqn 269 --> var 291 eqn 270 --> var 292 eqn 271 --> var 293 eqn 272 --> var 294 eqn 273 --> var 295 eqn 274 --> var 296 eqn 275 --> var 297 eqn 276 --> var 298 eqn 277 --> var 299 eqn 278 --> var 300 eqn 279 --> var 301 eqn 280 --> var 302 eqn 281 --> var 303 eqn 282 --> var 304 eqn 283 --> var 305 eqn 284 --> var 306 eqn 285 --> var 307 eqn 286 --> var 312 eqn 287 --> var 313 eqn 288 --> var 314 eqn 289 --> var 315 eqn 290 --> var 316 eqn 291 --> var 317 eqn 292 --> var 318 eqn 293 --> var 319 eqn 294 --> var 320 eqn 295 --> var 321 eqn 296 --> var 322 eqn 297 --> var 323 eqn 298 --> var 324 eqn 299 --> var 325 eqn 300 --> var 326 eqn 301 --> var 327 eqn 302 --> var 328 eqn 303 --> var 311 eqn 304 --> var 290 eqn 305 --> var 164 eqn 306 --> var 163 eqn 307 --> var 162 eqn 308 --> var 161 eqn 309 --> var 152 eqn 310 --> var 151 eqn 311 --> var 150 eqn 312 --> var 149 Error: Internal error NBInitialization.main failed to apply modules! " [Timeout remaining time 300] [Calling sys.exit(0), Time elapsed: 6.500557758845389]