Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr ClaRa_dev_ClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/SMArtIInt 0.2.2-main/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/TILMedia 1.8.1-main/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.8.2-main/package.mo", uses=false) Using package ClaRa with version 1.8.2 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.8.2-main/package.mo) Using package Modelica with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo) Using package Complex with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo) Using package ModelicaServices with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo) Using package TILMedia with version 1.8.1 ClaRa (/home/hudson/saved_omc/libraries/.openmodelica/libraries/TILMedia 1.8.1-main/package.mo) Using package SMArtIInt with version 0.2.2 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/SMArtIInt 0.2.2-main/package.mo) Running command: translateModel(ClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying,tolerance=1e-06,outputFormat="mat",numberOfIntervals=5000,variableFilter="CPUtime|EventCounter|NonlinearSystems.simulation.1..Calls|NonlinearSystems.simulation.1..Iterations|NonlinearSystems.simulation.1..Jacobians|NonlinearSystems.simulation.1..Residues|NonlinearSystems.simulation.2..Calls|NonlinearSystems.simulation.2..Iterations|NonlinearSystems.simulation.2..Jacobians|NonlinearSystems.simulation.2..Residues|NonlinearSystems.simulation.3..Calls|NonlinearSystems.simulation.3..Iterations|NonlinearSystems.simulation.3..Jacobians|NonlinearSystems.simulation.3..Residues|NonlinearSystems.simulation.4..Calls|NonlinearSystems.simulation.4..Iterations|NonlinearSystems.simulation.4..Jacobians|NonlinearSystems.simulation.4..Residues|NonlinearSystems.simulation.5..Calls|NonlinearSystems.simulation.5..Iterations|NonlinearSystems.simulation.5..Jacobians|NonlinearSystems.simulation.5..Residues|Time|burner.A_cross|burner.LHV|burner.Q_flow_bottom|burner.Q_flow_top|burner.Q_flow_wall|burner.T_0|burner.T_slag|burner.T_start_flueGas_out|burner.T_top_initial|burner.Tau|burner.V_flow_flueGas_in|burner.V_flow_flueGas_out|burner.bulk.M|burner.bulk.M_i.10.|burner.bulk.M_i.1.|burner.bulk.M_i.2.|burner.bulk.M_i.3.|burner.bulk.M_i.4.|burner.bulk.M_i.5.|burner.bulk.M_i.6.|burner.bulk.M_i.7.|burner.bulk.M_i.8.|burner.bulk.M_i.9.|burner.bulk.T|burner.bulk.beta|burner.bulk.computeTransportProperties|burner.bulk.cp|burner.bulk.cv|burner.bulk.d|burner.bulk.delta_hd|burner.bulk.delta_hv|der.burner.bulk.h.|der.burner.bulk.xi.1..|der.burner.bulk.xi.2..|der.burner.bulk.xi.3..|der.burner.bulk.xi.4..|der.burner.bulk.xi.5..|der.burner.bulk.xi.6..|der.burner.bulk.xi.7..|der.burner.bulk.xi.8..|der.burner.bulk.xi.9..|burner.bulk.drhodh_pxi|burner.bulk.drhodp_hxi|burner.bulk.drhodxi_ph.1.|burner.bulk.drhodxi_ph.2.|burner.bulk.drhodxi_ph.3.|burner.bulk.drhodxi_ph.4.|burner.bulk.drhodxi_ph.5.|burner.bulk.drhodxi_ph.6.|burner.bulk.drhodxi_ph.7.|burner.bulk.drhodxi_ph.8.|burner.bulk.drhodxi_ph.9.|burner.bulk.gasPointer.id|burner.bulk.h|burner.bulk.h1px|burner.bulk.h_i.10.|burner.bulk.h_i.1.|burner.bulk.h_i.2.|burner.bulk.h_i.3.|burner.bulk.h_i.4.|burner.bulk.h_i.5.|burner.bulk.h_i.6.|burner.bulk.h_i.7.|burner.bulk.h_i.8.|burner.bulk.h_i.9.|burner.bulk.humRatio|burner.bulk.humRatio_s|burner.bulk.kappa|burner.bulk.p|burner.bulk.p_i.10.|burner.bulk.p_i.1.|burner.bulk.p_i.2.|burner.bulk.p_i.3.|burner.bulk.p_i.4.|burner.bulk.p_i.5.|burner.bulk.p_i.6.|burner.bulk.p_i.7.|burner.bulk.p_i.8.|burner.bulk.p_i.9.|burner.bulk.p_s|burner.bulk.phi|burner.bulk.s|burner.bulk.stateSelectPreferForInputs|burner.bulk.transp.Pr|burner.bulk.transp.eta|burner.bulk.transp.lambda|burner.bulk.transp.sigma|burner.bulk.w|burner.bulk.x.1.|burner.bulk.x.2.|burner.bulk.x.3.|burner.bulk.x.4.|burner.bulk.x.5.|burner.bulk.x.6.|burner.bulk.x.7.|burner.bulk.x.8.|burner.bulk.x.9.|burner.bulk.xi.1.|burner.bulk.xi.2.|burner.bulk.xi.3.|burner.bulk.xi.4.|burner.bulk.xi.5.|burner.bulk.xi.6.|burner.bulk.xi.7.|burner.bulk.xi.8.|burner.bulk.xi.9.|burner.bulk.xi_dryGas.1.|burner.bulk.xi_dryGas.2.|burner.bulk.xi_dryGas.3.|burner.bulk.xi_dryGas.4.|burner.bulk.xi_dryGas.5.|burner.bulk.xi_dryGas.6.|burner.bulk.xi_dryGas.7.|burner.bulk.xi_dryGas.8.|burner.bulk.xi_gas|burner.bulk.xi_s|burner.burning_time.Tau_burn_const|burner.burning_time.t|der.burner.h_flueGas_out.|der.burner.p.|der.burner.xi_flueGas.1..|der.burner.xi_flueGas.2..|der.burner.xi_flueGas.3..|der.burner.xi_flueGas.4..|der.burner.xi_flueGas.5..|der.burner.xi_flueGas.6..|der.burner.xi_flueGas.7..|der.burner.xi_flueGas.8..|der.burner.xi_flueGas.9..|burner.elementaryComposition_fuel_in.1.|burner.elementaryComposition_fuel_in.2.|burner.elementaryComposition_fuel_in.3.|burner.elementaryComposition_fuel_in.4.|burner.elementaryComposition_fuel_in.5.|burner.elementaryComposition_fuel_in.6.|burner.eyeOut.T|burner.eyeOut.h|burner.eyeOut.m_flow|burner.eyeOut.p|burner.eyeOut.s|burner.eyeOut.xi.1.|burner.eyeOut.xi.2.|burner.eyeOut.xi.3.|burner.eyeOut.xi.4.|burner.eyeOut.xi.5.|burner.eyeOut.xi.6.|burner.eyeOut.xi.7.|burner.eyeOut.xi.8.|burner.eyeOut.xi.9.|burner.eye_int.1..T|burner.eye_int.1..h|burner.eye_int.1..m_flow|burner.eye_int.1..p|burner.eye_int.1..s|burner.eye_int.1..xi.1.|burner.eye_int.1..xi.2.|burner.eye_int.1..xi.3.|burner.eye_int.1..xi.4.|burner.eye_int.1..xi.5.|burner.eye_int.1..xi.6.|burner.eye_int.1..xi.7.|burner.eye_int.1..xi.8.|burner.eye_int.1..xi.9.|burner.fuelFlueGas_inlet.flueGas.T_outflow|burner.fuelFlueGas_inlet.flueGas.m_flow|burner.fuelFlueGas_inlet.flueGas.p|burner.fuelFlueGas_inlet.flueGas.xi_outflow.1.|burner.fuelFlueGas_inlet.flueGas.xi_outflow.2.|burner.fuelFlueGas_inlet.flueGas.xi_outflow.3.|burner.fuelFlueGas_inlet.flueGas.xi_outflow.4.|burner.fuelFlueGas_inlet.flueGas.xi_outflow.5.|burner.fuelFlueGas_inlet.flueGas.xi_outflow.6.|burner.fuelFlueGas_inlet.flueGas.xi_outflow.7.|burner.fuelFlueGas_inlet.flueGas.xi_outflow.8.|burner.fuelFlueGas_inle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_wall.view_factor_wall|burner.heattransfer_wall.x_coke|burner.ideal_combustion.M|burner.ideal_combustion.M_i.10.|burner.ideal_combustion.M_i.1.|burner.ideal_combustion.M_i.2.|burner.ideal_combustion.M_i.3.|burner.ideal_combustion.M_i.4.|burner.ideal_combustion.M_i.5.|burner.ideal_combustion.M_i.6.|burner.ideal_combustion.M_i.7.|burner.ideal_combustion.M_i.8.|burner.ideal_combustion.M_i.9.|burner.ideal_combustion.T|burner.ideal_combustion.beta|burner.ideal_combustion.computeTransportProperties|burner.ideal_combustion.cp|burner.ideal_combustion.cv|burner.ideal_combustion.d|burner.ideal_combustion.delta_hd|burner.ideal_combustion.delta_hv|burner.ideal_combustion.drhodh_pxi|burner.ideal_combustion.drhodp_hxi|burner.ideal_combustion.drhodxi_ph.1.|burner.ideal_combustion.drhodxi_ph.2.|burner.ideal_combustion.drhodxi_ph.3.|burner.ideal_combustion.drhodxi_ph.4.|burner.ideal_combustion.drhodxi_ph.5.|burner.ideal_combustion.drhodxi_ph.6.|burner.ideal_combustion.drhodxi_ph.7.|burner.ideal_combustion.drhodxi_ph.8.|burner.ideal_combustion.drhodxi_ph.9.|burner.ideal_combustion.gasPointer.id|burner.ideal_combustion.h|burner.ideal_combustion.h1px|burner.ideal_combustion.h_i.10.|burner.ideal_combustion.h_i.1.|burner.ideal_combustion.h_i.2.|burner.ideal_combustion.h_i.3.|burner.ideal_combustion.h_i.4.|burner.ideal_combustion.h_i.5.|burner.ideal_combustion.h_i.6.|burner.ideal_combustion.h_i.7.|burner.ideal_combustion.h_i.8.|burner.ideal_combustion.h_i.9.|burner.ideal_combustion.humRatio|burner.ideal_combustion.humRatio_s|burner.ideal_combustion.kappa|burner.ideal_combustion.p|burner.ideal_combustion.p_i.10.|burner.ideal_combustion.p_i.1.|burner.ideal_combustion.p_i.2.|burner.ideal_combustion.p_i.3.|burner.ideal_combustion.p_i.4.|burner.ideal_combustion.p_i.5.|burner.ideal_combustion.p_i.6.|burner.ideal_combustion.p_i.7.|burner.ideal_combustion.p_i.8.|burner.ideal_combustion.p_i.9.|burner.ideal_combustion.p_s|burner.ideal_combustion.phi|burner.ideal_combustion.s|burner.ideal_combustion.stateSelectPreferForInputs|burner.ideal_combustion.transp.Pr|burner.ideal_combustion.transp.eta|burner.ideal_combustion.transp.lambda|burner.ideal_combustion.transp.sigma|burner.ideal_combustion.w|burner.ideal_combustion.x.1.|burner.ideal_combustion.x.2.|burner.ideal_combustion.x.3.|burner.ideal_combustion.x.4.|burner.ideal_combustion.x.5.|burner.ideal_combustion.x.6.|burner.ideal_combustion.x.7.|burner.ideal_combustion.x.8.|burner.ideal_combustion.x.9.|burner.ideal_combustion.xi.1.|burner.ideal_combustion.xi.2.|burner.ideal_combustion.xi.3.|burner.ideal_combustion.xi.4.|burner.ideal_combustion.xi.5.|burner.ideal_combustion.xi.6.|burner.ideal_combustion.xi.7.|burner.ideal_combustion.xi.8.|burner.ideal_combustion.xi.9.|burner.ideal_combustion.xi_dryGas.1.|burner.ideal_combustion.xi_dryGas.2.|burner.ideal_combustion.xi_dryGas.3.|burner.ideal_combustion.xi_dryGas.4.|burner.ideal_combustion.xi_dryGas.5.|burner.ideal_combustion.xi_dryGas.6.|burner.ideal_combustion.xi_dryGas.7.|burner.ideal_combustion.xi_dryGas.8.|burner.ideal_combustion.xi_gas|burner.ideal_combustion.xi_s|burner.inlet.flueGas.T_outflow|burner.inlet.flueGas.m_flow|burner.inlet.flueGas.p|burner.inlet.flueGas.xi_outflow.1.