Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr Buildings_13_Buildings.Applications.BaseClasses.Equipment.Validation.PumpParallel.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 0.001976/0.001976, 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 0.002239/0.002239, allocations: 158 kB / 24.97 MB, free: 8.605 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 1.814/1.814, allocations: 177.1 MB / 205.4 MB, free: 4.48 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 3.445/3.445, allocations: 389.5 MB / 0.6361 GB, free: 13.39 MB / 0.6042 GB " [Timeout remaining time 176] Using package Buildings with version 13.0.2 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Buildings 13.0.2-maint.13.x/package.mo) Using package Modelica with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.1.0+maint.om/package.mo) Using package Complex with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.1.0+maint.om/package.mo) Using package ModelicaServices with version 4.1.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.1.0+maint.om/package.mo) Running command: translateModel(Buildings.Applications.BaseClasses.Equipment.Validation.PumpParallel,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.Applications.BaseClasses.Equipment.Validation.PumpParallel") translateModel(Buildings.Applications.BaseClasses.Equipment.Validation.PumpParallel,tolerance=1e-06,outputFormat="empty",numberOfIntervals=2500,variableFilter="",fileNamePrefix="Buildings_13_Buildings.Applications.BaseClasses.Equipment.Validation.PumpParallel") [Timeout 300] "Notification: Performance of FrontEnd - Absyn->SCode: time 3.142e-05/3.142e-05, allocations: 6.109 kB / 0.7759 GB, free: 13.98 MB / 0.7448 GB Notification: Performance of NFInst.instantiate(Buildings.Applications.BaseClasses.Equipment.Validation.PumpParallel): time 0.5589/0.559, allocations: 33.06 MB / 0.8082 GB, free: 21.32 MB / 0.7605 GB Notification: Performance of NFInst.instExpressions: time 0.0323/0.5913, allocations: 13.28 MB / 0.8212 GB, free: 18.97 MB / 0.7605 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.006441/0.5977, allocations: 159.8 kB / 0.8213 GB, free: 18.89 MB / 0.7605 GB Notification: Performance of NFTyping.typeComponents: time 0.008101/0.6058, allocations: 2.178 MB / 0.8235 GB, free: 18.15 MB / 0.7605 GB Notification: Performance of NFTyping.typeBindings: time 0.01143/0.6173, allocations: 3.358 MB / 0.8267 GB, free: 16.54 MB / 0.7605 GB Notification: Performance of NFTyping.typeClassSections: time 0.009401/0.6267, allocations: 2.973 MB / 0.8296 GB, free: 15.23 MB / 0.7605 GB Notification: Performance of NFFlatten.flatten: time 0.06368/0.6903, allocations: 39.78 MB / 0.8685 GB, free: 6.543 MB / 0.7761 GB Notification: Performance of NFFlatten.resolveConnections: time 0.01572/0.706, allocations: 5.764 MB / 0.8741 GB, free: 0.707 MB / 0.7761 GB Notification: Performance of NFEvalConstants.evaluate: time 0.02585/0.7319, allocations: 8.413 MB / 0.8823 GB, free: 8.305 MB / 0.7917 GB Notification: Performance of NFSimplifyModel.simplify: time 0.01383/0.7457, allocations: 5.622 MB / 0.8878 GB, free: 2.676 MB / 0.7917 GB Notification: Performance of NFPackage.collectConstants: time 