|burner.inlet.flueGas.xi_outflow.2.|burner.inlet.flueGas.xi_outflow.3.|burner.inlet.flueGas.xi_outflow.4.|burner.inlet.flueGas.xi_outflow.5.|burner.inlet.flueGas.xi_outflow.6.|burner.inlet.flueGas.xi_outflow.7.|burner.inlet.flueGas.xi_outflow.8.|burner.inlet.flueGas.xi_outflow.9.|burner.inlet.fuel.T_outflow|burner.inlet.fuel.fuelModel.C_LHV.1.|burner.inlet.fuel.fuelModel.C_LHV.2.|burner.inlet.fuel.fuelModel.C_LHV.3.|burner.inlet.fuel.fuelModel.C_cp.1.|burner.inlet.fuel.fuelModel.C_cp.2.|burner.inlet.fuel.fuelModel.C_cp.3.|burner.inlet.fuel.fuelModel.C_rho.1.|burner.inlet.fuel.fuelModel.C_rho.2.|burner.inlet.fuel.fuelModel.C_rho.3.|burner.inlet.fuel.fuelModel.N_c|burner.inlet.fuel.fuelModel.N_e|burner.inlet.fuel.fuelModel.T_ref|burner.inlet.fuel.fuelModel.ashIndex|burner.inlet.fuel.fuelModel.defaultComposition.1.|burner.inlet.fuel.fuelModel.defaultComposition.2.|burner.inlet.fuel.fuelModel.waterIndex|burner.inlet.fuel.fuelModel.xi_e_waf.1,1.|burner.inlet.fuel.fuelModel.xi_e_waf.1,2.|burner.inlet.fuel.fuelModel.xi_e_waf.1,3.|burner.inlet.fuel.fuelModel.xi_e_waf.1,4.|burner.inlet.fuel.m_flow|burner.inlet.fuel.p|burner.inlet.fuel.xi_outflow.1.|burner.inlet.fuel.xi_outflow.2.|burner.inlet.fuelModel.C_LHV.1.|burner.inlet.fuelModel.C_LHV.2.|burner.inlet.fuelModel.C_LHV.3.|burner.inlet.fuelModel.C_cp.1.|burner.inlet.fuelModel.C_cp.2.|burner.inlet.fuelModel.C_cp.3.|burner.inlet.fuelModel.C_rho.1.|burner.inlet.fuelModel.C_rho.2.|burner.inlet.fuelModel.C_rho.3.|burner.inlet.fuelModel.N_c|burner.inlet.fuelModel.N_e|burner.inlet.fuelModel.T_ref|burner.inlet.fuelModel.ashIndex|burner.inlet.fuelModel.defaultComposition.1.|burner.inlet.fuelModel.defaultComposition.2.|burner.inlet.fuelModel.waterIndex|burner.inlet.fuelModel.xi_e_waf.1,1.|burner.inlet.fuelModel.xi_e_waf.1,2.|burner.inle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_hd|burner_drying.bulk.delta_hv|der.burner_drying.bulk.h.|der.burner_drying.bulk.xi.1..|der.burner_drying.bulk.xi.2..|der.burner_drying.bulk.xi.3..|der.burner_drying.bulk.xi.4..|der.burner_drying.bulk.xi.5..|der.burner_drying.bulk.xi.6..|der.burner_drying.bulk.xi.7..|der.burner_drying.bulk.xi.8..|der.burner_drying.bulk.xi.9..|burner_drying.bulk.drhodh_pxi|burner_drying.bulk.drhodp_hxi|burner_drying.bulk.drhodxi_ph.1.|burner_drying.bulk.drhodxi_ph.2.|burner_drying.bulk.drhodxi_ph.3.|burner_drying.bulk.drhodxi_ph.4.|burner_drying.bulk.drhodxi_ph.5.|burner_drying.bulk.drhodxi_ph.6.|burner_drying.bulk.drhodxi_ph.7.|burner_drying.bulk.drhodxi_ph.8.|burner_drying.bulk.drhodxi_ph.9.|burner_drying.bulk.gasPointer.id|burner_drying.bulk.h|burner_drying.bulk.h1px|burner_drying.bulk.h_i.10.|burner_drying.bulk.h_i.1.|burner_drying.bulk.h_i.2.|burner_drying.bulk.h_i.3.|burner_drying.bulk.h_i.4.|burner_drying.bulk.h_i.5.|burner_drying.bulk.h_i.6.|burner_drying.bulk.h_i.7.|burner_drying.bulk.h_i.8.|burner_drying.bulk.h_i.9.|burner_drying.bulk.humRatio|burner_drying.bulk.humRatio_s|burner_drying.bulk.kappa|burner_drying.bulk.p|burner_drying.bulk.p_i.10.|burner_drying.bulk.p_i.1.|burner_drying.bulk.p_i.2.|burner_drying.bulk.p_i.3.|burner_drying.bulk.p_i.4.|burner_drying.bulk.p_i.5.|burner_drying.bulk.p_i.6.|burner_drying.bulk.p_i.7.|burner_drying.bulk.p_i.8.|burner_drying.bulk.p_i.9.|burner_drying.bulk.p_s|burner_drying.bulk.phi|burner_drying.bulk.s|burner_drying.bulk.stateSelectPreferForInputs|burner_drying.bulk.transp.Pr|burner_drying.bulk.transp.eta|burner_drying.bulk.transp.lambda|burner_drying.bulk.transp.sigma|burner_drying.bulk.w|burner_drying.bulk.x.1.|burner_drying.bulk.x.2.|burner_drying.bulk.x.3.|burner_drying.bulk.x.4.|burner_drying.bulk.x.5.|burner_drying.bulk.x.6.|burner_drying.bulk.x.7.|burner_drying.bulk.x.8.|burner_drying.bulk.x.9.|burner_drying.bulk.xi.1.|burner_drying.bulk.xi.2.|burner_drying.bulk.xi.3.|burner_drying.bulk.xi.4.|burner_drying.bulk.xi.5.|burner_drying.bulk.xi.6.|burner_drying.bulk.xi.7.|burner_drying.bulk.xi.8.|burner_drying.bulk.xi.9.|burner_drying.bulk.xi_dryGas.1.|burner_drying.bulk.xi_dryGas.2.|burner_drying.bulk.xi_dryGas.3.|burner_drying.bulk.xi_dryGas.4.|burner_drying.bulk.xi_dryGas.5.|burner_drying.bulk.xi_dryGas.6.|burner_drying.bulk.xi_dryGas.7.|burner_drying.bulk.xi_dryGas.8.|burner_drying.bulk.xi_gas|burner_drying.bulk.xi_s|burner_drying.burning_time.Tau_burn_const|burner_drying.burning_time.t|der.burner_drying.h_flueGas_out.|der.burner_drying.p.|der.burner_drying.xi_flueGas.1..|der.burner_drying.xi_flueGas.2..|der.burner_drying.xi_flueGas.3..|der.burner_drying.xi_flueGas.4..|der.burner_drying.xi_flueGas.5..|der.burner_drying.xi_flueGas.6..|der.burner_drying.xi_flueGas.7..|der.burner_drying.xi_flueGas.8..|der.burner_drying.xi_flueGas.9..|der.burner_drying.xi_fuel_out.1..|der.burner_drying.xi_fuel_out.2..|burner_drying.elementaryComposition_fuel_in.1.|burner_drying.elementaryComposition_fuel_in.2.|burner_drying.elementaryComposition_fuel_in.3.|burner_drying.elementaryComposition_fuel_in.4.|burner_drying.elementaryComposition_fuel_in.5.|burner_drying.elementaryComposition_fuel_in.6.|burner_drying.eyeOut.T|burner_drying.eyeOut.h|burner_drying.eyeOut.m_flow|burner_drying.eyeOut.p|burner_drying.eyeOut.s|burner_drying.eyeOut.xi.1.|burner_drying.eyeOut.xi.2.|burner_drying.eyeOut.xi.3.|burner_drying.eyeOut.xi.4.|burner_drying.eyeOut.xi.5.|burner_drying.eyeOut.xi.6.|burner_drying.eyeOut.xi.7.|burner_drying.eyeOut.xi.8.|burner_drying.eyeOut.xi.9.|burner_drying.eye_int.1..T|burner_drying.eye_int.1..h|burner_drying.eye_int.1..m_flow|burner_drying.eye_int.1..p|burner_drying.eye_int.1..s|burner_drying.eye_int.1..xi.1.|burner_drying.eye_int.1..xi.2.|burner_drying.eye_int.1..xi.3.|burner_drying.eye_int.1..xi.4.|burner_drying.eye_int.1..xi.5.|burner_drying.eye_int.1..xi.6.|burner_drying.eye_int.1..xi.7.|burner_drying.eye_int.1..xi.8.|burner_drying.eye_int.1..xi.9.|burner_drying.fuelFlueGas_inlet.flueGas.T_outflow|burner_drying.fuelFlueGas_inlet.flueGas.m_flow|burner_drying.fuelFlueGas_inlet.flueGas.p|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.1.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.2.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.3.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.4.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.5.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.6.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.7.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.8.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.9.|burner_drying.fuelFlueGas_inlet.fuel.T_outflow|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_LHV.1.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_LHV.2.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_LHV.3.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_cp.1.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_cp.2.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_cp.3.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.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_combustion.p_i.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.9.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_s|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.phi|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.s|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.stateSelectPreferForInputs|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.Pr|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.eta|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.lambda|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.sigma|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.w|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.9.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.9.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_gas|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_s|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.T_outflow|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.m_flow|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.p|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.4.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.5.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.6.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.7.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.8.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.9.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.T_outflow|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_LHV.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_LHV.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_LHV.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_cp.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_cp.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_cp.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_rho.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_rho.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_rho.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.N_c|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.N_e|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.T_ref|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.ashIndex|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.defaultComposition.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.defaultComposition.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.waterIndex|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,4.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.m_flow|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.p|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.xi_outflow.1.|f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PressureSink_top1.gas_a.m_flow|flueGasPressureSink_top1.gas_a.p|flueGasPressureSink_top1.gas_a.xi_outflow.1.|flueGasPressureSink_top1.gas_a.xi_outflow.2.|flueGasPressureSink_top1.gas_a.xi_outflow.3.|flueGasPressureSink_top1.gas_a.xi_outflow.4.|flueGasPressureSink_top1.gas_a.xi_outflow.5.|flueGasPressureSink_top1.gas_a.xi_outflow.6.|flueGasPressureSink_top1.gas_a.xi_outflow.7.|flueGasPressureSink_top1.gas_a.xi_outflow.8.|flueGasPressureSink_top1.gas_a.xi_outflow.9.|flueGasPressureSink_top1.p_const|flueGasPressureSink_top1.variable_T|flueGasPressureSink_top1.variable_p|flueGasPressureSink_top1.variable_xi|flueGasPressureSink_top1.xi_const.1.|flueGasPressureSink_top1.xi_const.2.|flueGasPressureSink_top1.xi_const.3.|flueGasPressureSink_top1.xi_const.4.|flueGasPressureSink_top1.xi_const.5.|flueGasPressureSink_top1.xi_const.6.|flueGasPressureSink_top1.xi_const.7.|flueGasPressureSink_top1.xi_const.8.|flueGasPressureSink_top1.xi_const.9.|simCenter.MaxSimTime|simCenter.T_amb|simCenter.T_amb_start|simCenter.contributeToCycleSummary|simCenter.cycleSumPort.power_aux|simCenter.cycleSumPort.power_in|simCenter.cycleSumPort.power_out_elMech|simCenter.cycleSumPort.power_out_th|simCenter.fuelModel1.C_LHV.1.|simCenter.fuelModel1.C_LHV.2.|simCenter.fuelModel1.C_LHV.3.|simCenter.fuelModel1.C_cp.1.|simCenter.fuelModel1.C_cp.2.|simCenter.fuelModel1.C_cp.3.|simCenter.fuelModel1.C_rho.1.|simCenter.fuelModel1.C_rho.2.|simCenter.fuelModel1.C_rho.3.|simCenter.fuelModel1.N_c|simCenter.fuelModel1.N_e|simCenter.fuelModel1.T_ref|simCenter.fuelModel1.ashIndex|simCenter.fuelModel1.defaultComposition.1.|simCenter.fuelModel1.defaultComposition.2.|simCenter.fuelModel1.waterIndex|simCenter.fuelModel1.xi_e_waf.1,1.|simCenter.fuelModel1.xi_e_waf.1,2.|simCenter.fuelModel1.xi_e_waf.1,3.|simCenter.fuelModel1.xi_e_waf.1,4.|simCenter.fuelModel2.C_LHV.1.|simCenter.fuelModel2.C_LHV.2.|simCenter.fuelModel2.C_LHV.3.|simCenter.fuelModel2.C_cp.1.|simCenter.fuelModel2.C_cp.2.|simCenter.fuelModel2.C_cp.3.|simCenter.fuelModel2.C_rho.1.|simCenter.fuelModel2.C_rho.2.|simCenter.fuelModel2.C_rho.3.|simCenter.fuelModel2.N_c|simCenter.fuelModel2.N_e|simCenter.fuelModel2.T_ref|simCenter.fuelModel2.ashIndex|simCenter.fuelModel2.defaultComposition.1.|simCenter.fuelModel2.defaultComposition.2.|simCenter.fuelModel2.waterIndex|simCenter.fuelModel2.xi_e_waf.1,1.|simCenter.fuelModel2.xi_e_waf.1,2.|simCenter.fuelModel2.xi_e_waf.1,3.|simCenter.fuelModel2.xi_e_waf.1,4.|simCenter.h_amb_fluid1|simCenter.h_amb_fluid2|simCenter.h_amb_fluid3|simCenter.largeFonts|simCenter.p_amb|simCenter.p_amb_start|simCenter.rh_amb|simCenter.s_amb_fluid1|simCenter.s_amb_fluid2|simCenter.s_amb_fluid3|simCenter.showExpertSummary|simCenter.slagModel.cp|simCenter.steamCycleAllowFlowReversal|simCenter.summary.eta_gross|simCenter.summary.eta_net|simCenter.summary.eta_util|simCenter.summary.spec_heat_cons|simCenter.useClaRaDelay|simCenter.useHomotopy|slagFlowSource_top.T_const|slagFlowSource_top.contributeToCycleSummary|slagFlowSource_top.energyType|slagFlowSource_top.m_flow_const|slagFlowSource_top.slagType.cp|slagFlowSource_top.slag_outlet.T_outflow|slagFlowSource_top.slag_outlet.m_flow|slagFlowSource_top.slag_outlet.p|slagFlowSource_top.slag_outlet.slagType.cp|slagFlowSource_top.variable_T|slagFlowSource_top.variable_m_flow|slagFlowSource_top1.T_const|slagFlowSource_top1.contributeToCycleSummary|slagFlowSource_top1.energyType|slagFlowSource_top1.m_flow_const|slagFlowSource_top1.slagType.cp|slagFlowSource_top1.slag_outlet.T_outflow|slagFlowSource_top1.slag_outlet.m_flow|slagFlowSource_top1.slag_outlet.p|slagFlowSource_top1.slag_outlet.slagType.cp|slagFlowSource_top1.variable_T|slagFlowSource_top1.variable_m_flow|slagSink_bottom.T_const|slagSink_bottom.contributeToCycleSummary|slagSink_bottom.energyType|slagSink_bottom.p_const|slagSink_bottom.slagType.cp|slagSink_bottom.slag_inlet.T_outflow|slagSink_bottom.slag_inlet.m_flow|slagSink_bottom.slag_inlet.p|slagSink_bottom.slag_inlet.slagType.cp|slagSink_bottom.variable_T|slagSink_bottom.variable_p|slagSink_bottom1.T_const|slagSink_bottom1.contributeToCycleSummary|slagSink_bottom1.energyType|slagSink_bottom1.p_const|slagSink_bottom1.slagType.cp|slagSink_bottom1.slag_inlet.T_outflow|slagSink_bottom1.slag_inlet.m_flow|slagSink_bottom1.slag_inlet.p|slagSink_bottom1.slag_inlet.slagType.cp|slagSink_bottom1.variable_T|slagSink_bottom1.variable_p",fileNamePrefix="ClaRa_dev_ClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying") 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_wall.view_factor_wall|burner.heattransfer_wall.x_coke|burner.ideal_combustion.M|burner.ideal_combustion.M_i.10.|burner.ideal_combustion.M_i.1.|burner.ideal_combustion.M_i.2.|burner.ideal_combustion.M_i.3.|burner.ideal_combustion.M_i.4.|burner.ideal_combustion.M_i.5.|burner.ideal_combustion.M_i.6.|burner.ideal_combustion.M_i.7.|burner.ideal_combustion.M_i.8.|burner.ideal_combustion.M_i.9.|burner.ideal_combustion.T|burner.ideal_combustion.beta|burner.ideal_combustion.computeTransportProperties|burner.ideal_combustion.cp|burner.ideal_combustion.cv|burner.ideal_combustion.d|burner.ideal_combustion.delta_hd|burner.ideal_combustion.delta_hv|burner.ideal_combustion.drhodh_pxi|burner.ideal_combustion.drhodp_hxi|burner.ideal_combustion.drhodxi_ph.1.|burner.ideal_combustion.drhodxi_ph.2.|burner.ideal_combustion.drhodxi_ph.3.|burner.ideal_combustion.drhodxi_ph.4.|burner.ideal_combustion.drhodxi_ph.5.|burner.ideal_combustion.drhodxi_ph.6.|burner.ideal_combustion.drhodxi_ph.7.|burner.ideal_combustion.drhodxi_ph.8.|burner.ideal_combustion.drhodxi_ph.9.|burner.ideal_combustion.gasPointer.id|burner.ideal_combustion.h|burner.ideal_combustion.h1px|burner.ideal_combustion.h_i.10.|burner.ideal_combustion.h_i.1.|burner.ideal_combustion.h_i.2.|burner.ideal_combustion.h_i.3.|burner.ideal_combustion.h_i.4.|burner.ideal_combustion.h_i.5.|burner.ideal_combustion.h_i.6.|burner.ideal_combustion.h_i.7.|burner.ideal_combustion.h_i.8.|burner.ideal_combustion.h_i.9.|burner.ideal_combustion.humRatio|burner.ideal_combustion.humRatio_s|burner.ideal_combustion.kappa|burner.ideal_combustion.p|burner.ideal_combustion.p_i.10.|burner.ideal_combustion.p_i.1.|burner.ideal_combustion.p_i.2.|burner.ideal_combustion.p_i.3.|burner.ideal_combustion.p_i.4.|burner.ideal_combustion.p_i.5.|burner.ideal_combustion.p_i.6.|burner.ideal_combustion.p_i.7.|burner.ideal_combustion.p_i.8.|burner.ideal_combustion.p_i.9.|burner.ideal_combustion.p_s|burner.ideal_combustion.phi|burner.ideal_combustion.s|burner.ideal_combustion.stateSelectPreferForInputs|burner.ideal_combustion.transp.Pr|burner.ideal_combustion.transp.eta|burner.ideal_combustion.transp.lambda|burner.ideal_combustion.transp.sigma|burner.ideal_combustion.w|burner.ideal_combustion.x.1.|burner.ideal_combustion.x.2.|burner.ideal_combustion.x.3.|burner.ideal_combustion.x.4.|burner.ideal_combustion.x.5.|burner.ideal_combustion.x.6.|burner.ideal_combustion.x.7.|burner.ideal_combustion.x.8.|burner.ideal_combustion.x.9.|burner.ideal_combustion.xi.1.|burner.ideal_combustion.xi.2.|burner.ideal_combustion.xi.3.|burner.ideal_combustion.xi.4.|burner.ideal_combustion.xi.5.|burner.ideal_combustion.xi.6.|burner.ideal_combustion.xi.7.|burner.ideal_combustion.xi.8.|burner.ideal_combustion.xi.9.|burner.ideal_combustion.xi_dryGas.1.|burner.ideal_combustion.xi_dryGas.2.|burner.ideal_combustion.xi_dryGas.3.|burner.ideal_combustion.xi_dryGas.4.|burner.ideal_combustion.xi_dryGas.5.|burner.ideal_combustion.xi_dryGas.6.|burner.ideal_combustion.xi_dryGas.7.|burner.ideal_combustion.xi_dryGas.8.|burner.ideal_combustion.xi_gas|burner.ideal_combustion.xi_s|burner.inlet.flueGas.T_outflow|burner.inlet.flueGas.m_flow|burner.inlet.flueGas.p|burner.inlet.flueGas.xi_outflow.1.|burner.inlet.flueGas.xi_outflow.2.|burner.inlet.flueGas.xi_outflow.3.|burner.inlet.flueGas.xi_outflow.4.|burner.inlet.flueGas.xi_outflow.5.|burner.inlet.flueGas.xi_outflow.6.|burner.inlet.flueGas.xi_outflow.7.|burner.inlet.flueGas.xi_outflow.8.|burner.inlet.flueGas.xi_outflow.9.|burner.inlet.fuel.T_outflow|burner.inlet.fuel.fuelModel.C_LHV.1.|burner.inlet.fuel.fuelModel.C_LHV.2.|burner.inlet.fuel.fuelModel.C_LHV.3.|burner.inlet.fuel.fuelModel.C_cp.1.|burner.inlet.fuel.fuelModel.C_cp.2.|burner.inlet.fuel.fuelModel.C_cp.3.|burner.inlet.fuel.fuelModel.C_rho.1.|burner.inlet.fuel.fuelModel.C_rho.2.|burner.inlet.fuel.fuelModel.C_rho.3.|burner.inlet.fuel.fuelModel.N_c|burner.inlet.fuel.fuelModel.N_e|burner.inlet.fuel.fuelModel.T_ref|burner.inlet.fuel.fuelModel.ashIndex|burner.inlet.fuel.fuelModel.defaultComposition.1.|burner.inlet.fuel.fuelModel.defaultComposition.2.