0.003024/0.7487, allocations: 440 kB / 0.8883 GB, free: 2.246 MB / 0.7917 GB Notification: Performance of NFFlatten.collectFunctions: time 0.01587/0.7646, allocations: 4.418 MB / 0.8926 GB, free: 13.83 MB / 0.8073 GB Notification: Performance of combineBinaries: time 0.02121/0.7858, allocations: 10.84 MB / 0.9032 GB, free: 2.949 MB / 0.8073 GB Notification: Performance of replaceArrayConstructors: time 0.01119/0.797, allocations: 5.761 MB / 0.9088 GB, free: 13.17 MB / 0.823 GB Notification: Performance of NFVerifyModel.verify: time 0.003396/0.8004, allocations: 304 kB / 0.9091 GB, free: 12.87 MB / 0.823 GB Notification: Performance of FrontEnd: time 0.001036/0.8014, allocations: 103.5 kB / 0.9092 GB, free: 12.77 MB / 0.823 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 666 (473) * Number of variables: 666 (347) Notification: Performance of [SIM] Bindings: time 0.08531/0.8868, allocations: 40.53 MB / 0.9487 GB, free: 3.664 MB / 0.8542 GB Notification: Performance of [SIM] FunctionAlias: time 0.01443/0.9012, allocations: 6.175 MB / 0.9548 GB, free: 13.61 MB / 0.8698 GB Notification: Performance of [SIM] Early Inline: time 0.05224/0.9534, allocations: 21.38 MB / 0.9756 GB, free: 8.105 MB / 0.8855 GB Notification: Performance of [SIM] Simplify 1: time 0.007418/0.9608, allocations: 2.075 MB / 0.9777 GB, free: 5.906 MB / 0.8855 GB Warning: NBAlias.selectStartByConfidence: Alias set with conflicting unfixed start values of equal confidence detected. Use -d=dumprepl for more information. Notification: Performance of [SIM] Alias: time 0.03794/0.9988, allocations: 13.18 MB / 0.9905 GB, free: 7.816 MB / 0.9011 GB Notification: Performance of [SIM] Simplify 2: time 0.005791/1.005, allocations: 1.852 MB / 0.9924 GB, free: 5.875 MB / 0.9011 GB Notification: Performance of [SIM] Remove Stream: time 0.005223/1.01, allocations: 1.839 MB / 0.9941 GB, free: 3.945 MB / 0.9011 GB Notification: Performance of [SIM] Detect States: time 0.009597/1.019, allocations: 4.002 MB / 0.9981 GB, free: 15.84 MB / 0.9167 GB Notification: Performance of [SIM] Events: time 0.003506/1.023, allocations: 1.496 MB / 0.9995 GB, free: 14.34 MB / 0.9167 GB Notification: Performance of [SIM] Partitioning: time 0.01561/1.039, allocations: 5.228 MB / 1.005 GB, free: 8.816 MB / 0.9167 GB Notification: Performance of [SIM] Causalize: time 0.03728/1.076, allocations: 14.33 MB / 1.019 GB, free: 10.08 MB / 0.9323 GB Notification: Performance of [SIM] After Index Reduction Inline: time 0.02604/1.102, allocations: 12.93 MB / 1.031 GB, free: 13.14 MB / 0.948 GB Notification: Performance of [INI] Simplify: time 0.04349/1.145, allocations: 15.38 MB / 1.046 GB, free: 13.55 MB / 0.9636 GB Notification: Performance of [INI] Inline: time 0.06462/1.21, allocations: 29.69 MB / 1.075 GB, free: 15.78 MB / 0.9948 GB Notification: Performance of [INI] Partitioning: time 0.001676/1.212, allocations: 262.1 kB / 1.076 GB, free: 15.46 MB / 0.9948 GB Notification: Performance of [INI] Cleanup: time 0.01694/1.229, allocations: 6.596 MB / 1.082 GB, free: 8.82 MB / 0.9948 GB Warning: NBResolveSingularities.balanceInitialization reports an overdetermined initialization! Checking for consistency is not yet supported, following