|burner.inlet.fuel.fuelModel.waterIndex|burner.inlet.fuel.fuelModel.xi_e_waf.1,1.|burner.inlet.fuel.fuelModel.xi_e_waf.1,2.|burner.inlet.fuel.fuelModel.xi_e_waf.1,3.|burner.inlet.fuel.fuelModel.xi_e_waf.1,4.|burner.inlet.fuel.m_flow|burner.inlet.fuel.p|burner.inlet.fuel.xi_outflow.1.|burner.inlet.fuel.xi_outflow.2.|burner.inlet.fuelModel.C_LHV.1.|burner.inlet.fuelModel.C_LHV.2.|burner.inlet.fuelModel.C_LHV.3.|burner.inlet.fuelModel.C_cp.1.|burner.inlet.fuelModel.C_cp.2.|burner.inlet.fuelModel.C_cp.3.|burner.inlet.fuelModel.C_rho.1.|burner.inlet.fuelModel.C_rho.2.|burner.inlet.fuelModel.C_rho.3.|burner.inlet.fuelModel.N_c|burner.inlet.fuelModel.N_e|burner.inlet.fuelModel.T_ref|burner.inlet.fuelModel.ashIndex|burner.inlet.fuelModel.defaultComposition.1.|burner.inlet.fuelModel.defaultComposition.2.|burner.inlet.fuelModel.waterIndex|burner.inlet.fuelModel.xi_e_waf.1,1.|burner.inlet.fuelModel.xi_e_waf.1,2.|burner.inle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_hd|burner_drying.bulk.delta_hv|der.burner_drying.bulk.h.|der.burner_drying.bulk.xi.1..|der.burner_drying.bulk.xi.2..|der.burner_drying.bulk.xi.3..|der.burner_drying.bulk.xi.4..|der.burner_drying.bulk.xi.5..|der.burner_drying.bulk.xi.6..|der.burner_drying.bulk.xi.7..|der.burner_drying.bulk.xi.8..|der.burner_drying.bulk.xi.9..|burner_drying.bulk.drhodh_pxi|burner_drying.bulk.drhodp_hxi|burner_drying.bulk.drhodxi_ph.1.|burner_drying.bulk.drhodxi_ph.2.|burner_drying.bulk.drhodxi_ph.3.|burner_drying.bulk.drhodxi_ph.4.|burner_drying.bulk.drhodxi_ph.5.|burner_drying.bulk.drhodxi_ph.6.|burner_drying.bulk.drhodxi_ph.7.|burner_drying.bulk.drhodxi_ph.8.|burner_drying.bulk.drhodxi_ph.9.|burner_drying.bulk.gasPointer.id|burner_drying.bulk.h|burner_drying.bulk.h1px|burner_drying.bulk.h_i.10.|burner_drying.bulk.h_i.1.|burner_drying.bulk.h_i.2.|burner_drying.bulk.h_i.3.|burner_drying.bulk.h_i.4.|burner_drying.bulk.h_i.5.|burner_drying.bulk.h_i.6.|burner_drying.bulk.h_i.7.|burner_drying.bulk.h_i.8.|burner_drying.bulk.h_i.9.|burner_drying.bulk.humRatio|burner_drying.bulk.humRatio_s|burner_drying.bulk.kappa|burner_drying.bulk.p|burner_drying.bulk.p_i.10.|burner_drying.bulk.p_i.1.|burner_drying.bulk.p_i.2.|burner_drying.bulk.p_i.3.|burner_drying.bulk.p_i.4.|burner_drying.bulk.p_i.5.|burner_drying.bulk.p_i.6.|burner_drying.bulk.p_i.7.|burner_drying.bulk.p_i.8.|burner_drying.bulk.p_i.9.|burner_drying.bulk.p_s|burner_drying.bulk.phi|burner_drying.bulk.s|burner_drying.bulk.stateSelectPreferForInputs|burner_drying.bulk.transp.Pr|burner_drying.bulk.transp.eta|burner_drying.bulk.transp.lambda|burner_drying.bulk.transp.sigma|burner_drying.bulk.w|burner_drying.bulk.x.1.|burner_drying.bulk.x.2.|burner_drying.bulk.x.3.|burner_drying.bulk.x.4.|burner_drying.bulk.x.5.|burner_drying.bulk.x.6.|burner_drying.bulk.x.7.|burner_drying.bulk.x.8.|burner_drying.bulk.x.9.|burner_drying.bulk.xi.1.|burner_drying.bulk.xi.2.|burner_drying.bulk.xi.3.|burner_drying.bulk.xi.4.|burner_drying.bulk.xi.5.|burner_drying.bulk.xi.6.|burner_drying.bulk.xi.7.|burner_drying.bulk.xi.8.|burner_drying.bulk.xi.9.|burner_drying.bulk.xi_dryGas.1.|burner_drying.bulk.xi_dryGas.2.|burner_drying.bulk.xi_dryGas.3.|burner_drying.bulk.xi_dryGas.4.|burner_drying.bulk.xi_dryGas.5.|burner_drying.bulk.xi_dryGas.6.|burner_drying.bulk.xi_dryGas.7.|burner_drying.bulk.xi_dryGas.8.|burner_drying.bulk.xi_gas|burner_drying.bulk.xi_s|burner_drying.burning_time.Tau_burn_const|burner_drying.burning_time.t|der.burner_drying.h_flueGas_out.|der.burner_drying.p.|der.burner_drying.xi_flueGas.1..|der.burner_drying.xi_flueGas.2..|der.burner_drying.xi_flueGas.3..|der.burner_drying.xi_flueGas.4..|der.burner_drying.xi_flueGas.5..|der.burner_drying.xi_flueGas.6..|der.burner_drying.xi_flueGas.7..|der.burner_drying.xi_flueGas.8..|der.burner_drying.xi_flueGas.9..|der.burner_drying.xi_fuel_out.1..|der.burner_drying.xi_fuel_out.2..|burner_drying.elementaryComposition_fuel_in.1.|burner_drying.elementaryComposition_fuel_in.2.|burner_drying.elementaryComposition_fuel_in.3.|burner_drying.elementaryComposition_fuel_in.4.|burner_drying.elementaryComposition_fuel_in.5.|burner_drying.elementaryComposition_fuel_in.6.|burner_drying.eyeOut.T|burner_drying.eyeOut.h|burner_drying.eyeOut.m_flow|burner_drying.eyeOut.p|burner_drying.eyeOut.s|burner_drying.eyeOut.xi.1.|burner_drying.eyeOut.xi.2.|burner_drying.eyeOut.xi.3.|burner_drying.eyeOut.xi.4.|burner_drying.eyeOut.xi.5.|burner_drying.eyeOut.xi.6.|burner_drying.eyeOut.xi.7.|burner_drying.eyeOut.xi.8.|burner_drying.eyeOut.xi.9.|burner_drying.eye_int.1..T|burner_drying.eye_int.1..h|burner_drying.eye_int.1..m_flow|burner_drying.eye_int.1..p|burner_drying.eye_int.1..s|burner_drying.eye_int.1..xi.1.|burner_drying.eye_int.1..xi.2.|burner_drying.eye_int.1..xi.3.|burner_drying.eye_int.1..xi.4.|burner_drying.eye_int.1..xi.5.|burner_drying.eye_int.1..xi.6.|burner_drying.eye_int.1..xi.7.|burner_drying.eye_int.1..xi.8.|burner_drying.eye_int.1..xi.9.|burner_drying.fuelFlueGas_inlet.flueGas.T_outflow|burner_drying.fuelFlueGas_inlet.flueGas.m_flow|burner_drying.fuelFlueGas_inlet.flueGas.p|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.1.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.2.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.3.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.4.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.5.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.6.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.7.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.8.|burner_drying.fuelFlueGas_inlet.flueGas.xi_outflow.9.|burner_drying.fuelFlueGas_inlet.fuel.T_outflow|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_LHV.1.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_LHV.2.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_LHV.3.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_cp.1.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_cp.2.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.C_cp.3.|burner_drying.fuelFlueGas_inlet.fuel.fuelModel.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_combustion.p_i.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_i.9.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.p_s|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.phi|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.s|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.stateSelectPreferForInputs|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.Pr|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.eta|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.lambda|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.transp.sigma|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.w|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.x.9.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi.9.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.1.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.2.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.3.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.4.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.5.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.6.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.7.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_dryGas.8.|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_gas|flameRoomWithTubeBundle_L2_Dynamic.ideal_combustion.xi_s|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.T_outflow|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.m_flow|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.p|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.4.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.5.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.6.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.7.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.8.|flameRoomWithTubeBundle_L2_Dynamic.inlet.flueGas.xi_outflow.9.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.T_outflow|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_LHV.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_LHV.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_LHV.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_cp.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_cp.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_cp.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_rho.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_rho.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.C_rho.3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.N_c|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.N_e|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.T_ref|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.ashIndex|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.defaultComposition.1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.defaultComposition.2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.waterIndex|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,1.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,2.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,3.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.fuelModel.xi_e_waf.1,4.|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.m_flow|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.p|flameRoomWithTubeBundle_L2_Dynamic.inlet.fuel.xi_outflow.1.|f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const.5.|flueGasFlowSource2.xi_const.6.|flueGasFlowSource2.xi_const.7.|flueGasFlowSource2.xi_const.8.|flueGasFlowSource2.xi_const.9.|flueGasFlowSource3.T_const|flueGasFlowSource3.contributeToCycleSummary|flueGasFlowSource3.energyType|flueGasFlowSource3.eyeOut.T|flueGasFlowSource3.eyeOut.h|flueGasFlowSource3.eyeOut.m_flow|flueGasFlowSource3.eyeOut.p|flueGasFlowSource3.eyeOut.s|flueGasFlowSource3.eyeOut.xi.1.|flueGasFlowSource3.eyeOut.xi.2.|flueGasFlowSource3.eyeOut.xi.3.|flueGasFlowSource3.eyeOut.xi.4.|flueGasFlowSource3.eyeOut.xi.5.|flueGasFlowSource3.eyeOut.xi.6.|flueGasFlowSource3.eyeOut.xi.7.|flueGasFlowSource3.eyeOut.xi.8.|flueGasFlowSource3.eyeOut.xi.9.|flueGasFlowSource3.eye_int.1..T|flueGasFlowSource3.eye_int.1..h|flueGasFlowSource3.eye_int.1..m_flow|flueGasFlowSource3.eye_int.1..p|flueGasFlowSource3.eye_int.1..s|flueGasFlowSource3.eye_int.1..xi.1.|flueGasFlowSource3.eye_int.1..xi.2.|flueGasFlowSource3.eye_int.1..xi.3.|flueGasFlowSource3.eye_int.1..xi.4.|flueGasFlowSource3.eye_int.1..xi.5.|flueGasFlowSource3.eye_int.1..xi.6.|flueGasFlowSource3.eye_int.1..xi.7.|flueGasFlowSource3.eye_int.1..xi.8.|flueGasFlowSource3.eye_int.1..xi.9.|flueGasFlowSource3.gas_a.T_outflow|flueGasFlowSource3.gas_a.m_flow|flueGasFlowSource3.gas_a.p|flueGasFlowSource3.gas_a.xi_outflow.1.|flueGasFlowSource3.gas_a.xi_outflow.2.|flueGasFlowSource3.gas_a.xi_outflow.3.|flueGasFlowSource3.gas_a.xi_outflow.4.|flueGasFlowSource3.gas_a.xi_outflow.5.|flueGasFlowSource3.gas_a.xi_outflow.6.|flueGasFlowSource3.gas_a.xi_outflow.7.|flueGasFlowSource3.gas_a.xi_outflow.8.|flueGasFlowSource3.gas_a.xi_outflow.9.|flueGasFlowSource3.m_flow_const|flueGasFlowSource3.variable_T|flueGasFlowSource3.variable_m_flow|flueGasFlowSource3.variable_xi|flueGasFlowSource3.xi_const.1.|flueGasFlowSource3.xi_const.2.|flueGasFlowSource3.xi_const.3.|flueGasFlowSource3.xi_const.4.|flueGasFlowSource3.xi_const.5.|flueGasFlowSource3.xi_const.6.|flueGasFlowSource3.xi_const.7.|flueGasFlowSource3.xi_const.8.|flueGasFlowSource3.xi_const.9.|flueGasFlowSourcee_bottom.T_const|flueGasFlowSourcee_bottom.contributeToCycleSummary|flueGasFlowSourcee_bottom.energyType|flueGasFlowSourcee_bottom.eyeOut.T|flueGasFlowSourcee_bottom.eyeOut.h|flueGasFlowSourcee_bottom.eyeOut.m_flow|flueGasFlowSourcee_bottom.eyeOut.p|flueGasFlowSourcee_bottom.eyeOut.s|flueGasFlowSourcee_bottom.eyeOut.xi.1.|flueGasFlowSourcee_bottom.eyeOut.xi.2.|flueGasFlowSourcee_bottom.eyeOut.xi.3.|flueGasFlowSourcee_bottom.eyeOut.xi.4.|flueGasFlowSourcee_bottom.eyeOut.xi.5.|flueGasFlowSourcee_bottom.eyeOut.xi.6.|flueGasFlowSourcee_bottom.eyeOut.xi.7.|flueGasFlowSourcee_bottom.eyeOut.xi.8.|flueGasFlowSourcee_bottom.eyeOut.xi.9.|flueGasFlowSourcee_bottom.eye_int.1..T|flueGasFlowSourcee_bottom.eye_int.1..h|flueGasFlowSourcee_bottom.eye_int.1..m_flow|flueGasFlowSourcee_bottom.eye_int.1..p|flueGasFlowSourcee_bottom.eye_int.1..s|flueGasFlowSourcee_bottom.eye_int.1..xi.1.|flueGasFlowSourcee_bottom.eye_int.1..xi.2.|flueGasFlowSourcee_bottom.eye_int.1..xi.3.|flueGasFlowSourcee_bottom.eye_int.1..xi.4.|flueGasFlowSourcee_bottom.eye_int.1..xi.5.|flueGasFlowSourcee_bottom.eye_int.1..xi.6.|flueGasFlowSourcee_bottom.eye_int.1..xi.7.|flueGasFlowSourcee_bottom.eye_int.1..xi.8.|flueGasFlowSourcee_bottom.eye_int.1..xi.9.|flueGasFlowSourcee_bottom.gas_a.T_outflow|flueGasFlowSourcee_bottom.gas_a.m_flow|flueGasFlowSourcee_bottom.gas_a.p|flueGasFlowSourcee_bottom.gas_a.xi_outflow.1.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.2.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.3.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.4.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.5.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.6.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.7.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.8.|flueGasFlowSourcee_bottom.gas_a.xi_outflow.9.|flueGasFlowSourcee_bottom.m_flow_const|flueGasFlowSourcee_bottom.variable_T|flueGasFlowSourcee_bottom.variable_m_flow|flueGasFlowSourcee_bottom.variable_xi|flueGasFlowSourcee_bottom.xi_const.1.|flueGasFlowSourcee_bottom.xi_const.2.|flueGasFlowSourcee_bottom.xi_const.3.|flueGasFlowSourcee_bottom.xi_const.4.|flueGasFlowSourcee_bottom.xi_const.5.|flueGasFlowSourcee_bottom.xi_const.6.|flueGasFlowSourcee_bottom.xi_const.7.|flueGasFlowSourcee_bottom.xi_const.8.|flueGasFlowSourcee_bottom.xi_const.9.|flueGasFlowSourcee_bottom1.T_const|flueGasFlowSourcee_bottom1.contributeToCycleSummary|flueGasFlowSourcee_bottom1.energyType|flueGasFlowSourcee_bottom1.eyeOut.T|flueGasFlowSourcee_bottom1.eyeOut.h|flueGasFlowSourcee_bottom1.eyeOut.m_flow|flueGasFlowSourcee_bottom1.eyeOut.p|flueGasFlowSourcee_bottom1.eyeOut.s|flueGasFlowSourcee_bottom1.eyeOut.xi.1.|flueGasFlowSourcee_bottom1.eyeOut.xi.2.|flueGasFlowSourcee_bottom1.eyeOut.xi.3.|flueGasFlowSourcee_bottom1.eyeOut.xi.4.|flueGasFlowSourcee_bottom1.eyeOut.xi.5.|flueGasFlowSourcee_bottom1.eyeOut.xi.6.|flueGasFlowSourcee_bottom1.eyeOut.xi.7.|flueGasFlowSourcee_bottom1.eyeOut.xi.8.|flueGasFlowSourcee_bottom1.eyeOut.xi.9.|flueGasFlowSourcee_bottom1.eye_int.1..T|flueGasFlowSourcee_bottom1.eye_int.1..h|flueGasFlowSourcee_bottom1.eye_int.1..m_flow|flueGasFlowSourcee_bottom1.eye_int.1..p|flueGasFlowSourcee_bottom1.eye_int.1..s|flueGasFlowSourcee_bottom1.eye_int.1..xi.1.|flueGasFlowSourcee_bottom1.eye_int.1..xi.2.|flueGasFlowSourcee_bottom1.eye_int.1..xi.3.|flueGasFlowSourcee_bottom1.eye_int.1..xi.4.|flueGasFlowSourcee_bottom1.eye_int.1..xi.5.|flueGasFlowSourcee_bottom1.eye_int.1..xi.6.|flueGasFlowSourcee_bottom1.eye_int.1..xi.7.|flueGasFlowSourcee_bottom1.eye_int.1..xi.8.|flueGasFlowSourcee_bottom1.eye_int.1..xi.9.|flueGasFlowSourcee_bottom1.gas_a.T_outflow|flueGasFlowSourcee_bottom1.gas_a.m_flow|flueGasFlowSourcee_bottom1.gas_a.p|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.1.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.2.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.3.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.4.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.5.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.6.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.7.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.8.|flueGasFlowSourcee_bottom1.gas_a.xi_outflow.9.|flueGasFlowSourcee_bottom1.m_flow_const|flueGasFlowSourcee_bottom1.variable_T|flueGasFlowSourcee_bottom1.variable_m_flow|flueGasFlowSourcee_bottom1.variable_xi|flueGasFlowSourcee_bottom1.xi_const.1.|flueGasFlowSourcee_bottom1.xi_const.2.|flueGasFlowSourcee_bottom1.xi_const.3.|flueGasFlowSourcee_bottom1.xi_const.4.|flueGasFlowSourcee_bottom1.xi_const.5.|flueGasFlowSourcee_bottom1.xi_const.6.|flueGasFlowSourcee_bottom1.xi_const.7.|flueGasFlowSourcee_bottom1.xi_const.8.|flueGasFlowSourcee_bottom1.xi_const.9.|flueGasPressureSink_top.T_const|flueGasPressureSink_top.contributeToCycleSummary|flueGasPressureSink_top.energyType|flueGasPressureSink_top.eyeOut.T|flueGasPressureSink_top.eyeOut.h|flueGasPressureSink_top.eyeOut.m_flow|flueGasPressureSink_top.eyeOut.p|flueGasPressureSink_top.eyeOut.s|flueGasPressureSink_top.eyeOut.xi.1.|flueGasPressureSink_top.eyeOut.xi.2.|flueGasPressureSink_top.eyeOut.xi.3.|flueGasPressureSink_top.eyeOut.xi.4.|flueGasPressureSink_top.eyeOut.xi.5.|flueGasPressureSink_top.eyeOut.xi.6.|flueGasPressureSink_top.eyeOut.xi.7.|flueGasPressureSink_top.eyeOut.xi.8.|flueGasPressureSink_top.eyeOut.xi.9.|flueGasPressureSink_top.eye_int.1..T|flueGasPressureSink_top.eye_int.1..h|flueGasPressureSink_top.eye_int.1..m_flow|flueGasPressureSink_top.eye_int.1..p|flueGasPressureSink_top.eye_int.1..s|flueGasPressureSink_top.eye_int.1..xi.1.|flueGasPressureSink_top.eye_int.1..xi.2.|flueGasPressureSink_top.eye_int.1..xi.3.|flueGasPressureSink_top.eye_int.1..xi.4.|flueGasPressureSink_top.eye_int.1..xi.5.|flueGasPressureSink_top.eye_int.1..xi.6.|flueGasPressureSink_top.eye_int.1..xi.7.|flueGasPressureSink_top.eye_int.1..xi.8.|flueGasPressureSink_top.eye_int.1..xi.9.|flueGasPressureSink_top.gas_a.T_outflow|flueGasPressureSink_top.gas_a.m_flow|flueGasPressureSink_top.gas_a.p|flueGasPressureSink_top.gas_a.xi_outflow.1.|flueGasPressureSink_top.gas_a.xi_outflow.2.|flueGasPressureSink_top.gas_a.xi_outflow.3.|flueGasPressureSink_top.gas_a.xi_outflow.4.|flueGasPressureSink_top.gas_a.xi_outflow.5.|flueGasPressureSink_top.gas_a.xi_outflow.6.|flueGasPressureSink_top.gas_a.xi_outflow.7.|flueGasPressureSink_top.gas_a.xi_outflow.8.|flueGasPressureSink_top.gas_a.xi_outflow.9.|flueGasPressureSink_top.p_const|flueGasPressureSink_top.variable_T|flueGasPressureSink_top.variable_p|flueGasPressureSink_top.variable_xi|flueGasPressureSink_top.xi_const.1.|flueGasPressureSink_top.xi_const.2.|flueGasPressureSink_top.xi_const.3.|flueGasPressureSink_top.xi_const.4.|flueGasPressureSink_top.xi_const.5.|flueGasPressureSink_top.xi_const.6.|flueGasPressureSink_top.xi_const.7.|flueGasPressureSink_top.xi_const.8.