equations had to be removed: [FOR-] (2) ($RES_SIM_1798) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar1.per[$i1].peak_internal.eta = pumPar1.per[$i1].efficiency.eta[1]; ($RES_SIM_1799) [----] end for; [FOR-] (2) ($RES_SIM_1796) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar1.per[$i1].peak_internal.dp = pumPar1.per[$i1].dpMax / 2.0; ($RES_SIM_1797) [----] end for; [FOR-] (2) ($RES_SIM_1794) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar1.per[$i1].peak_internal.V_flow = pumPar1.per[$i1].V_flow_max / 2.0; ($RES_SIM_1795) [----] end for; [FOR-] (2) ($RES_SIM_1664) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar2.per[$i1].peak_internal.eta = pumPar2.per[$i1].efficiency.eta[1]; ($RES_SIM_1665) [----] end for; [FOR-] (2) ($RES_SIM_1662) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar2.per[$i1].peak_internal.dp = pumPar2.per[$i1].dpMax / 2.0; ($RES_SIM_1663) [----] end for; [FOR-] (2) ($RES_SIM_1660) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar2.per[$i1].peak_internal.V_flow = pumPar2.per[$i1].V_flow_max / 2.0; ($RES_SIM_1661) [----] end for; [FOR-] (18) ($RES_SIM_1582) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar2.pum[$i1].per.pressure.dp = pumPar2.per[$i1].pressure.dp; ($RES_SIM_1583) [----] end for; [FOR-] (18) ($RES_SIM_1580) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar2.pum[$i1].per.pressure.V_flow = pumPar2.per[$i1].pressure.V_flow; ($RES_SIM_1581) [----] end for; [FOR-] (2) ($RES_SIM_1598) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar2.pum[$i1].per.efficiency.eta = pumPar2.per[$i1].efficiency.eta; ($RES_SIM_1599) [----] end for; [FOR-] (2) ($RES_SIM_1596) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar2.pum[$i1].per.efficiency.V_flow = pumPar2.per[$i1].efficiency.V_flow; ($RES_SIM_1597) [----] end for; [FOR-] (2) ($RES_SIM_1604) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar2.pum[$i1].per.motorEfficiency.eta = pumPar2.per[$i1].motorEfficiency.eta; ($RES_SIM_1605) [----] end for; [FOR-] (2) ($RES_SIM_1602) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar2.pum[$i1].per.motorEfficiency.V_flow = pumPar2.per[$i1].motorEfficiency.V_flow; ($RES_SIM_1603) [----] end for; [FOR-] (2) ($RES_SIM_1610) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar2.pum[$i1].per.motorEfficiency_yMot.eta = pumPar2.per[$i1].motorEfficiency_yMot.eta; ($RES_SIM_1611) [----] end for; [FOR-] (2) ($RES_SIM_1608) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar2.pum[$i1].per.motorEfficiency_yMot.y = pumPar2.per[$i1].motorEfficiency_yMot.y; ($RES_SIM_1609) [----] end for; [FOR-] (18) ($RES_SIM_1616) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar2.pum[$i1].per.power.P = pumPar2.per[$i1].power.P; ($RES_SIM_1617) [----] end for; [FOR-] (18) ($RES_SIM_1614) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar2.pum[$i1].per.power.V_flow = pumPar2.per[$i1].power.V_flow; ($RES_SIM_1615) [----] end for; [FOR-] (2) ($RES_SIM_1632) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar2.pum[$i1].per.peak_internal.eta = pumPar2.per[$i1].peak_internal.eta; ($RES_SIM_1633) [----] end for; [FOR-] (2) ($RES_SIM_1630) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar2.pum[$i1].per.peak_internal.dp = pumPar2.per[$i1].peak_internal.dp; ($RES_SIM_1631) [----] end for; [FOR-] (2) ($RES_SIM_1628) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar2.pum[$i1].per.peak_internal.V_flow = pumPar2.per[$i1].peak_internal.V_flow; ($RES_SIM_1629) [----] end for; [FOR-] (18) ($RES_SIM_1644) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar2.pum[$i1].per.motorEfficiency_yMot_generic.eta = pumPar2.per[$i1].motorEfficiency_yMot_generic.eta; ($RES_SIM_1645) [----] end for; [FOR-] (18) ($RES_SIM_1642) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar2.pum[$i1].per.motorEfficiency_yMot_generic.y = pumPar2.per[$i1].motorEfficiency_yMot_generic.y; ($RES_SIM_1643) [----] end for; [FOR-] (18) ($RES_SIM_1716) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar1.pum[$i1].per.pressure.dp = pumPar1.per[$i1].pressure.dp; ($RES_SIM_1717) [----] end for; [FOR-] (18) ($RES_SIM_1714) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar1.pum[$i1].per.pressure.V_flow = pumPar1.per[$i1].pressure.V_flow; ($RES_SIM_1715) [----] end for; [FOR-] (2) ($RES_SIM_1732) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar1.pum[$i1].per.efficiency.eta = pumPar1.per[$i1].efficiency.eta; ($RES_SIM_1733) [----] end for; [FOR-] (2) ($RES_SIM_1730) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar1.pum[$i1].per.efficiency.V_flow = pumPar1.per[$i1].efficiency.V_flow; ($RES_SIM_1731) [----] end for; [FOR-] (2) ($RES_SIM_1738) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar1.pum[$i1].per.motorEfficiency.eta = pumPar1.per[$i1].motorEfficiency.eta; ($RES_SIM_1739) [----] end for; [FOR-] (2) ($RES_SIM_1736) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar1.pum[$i1].per.motorEfficiency.V_flow = pumPar1.per[$i1].motorEfficiency.V_flow; ($RES_SIM_1737) [----] end for; [FOR-] (2) ($RES_SIM_1744) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar1.pum[$i1].per.motorEfficiency_yMot.eta = pumPar1.per[$i1].motorEfficiency_yMot.eta; ($RES_SIM_1745) [----] end for; [FOR-] (2) ($RES_SIM_1742) [----] for $i1 in 1:2 loop [----] [ARRY] (1) pumPar1.pum[$i1].per.motorEfficiency_yMot.y = pumPar1.per[$i1].motorEfficiency_yMot.y; ($RES_SIM_1743) [----] end for; [FOR-] (18) ($RES_SIM_1750) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar1.pum[$i1].per.power.P = pumPar1.per[$i1].power.P; ($RES_SIM_1751) [----] end for; [FOR-] (18) ($RES_SIM_1748) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar1.pum[$i1].per.power.V_flow = pumPar1.per[$i1].power.V_flow; ($RES_SIM_1749) [----] end for; [FOR-] (2) ($RES_SIM_1766) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar1.pum[$i1].per.peak_internal.eta = pumPar1.per[$i1].peak_internal.eta; ($RES_SIM_1767) [----] end for; [FOR-] (2) ($RES_SIM_1764) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar1.pum[$i1].per.peak_internal.dp = pumPar1.per[$i1].peak_internal.dp; ($RES_SIM_1765) [----] end for; [FOR-] (2) ($RES_SIM_1762) [----] for $i1 in 1:2 loop [----] [SCAL] (1) pumPar1.pum[$i1].per.peak_internal.V_flow = pumPar1.per[$i1].peak_internal.V_flow; ($RES_SIM_1763) [----] end for; [FOR-] (18) ($RES_SIM_1778) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar1.pum[$i1].per.motorEfficiency_yMot_generic.eta = pumPar1.per[$i1].motorEfficiency_yMot_generic.eta; ($RES_SIM_1779) [----] end for; [FOR-] (18) ($RES_SIM_1776) [----] for $i1 in 1:2 loop [----] [ARRY] (9) pumPar1.pum[$i1].per.motorEfficiency_yMot_generic.y = pumPar1.per[$i1].motorEfficiency_yMot_generic.y; ($RES_SIM_1777) [----] end for; Error: Internal error NBResolveSingularities.balanceInitialization failed because following non-fixable variables could not be solved: [RECD] (36) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters_yMot[2] pumPar1.pum.per.motorEfficiency_yMot_generic = {pumPar1.per[1].motorEfficiency_yMot_generic, pumPar1.per[2].motorEfficiency_yMot_generic} (y(min = {0.0 for $f85 in 1:2}), eta(min = {0.0 for $f87 in 1:9, $f88 in 1:2}, max = {1.0 for $f86 in 1:2})) [RECD] (6) final parameter Buildings.Fluid.Movers.BaseClasses.Euler.peak[2] pumPar1.pum.per.peak_internal = {pumPar1.per[1].peak_internal, pumPar1.per[2].peak_internal} (V_flow(min = {0.0 for $f69 in 1:2}), dp(min = {0.0 for $f72 in 1:2}), eta(min = {0.0 for $f76 in 1:2})) [RECD] (6) final parameter Buildings.Fluid.Movers.BaseClasses.Euler.peak[2] pumPar1.pum.per.peak = {pumPar1.per[1].peak, pumPar1.per[2].peak} (V_flow(min = {0.0 for $f59 in 1:2}), dp(min = {0.0 for $f62 in 1:2}), eta(min = {0.0 for $f66 in 1:2})) [RECD] (36) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.powerParameters[2] pumPar1.pum.per.power = {pumPar1.per[1].power, pumPar1.per[2].power} (V_flow(min = {0.0 for $f49 in 1:2}), P(min = {0.0 for $f54 in 1:2})) [RECD] (4) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters_yMot[2] pumPar1.pum.per.motorEfficiency_yMot = {pumPar1.per[1].motorEfficiency_yMot, pumPar1.per[2].motorEfficiency_yMot} (y(min = {0.0 for $f41 in 1:2}), eta(min = {0.0 for $f43 in 1:1, $f44 in 1:2}, max = {1.0 for $f42 in 1:2})) [RECD] (4) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters[2] pumPar1.pum.per.motorEfficiency = {pumPar1.per[1].motorEfficiency, pumPar1.per[2].motorEfficiency} (V_flow(min = {0.0 for $f29 in 1:2}), eta(min = {0.0 for $f35 in 1:1, $f36 in 1:2}, max = {1.0 for $f34 in 1:2})) [RECD] (4) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters[2] pumPar1.pum.per.efficiency = {pumPar1.per[1].efficiency, pumPar1.per[2].efficiency} (V_flow(min = {0.0 for $f17 in 1:2}), eta(min = {0.0 for $f23 in 1:1, $f24 in 1:2}, max = {1.0 for $f22 in 1:2})) [RECD] (36) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.flowParameters[2] pumPar1.pum.per.pressure = {Buildings.Fluid.Movers.BaseClasses.Characteristics.flowParameters({2.11830535572e-5, 1.67865707434e-4, 7.00939248601e-4, 0.0012450039968, 0.00177258193445, 0.00227268185452, 0.00272332134293, 0.00312450039968, 0.00345423661071}, {59279.4925671, 59115.2927989, 59000.1476354, 57351.238791, 54446.2693068, 50284.7374612, 44865.6398104, 38328.4550274, 32066.9663984}), Buildings.Fluid.Movers.BaseClasses.Characteristics.flowParameters({2.11830535572e-5, 1.67865707434e-4, 7.00939248601e-4, 0.0012450039968, 0.00177258193445, 0.00227268185452, 0.00272332134293, 0.00312450039968, 0.00345423661071}, {59279.4925671, 59115.2927989, 59000.1476354, 57351.238791, 54446.2693068, 50284.7374612, 44865.6398104, 38328.4550274, 