|flueGasPressureSink_top.xi_const.9.|flueGasPressureSink_top1.T_const|flueGasPressureSink_top1.contributeToCycleSummary|flueGasPressureSink_top1.energyType|flueGasPressureSink_top1.eyeOut.T|flueGasPressureSink_top1.eyeOut.h|flueGasPressureSink_top1.eyeOut.m_flow|flueGasPressureSink_top1.eyeOut.p|flueGasPressureSink_top1.eyeOut.s|flueGasPressureSink_top1.eyeOut.xi.1.|flueGasPressureSink_top1.eyeOut.xi.2.|flueGasPressureSink_top1.eyeOut.xi.3.|flueGasPressureSink_top1.eyeOut.xi.4.|flueGasPressureSink_top1.eyeOut.xi.5.|flueGasPressureSink_top1.eyeOut.xi.6.|flueGasPressureSink_top1.eyeOut.xi.7.|flueGasPressureSink_top1.eyeOut.xi.8.|flueGasPressureSink_top1.eyeOut.xi.9.|flueGasPressureSink_top1.eye_int.1..T|flueGasPressureSink_top1.eye_int.1..h|flueGasPressureSink_top1.eye_int.1..m_flow|flueGasPressureSink_top1.eye_int.1..p|flueGasPressureSink_top1.eye_int.1..s|flueGasPressureSink_top1.eye_int.1..xi.1.|flueGasPressureSink_top1.eye_int.1..xi.2.|flueGasPressureSink_top1.eye_int.1..xi.3.|flueGasPressureSink_top1.eye_int.1..xi.4.|flueGasPressureSink_top1.eye_int.1..xi.5.|flueGasPressureSink_top1.eye_int.1..xi.6.|flueGasPressureSink_top1.eye_int.1..xi.7.|flueGasPressureSink_top1.eye_int.1..xi.8.|flueGasPressureSink_top1.eye_int.1..xi.9.|flueGasPressureSink_top1.gas_a.T_outflow|flueGasPressureSink_top1.gas_a.m_flow|flueGasPressureSink_top1.gas_a.p|flueGasPressureSink_top1.gas_a.xi_outflow.1.|flueGasPressureSink_top1.gas_a.xi_outflow.2.|flueGasPressureSink_top1.gas_a.xi_outflow.3.|flueGasPressureSink_top1.gas_a.xi_outflow.4.|flueGasPressureSink_top1.gas_a.xi_outflow.5.|flueGasPressureSink_top1.gas_a.xi_outflow.6.|flueGasPressureSink_top1.gas_a.xi_outflow.7.|flueGasPressureSink_top1.gas_a.xi_outflow.8.|flueGasPressureSink_top1.gas_a.xi_outflow.9.|flueGasPressureSink_top1.p_const|flueGasPressureSink_top1.variable_T|flueGasPressureSink_top1.variable_p|flueGasPressureSink_top1.variable_xi|flueGasPressureSink_top1.xi_const.1.|flueGasPressureSink_top1.xi_const.2.|flueGasPressureSink_top1.xi_const.3.|flueGasPressureSink_top1.xi_const.4.|flueGasPressureSink_top1.xi_const.5.|flueGasPressureSink_top1.xi_const.6.|flueGasPressureSink_top1.xi_const.7.|flueGasPressureSink_top1.xi_const.8.|flueGasPressureSink_top1.xi_const.9.|simCenter.MaxSimTime|simCenter.T_amb|simCenter.T_amb_start|simCenter.contributeToCycleSummary|simCenter.cycleSumPort.power_aux|simCenter.cycleSumPort.power_in|simCenter.cycleSumPort.power_out_elMech|simCenter.cycleSumPort.power_out_th|simCenter.fuelModel1.C_LHV.1.|simCenter.fuelModel1.C_LHV.2.|simCenter.fuelModel1.C_LHV.3.|simCenter.fuelModel1.C_cp.1.|simCenter.fuelModel1.C_cp.2.|simCenter.fuelModel1.C_cp.3.|simCenter.fuelModel1.C_rho.1.|simCenter.fuelModel1.C_rho.2.|simCenter.fuelModel1.C_rho.3.|simCenter.fuelModel1.N_c|simCenter.fuelModel1.N_e|simCenter.fuelModel1.T_ref|simCenter.fuelModel1.ashIndex|simCenter.fuelModel1.defaultComposition.1.|simCenter.fuelModel1.defaultComposition.2.|simCenter.fuelModel1.waterIndex|simCenter.fuelModel1.xi_e_waf.1,1.|simCenter.fuelModel1.xi_e_waf.1,2.|simCenter.fuelModel1.xi_e_waf.1,3.|simCenter.fuelModel1.xi_e_waf.1,4.|simCenter.fuelModel2.C_LHV.1.|simCenter.fuelModel2.C_LHV.2.|simCenter.fuelModel2.C_LHV.3.|simCenter.fuelModel2.C_cp.1.|simCenter.fuelModel2.C_cp.2.|simCenter.fuelModel2.C_cp.3.|simCenter.fuelModel2.C_rho.1.|simCenter.fuelModel2.C_rho.2.|simCenter.fuelModel2.C_rho.3.|simCenter.fuelModel2.N_c|simCenter.fuelModel2.N_e|simCenter.fuelModel2.T_ref|simCenter.fuelModel2.ashIndex|simCenter.fuelModel2.defaultComposition.1.|simCenter.fuelModel2.defaultComposition.2.|simCenter.fuelModel2.waterIndex|simCenter.fuelModel2.xi_e_waf.1,1.|simCenter.fuelModel2.xi_e_waf.1,2.|simCenter.fuelModel2.xi_e_waf.1,3.|simCenter.fuelModel2.xi_e_waf.1,4.|simCenter.h_amb_fluid1|simCenter.h_amb_fluid2|simCenter.h_amb_fluid3|simCenter.largeFonts|simCenter.p_amb|simCenter.p_amb_start|simCenter.rh_amb|simCenter.s_amb_fluid1|simCenter.s_amb_fluid2|simCenter.s_amb_fluid3|simCenter.showExpertSummary|simCenter.slagModel.cp|simCenter.steamCycleAllowFlowReversal|simCenter.summary.eta_gross|simCenter.summary.eta_net|simCenter.summary.eta_util|simCenter.summary.spec_heat_cons|simCenter.useClaRaDelay|simCenter.useHomotopy|slagFlowSource_top.T_const|slagFlowSource_top.contributeToCycleSummary|slagFlowSource_top.energyType|slagFlowSource_top.m_flow_const|slagFlowSource_top.slagType.cp|slagFlowSource_top.slag_outlet.T_outflow|slagFlowSource_top.slag_outlet.m_flow|slagFlowSource_top.slag_outlet.p|slagFlowSource_top.slag_outlet.slagType.cp|slagFlowSource_top.variable_T|slagFlowSource_top.variable_m_flow|slagFlowSource_top1.T_const|slagFlowSource_top1.contributeToCycleSummary|slagFlowSource_top1.energyType|slagFlowSource_top1.m_flow_const|slagFlowSource_top1.slagType.cp|slagFlowSource_top1.slag_outlet.T_outflow|slagFlowSource_top1.slag_outlet.m_flow|slagFlowSource_top1.slag_outlet.p|slagFlowSource_top1.slag_outlet.slagType.cp|slagFlowSource_top1.variable_T|slagFlowSource_top1.variable_m_flow|slagSink_bottom.T_const|slagSink_bottom.contributeToCycleSummary|slagSink_bottom.energyType|slagSink_bottom.p_const|slagSink_bottom.slagType.cp|slagSink_bottom.slag_inlet.T_outflow|slagSink_bottom.slag_inlet.m_flow|slagSink_bottom.slag_inlet.p|slagSink_bottom.slag_inlet.slagType.cp|slagSink_bottom.variable_T|slagSink_bottom.variable_p|slagSink_bottom1.T_const|slagSink_bottom1.contributeToCycleSummary|slagSink_bottom1.energyType|slagSink_bottom1.p_const|slagSink_bottom1.slagType.cp|slagSink_bottom1.slag_inlet.T_outflow|slagSink_bottom1.slag_inlet.m_flow|slagSink_bottom1.slag_inlet.p|slagSink_bottom1.slag_inlet.slagType.cp|slagSink_bottom1.variable_T|slagSink_bottom1.variable_p",fileNamePrefix="ClaRa_dev_ClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying") Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/SMArtIInt 0.2.2-main/package.mo): time 0.009154/0.009155, allocations: 1.442 MB / 17.75 MB, free: 5.305 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/TILMedia 1.8.1-main/package.mo): time 0.1114/0.1114, allocations: 22.38 MB / 41.17 MB, free: 7.754 MB / 34.91 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo): time 0.001124/0.001124, allocations: 112 kB / 48.66 MB, free: 244 kB / 34.91 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo): time 0.001457/0.001458, allocations: 189.9 kB / 56.25 MB, free: 9.457 MB / 46.55 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo): time 1.471/1.471, allocations: 222.9 MB / 286.6 MB, free: 13.98 MB / 222.1 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.8.2-main/package.mo): time 0.8473/0.8473, allocations: 127.8 MB / 471.3 MB, free: 0.5469 MB / 366.1 MB Notification: Performance of FrontEnd - loaded program: time 0.002427/0.002427, allocations: 123.8 kB / 0.6368 GB, free: 12.31 MB / 478.1 MB Notification: Performance of FrontEnd - Absyn->SCode: time 0.3846/0.387, allocations: 82.34 MB / 0.7172 GB, free: 9.305 MB / 0.5138 GB Notification: Performance of NFInst.instantiate(ClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying): time 0.06304/0.4501, allocations: 64.11 MB / 0.7798 GB, free: 15 MB / 0.5763 GB Notification: Performance of NFInst.instExpressions: time 0.06031/0.5105, allocations: 34.62 MB / 0.8136 GB, free: 12.29 MB / 0.6075 GB Notification: Performance of NFInst.updateImplicitVariability: time 0.01244/0.5229, allocations: 227.6 kB / 0.8138 GB, free: 12.07 MB / 0.6075 GB [/home/hudson/saved_omc/libraries/.openmodelica/libraries/ClaRa 1.8.2-main/SimCenter.mo:69:5-70:35:writable] Warning: Connector cycleSumPort is not balanced: The number of potential variables (0) is not equal to the number of flow variables (4). Notification: Performance of NFTyping.typeComponents: time 0.01658/0.5396, allocations: 6.627 MB / 0.8203 GB, free: 5.406 MB / 0.6075 GB [/home/hudson/saved_omc/libraries/.openmodelica/libraries/TILMedia 1.8.1-main/GasFunctions.mo:243:23-247:26:writable] Warning: Pure function 'TILMedia.GasFunctions.specificEnthalpy_pTxi' contains a call to impure function 'TILMedia.Internals.GasFunctions.specificEnthalpy_pTxi'. Notification: Performance of NFTyping.typeBindings: time 0.0257/0.5653, allocations: 10.26 MB / 0.8303 GB, free: 11.09 MB / 0.6232 GB Notification: Performance of NFTyping.typeClassSections: time 0.02449/0.5899, allocations: 11.02 MB / 0.8411 GB, free: 60 kB / 0.6232 GB Notification: Performance of NFFlatten.flatten: time 0.04645/0.6363, allocations: 36.91 MB / 0.8771 GB, free: 11.08 MB / 0.67 GB Notification: Performance of NFFlatten.resolveConnections: time 0.03956/0.6759, allocations: 27.89 MB / 0.9044 GB, free: 15.05 MB / 0.7013 GB Notification: Performance of NFEvalConstants.evaluate: time 0.03289/0.7089, allocations: 18.92 MB / 0.9229 GB, free: 12.08 MB / 0.7169 GB Notification: Performance of NFSimplifyModel.simplify: time 0.03637/0.7453, allocations: 28.89 MB / 0.9511 GB, free: 15.11 MB / 0.7482 GB Notification: Performance of NFPackage.collectConstants: time 0.02259/0.7679, allocations: 7.148 MB / 0.9581 GB, free: 7.965 MB / 0.7482 GB Notification: Performance of NFFlatten.collectFunctions: time 0.3717/1.14, allocations: 10.3 MB / 0.9681 GB, free: 74.74 MB / 0.7482 GB Notification: Performance of NFScalarize.scalarize: time 0.02885/1.169, allocations: 28.31 MB / 0.9958 GB, free: 74.74 MB / 0.7482 GB Notification: Performance of NFVerifyModel.verify: time 0.05109/1.22, allocations: 31.39 MB / 1.026 GB, free: 67 MB / 0.7482 GB Notification: Performance of NFConvertDAE.convert: time 0.08998/1.31, allocations: 98.24 MB / 1.122 GB, free: 2.664 MB / 0.7482 GB Notification: Performance of FrontEnd - DAE generated: time 7.685e-06/1.31, allocations: 0.5 kB / 1.122 GB, free: 2.664 MB / 0.7482 GB Notification: Performance of FrontEnd: time 2.675e-06/1.31, allocations: 0.625 kB / 1.122 GB, free: 2.664 MB / 0.7482 GB Notification: Performance of Transformations before backend: time 0.002457/1.312, allocations: 3.281 kB / 1.122 GB, free: 2.664 MB / 0.7482 GB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 6394 * Number of variables: 6394 Notification: Performance of Generate backend data structure: time 0.1851/1.497, allocations: 65.98 MB / 1.187 GB, free: 0.7266 MB / 0.8107 GB Notification: Performance of prepare preOptimizeDAE: time 4.361e-05/1.497, allocations: 8.031 kB / 1.187 GB, free: 0.7188 MB / 0.8107 GB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.02509/1.523, allocations: 5.488 MB / 1.192 GB, free: 11.2 MB / 0.8263 GB Notification: Performance of preOpt evaluateParameters (simulation): time 0.134/1.657, allocations: 61.6 MB / 1.252 GB, free: 14.82 MB / 0.8888 GB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.003344/1.66, allocations: 1.962 MB / 1.254 GB, free: 12.72 MB / 0.8888 GB Notification: Performance of preOpt expandDerOperator (simulation): time 0.01556/1.675, allocations: 1.629 MB / 1.256 GB, free: 11.11 MB / 0.8888 GB Notification: Performance of preOpt clockPartitioning (simulation): time 0.8756/2.551, allocations: 75.92 MB / 1.33 GB, free: 243.4 MB / 0.9202 GB Notification: Performance of preOpt findStateOrder (simulation): time 0.0006528/2.552, allocations: 55.06 kB / 1.33 GB, free: 243.3 MB / 0.9202 GB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.01124/2.563, allocations: 0.9797 MB / 1.331 GB, free: 242.7 MB / 0.9202 GB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.001492/2.565, allocations: 1.638 MB / 1.333 GB, free: 242.5 MB / 0.9202 GB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.1372/2.702, allocations: 98.52 MB / 1.429 GB, free: 184.7 MB / 0.9202 GB Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.3601/3.062, allocations: 226.6 MB / 1.65 GB, free: 9.738 MB / 0.967 GB Notification: Performance of preOpt comSubExp (simulation): time 0.793/3.855, allocations: 57.76 MB / 1.706 GB, free: 276.8 MB / 0.9673 GB Notification: Performance of preOpt resolveLoops (simulation): time 0.0491/3.904, allocations: 41.25 MB / 1.747 GB, free: 258.9 MB / 0.9673 GB Notification: Performance of preOpt evalFunc (simulation): time 0.00601/3.91, allocations: 1.14 MB / 1.748 GB, free: 258.3 MB / 0.9673 GB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.0003822/3.911, allocations: 347 kB / 1.748 GB, free: 258.1 MB / 0.9673 GB Notification: Performance of pre-optimization done (n=3639): time 7.06e-05/3.911, allocations: 0 / 1.748 GB, free: 258.1 MB / 0.9673 GB Notification: Performance of matching and sorting (n=3639): time 0.21/4.121, allocations: 129.3 MB / 1.874 GB, free: 153 MB / 0.9673 GB Notification: Performance of inlineWhenForInitialization (initialization): time 0.001427/4.122, allocations: 8.748 MB / 1.883 GB, free: 142.2 MB / 0.9673 GB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.08768/4.21, allocations: 48.37 MB / 1.93 GB, free: 94.39 MB / 0.9673 GB Notification: Performance of collectPreVariables (initialization): time 0.007011/4.217, allocations: 433.7 kB / 1.931 GB, free: 93.96 MB / 0.9673 GB Notification: Performance of collectInitialEqns (initialization): time 0.01715/4.234, allocations: 17.7 MB / 1.948 GB, free: 78.57 MB / 0.9673 GB Notification: Performance of collectInitialBindings (initialization): time 0.0124/4.247, allocations: 12.43 MB / 1.96 GB, free: 67.84 MB / 0.9673 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.03151/4.278, allocations: 6.633 MB / 1.967 GB, free: 61.2 MB / 0.9673 GB Notification: Performance of setup shared object (initialization): time 5.695e-05/4.278, allocations: 305.1 kB / 1.967 GB, free: 60.9 MB / 0.9673 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.0487/4.327, allocations: 39.87 MB / 2.006 GB, free: 21.15 MB / 0.9673 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.4789/4.806, allocations: 48.66 MB / 2.053 GB, free: 261.9 MB / 0.9673 GB Notification: Performance of analyzeInitialSystem (initialization): time 1.085/5.891, allocations: 325.9 MB / 2.372 GB, free: 14.3 MB / 0.9829 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 0.000163/5.891, allocations: 40 kB / 2.372 GB, free: 14.27 MB / 0.9829 GB Notification: Performance of matching and sorting (n=4375) (initialization): time 0.5573/6.448, allocations: 95.37 MB / 2.465 GB, free: 255.5 MB / 0.9829 GB Notification: Performance of prepare postOptimizeDAE: time 0.0001752/6.448, allocations: 63.78 kB / 2.465 GB, free: 255.5 MB / 0.9829 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.001178/6.45, allocations: 458.8 kB / 2.465 GB, free: 255.4 MB / 0.9829 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.01496/6.465, allocations: 4.913 MB / 2.47 GB, free: 254.6 MB / 0.9829 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.07801/6.543, allocations: 9.025 MB / 2.479 GB, free: 254.1 MB / 0.9829 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.01381/6.556, allocations: 14.25 MB / 2.493 GB, free: 242.6 MB / 0.9829 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.03811/6.595, allocations: 3.296 MB / 2.496 GB, free: 242.2 MB / 0.9829 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.00843/6.603, allocations: 1.349 MB / 2.497 GB, free: 242 MB / 0.9829 GB Warning: Assuming fixed start value for the following 3 variables: burner.p:VARIABLE(min = 0.0 start = burner.p_start_flueGas_out unit = "Pa" fixed = true nominal = 1e5 ) "Pressure inside volume" type: Real burner1.p:VARIABLE(min = 0.0 start = burner1.p_start_flueGas_out unit = "Pa" fixed = true nominal = 1e5 ) "Pressure inside volume" type: Real burner2.p:VARIABLE(min = 0.0 start = burner2.p_start_flueGas_out unit = "Pa" fixed = true nominal = 1e5 ) "Pressure inside volume" type: Real Notification: Performance of preBalanceInitialSystem (initialization_lambda0): time 0.0753/6.678, allocations: 52.01 MB / 2.548 GB, free: 203.4 MB / 0.9829 GB Notification: Performance of partitionIndependentBlocks (initialization_lambda0): time 0.05768/6.736, allocations: 48.64 MB / 2.596 GB, free: 151.9 MB / 0.9829 GB Notification: Performance of analyzeInitialSystem (initialization_lambda0): time 1.42/8.156, allocations: 322.6 MB / 2.911 GB, free: 186.8 MB / 0.9829 GB Notification: Performance of solveInitialSystemEqSystem (initialization_lambda0): time 0.0001535/8.156, allocations: 44 kB / 2.911 GB, free: 186.7 MB / 0.9829 GB Notification: Performance of matching and sorting (n=4375) (initialization_lambda0): time 0.1879/8.344, allocations: 95.39 MB / 3.004 GB, free: 93.79 MB / 0.9829 GB Notification: Performance of prepare postOptimizeDAE: time 0.0001641/8.345, allocations: 64 kB / 3.004 GB, free: 93.73 MB / 0.9829 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.001192/8.346, allocations: 455.8 kB / 3.004 GB, free: 93.28 MB / 0.9829 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.01463/8.36, allocations: 4.917 MB / 3.009 GB, free: 88.36 MB / 0.9829 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.07673/8.437, allocations: 9.013 MB / 3.018 GB, free: 79.36 MB / 0.9829 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.01276/8.45, allocations: 14.26 MB / 3.032 GB, free: 64.32 MB / 0.9829 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.03788/8.488, allocations: 2.964 MB / 3.035 GB, free: 62.68 MB / 0.9829 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.008121/8.496, allocations: 1.343 MB / 3.036 GB, free: 61.34 MB / 0.9829 GB Warning: Assuming fixed start value for the following 3 variables: burner.p:VARIABLE(min = 0.0 start = burner.p_start_flueGas_out unit = "Pa" fixed = true nominal = 1e5 ) "Pressure inside volume" type: Real burner1.p:VARIABLE(min = 0.0 start = burner1.p_start_flueGas_out unit = "Pa" fixed = true nominal = 1e5 ) "Pressure inside volume" type: Real burner2.p:VARIABLE(min = 0.0 start = burner2.p_start_flueGas_out unit = "Pa" fixed = true nominal = 1e5 ) "Pressure inside volume" type: Real Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 641 * Number of states: 0 () * Number of discrete variables: 0 () * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (2807): * Single equations (assignments): 2679 * Array equations: 0 * Algorithm blocks: 0 * Record equations: 119 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 1 * Torn equation systems: 8 * Mixed (continuous/discrete) equation systems: 0 Notification: Equation system details (not torn): * Constant Jacobian (size): 0 systems * Linear Jacobian (size,density): 1 system {(10,28.0%)} * Non-linear Jacobian (size): 