32066.9663984})} (V_flow(min = {0.0 for $f1 in 1:2}), dp(min = {0.0 for $f6 in 1:2})) [RECD] (36) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters_yMot[2] pumPar2.pum.per.motorEfficiency_yMot_generic = {pumPar2.per[1].motorEfficiency_yMot_generic, pumPar2.per[2].motorEfficiency_yMot_generic} (y(min = {0.0 for $f85 in 1:2}), eta(min = {0.0 for $f87 in 1:9, $f88 in 1:2}, max = {1.0 for $f86 in 1:2})) [RECD] (6) final parameter Buildings.Fluid.Movers.BaseClasses.Euler.peak[2] pumPar2.pum.per.peak_internal = {pumPar2.per[1].peak_internal, pumPar2.per[2].peak_internal} (V_flow(min = {0.0 for $f69 in 1:2}), dp(min = {0.0 for $f72 in 1:2}), eta(min = {0.0 for $f76 in 1:2})) [RECD] (6) final parameter Buildings.Fluid.Movers.BaseClasses.Euler.peak[2] pumPar2.pum.per.peak = {pumPar2.per[1].peak, pumPar2.per[2].peak} (V_flow(min = {0.0 for $f59 in 1:2}), dp(min = {0.0 for $f62 in 1:2}), eta(min = {0.0 for $f66 in 1:2})) [RECD] (36) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.powerParameters[2] pumPar2.pum.per.power = {pumPar2.per[1].power, pumPar2.per[2].power} (V_flow(min = {0.0 for $f49 in 1:2}), P(min = {0.0 for $f54 in 1:2})) [RECD] (4) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters_yMot[2] pumPar2.pum.per.motorEfficiency_yMot = {pumPar2.per[1].motorEfficiency_yMot, pumPar2.per[2].motorEfficiency_yMot} (y(min = {0.0 for $f41 in 1:2}), eta(min = {0.0 for $f43 in 1:1, $f44 in 1:2}, max = {1.0 for $f42 in 1:2})) [RECD] (4) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters[2] pumPar2.pum.per.motorEfficiency = {pumPar2.per[1].motorEfficiency, pumPar2.per[2].motorEfficiency} (V_flow(min = {0.0 for $f29 in 1:2}), eta(min = {0.0 for $f35 in 1:1, $f36 in 1:2}, max = {1.0 for $f34 in 1:2})) [RECD] (4) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.efficiencyParameters[2] pumPar2.pum.per.efficiency = {pumPar2.per[1].efficiency, pumPar2.per[2].efficiency} (V_flow(min = {0.0 for $f17 in 1:2}), eta(min = {0.0 for $f23 in 1:1, $f24 in 1:2}, max = {1.0 for $f22 in 1:2})) [RECD] (36) final parameter Buildings.Fluid.Movers.BaseClasses.Characteristics.flowParameters[2] pumPar2.pum.per.pressure = {Buildings.Fluid.Movers.BaseClasses.Characteristics.flowParameters({2.11830535572e-5, 1.67865707434e-4, 7.00939248601e-4, 0.0012450039968, 0.00177258193445, 0.00227268185452, 0.00272332134293, 0.00312450039968, 0.00345423661071}, {59279.4925671, 59115.2927989, 59000.1476354, 57351.238791, 54446.2693068, 50284.7374612, 44865.6398104, 38328.4550274, 32066.9663984}), Buildings.Fluid.Movers.BaseClasses.Characteristics.flowParameters({2.11830535572e-5, 1.67865707434e-4, 7.00939248601e-4, 0.0012450039968, 0.00177258193445, 0.00227268185452, 0.00272332134293, 0.00312450039968, 0.00345423661071}, {59279.4925671, 59115.2927989, 59000.1476354, 57351.238791, 54446.2693068, 50284.7374612, 44865.6398104, 38328.4550274, 32066.9663984})} (V_flow(min = {0.0 for $f1 in 1:2}), dp(min = {0.0 for $f6 in 1:2})) Following equations were created by fixing variables: Use -d=bltdump for more verbose debug output. Error: Internal error NBInitialization.main failed to apply modules! " [Timeout remaining time 299] [Calling sys.exit(0), Time elapsed: 7.722142893821001]