0 systems * Without analytic Jacobian (size): 0 systems Notification: Torn system details for strict tearing set: * Linear torn systems (#iteration vars, #inner vars, density): 3 systems {(1,1,100.0%), (1,1,100.0%), (1,1,100.0%)} * Non-linear torn systems (#iteration vars, #inner vars): 5 systems {(1,40), (1,1), (1,22), (1,1), (1,1)} Notification: Performance of prepare postOptimizeDAE: time 0.01552/8.511, allocations: 1.686 MB / 3.038 GB, free: 59.73 MB / 0.9829 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.01516/8.527, allocations: 4.561 MB / 3.042 GB, free: 55.58 MB / 0.9829 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.6029/9.13, allocations: 91.9 MB / 3.132 GB, free: 299.9 MB / 1.014 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 0.0005568/9.13, allocations: 106.6 kB / 3.132 GB, free: 299.9 MB / 1.014 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 0.00103/9.131, allocations: 311.4 kB / 3.132 GB, free: 299.8 MB / 1.014 GB Notification: Performance of postOpt removeConstants (simulation): time 0.1773/9.309, allocations: 97.06 MB / 3.227 GB, free: 263.3 MB / 1.014 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.01661/9.325, allocations: 473.9 kB / 3.227 GB, free: 263 MB / 1.014 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.03171/9.357, allocations: 0.9198 MB / 3.228 GB, free: 262.7 MB / 1.014 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.01113/9.368, allocations: 1.555 MB / 3.23 GB, free: 262.6 MB / 1.014 GB [/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/Compiler/BackEnd/DAEMode.mo:528:7-530:90:writable] Error: Internal error DAEMode.traverserStrongComponents failed on equation: 1/1 (24): (flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.d, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.kappa, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodp_hxi, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodh_pxi, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.xi_gas) = TILMedia.Internals.GasObjectFunctions.additionalProperties_pTxi(flueGasPressureSink_top.p_const, flameRoomWithTubeBundle_L2_Dynamic.summary.outline.T_out, {flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[1], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[2], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[3], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[4], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[5], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[6], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[7], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[8], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[9]}, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.gasPointer) Variables: 1: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[2]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 2: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[3]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 3: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[4]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 4: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[5]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 5: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[6]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 6: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[7]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 7: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[8]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 8: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[9]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 9: flameRoomWithTubeBundle_L2_Dynamic.drhodt:VARIABLE(protected = true ) "Density derivative" type: Real 10: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 11: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 12: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 13: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 14: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 15: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 16: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 17: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 18: flameRoomWithTubeBundle_L2_Dynamic.summary.outline.h_out:VARIABLE(unit = "J/kg" nominal = 1000.0 ) "Flue gas enthalpy at outlet" type: Real 19: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[5]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 20: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[9]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 21: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[1]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 22: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.kappa:VARIABLE(unit = "1/Pa" protected = true ) "Isothermal compressibility" type: Real 23: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[3]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 24: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[8]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] [/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/Compiler/BackEnd/DAEMode.mo:528:7-530:90:writable] Error: Internal error DAEMode.traverserStrongComponents failed on equation: 1/1 (1): der(flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out) = (flameRoomWithTubeBundle_L2_Dynamic.Q_flow_wall + flameRoomWithTubeBundle_L2_Dynamic.Q_flow_top + flameRoomWithTubeBundle_L2_Dynamic.Q_flow_bottom + flameRoomWithTubeBundle_L2_Dynamic.Q_flow_CarrierTubes + flameRoomWithTubeBundle_L2_Dynamic.Q_flow_TubeBundle + burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.h - flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out) + flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.fuel.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.fuel.cp * (-298.15 + burner2.bulk.T) + flameRoomWithTubeBundle_L2_Dynamic.Delta_h_f - flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out) + coalSlagFlueGas_split_top.fuel_outlet.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.outlet.fuel.cp * (-298.15 + flameRoomWithTubeBundle_L2_Dynamic.bulk.T) + flameRoomWithTubeBundle_L2_Dynamic.Delta_h_f - flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out) + slagFlowSource_top.m_flow_const * (800.0 * (-298.15 + (if noEvent(slagFlowSource_top.m_flow_const > 0.0) then slagFlowSource_top.T_const else flameRoomWithTubeBundle_L2_Dynamic.T_slag)) - flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out) + flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.slag.m_flow * (800.0 * (-298.15 + (if noEvent(flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.slag.m_flow > 0.0) then burner2.T_slag else flameRoomWithTubeBundle_L2_Dynamic.T_slag)) - flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out - flameRoomWithTubeBundle_L2_Dynamic.summary.outline.h_out)) / flameRoomWithTubeBundle_L2_Dynamic.mass 2/2 (1): flameRoomWithTubeBundle_L2_Dynamic.drhodt = flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodh_pxi * der(flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[1] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[2] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[3] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[3]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[4] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[5] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[6] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[7] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[8] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8]) + flameRoomWithTubeBundle_L2_Dynamic.bulk.drhodxi_ph[9] * der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9]) 3/3 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[3]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[3] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[3]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[3] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[3]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[3] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[3])) / flameRoomWithTubeBundle_L2_Dynamic.mass 4/4 (1): flameRoomWithTubeBundle_L2_Dynamic.summary.outline.T_out = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then flueGasPressureSink_top.T_const else flameRoomWithTubeBundle_L2_Dynamic.bulk.T 5/5 (1): flameRoomWithTubeBundle_L2_Dynamic.V_flow_flueGas_out = (-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) / flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.d 6/6 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.x2 = ClaRa.Basics.Functions.Stepsmoother(0.0, 0.01, -flameRoomWithTubeBundle_L2_Dynamic.V_flow_flueGas_out) 7/7 (1): $cse13 = max(flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.x1 + flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.x2, 1.0) 8/8 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.w = (flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.x1 * flameRoomWithTubeBundle_L2_Dynamic.V_flow_flueGas_in + flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.x2 * flameRoomWithTubeBundle_L2_Dynamic.V_flow_flueGas_out) / (flameRoomWithTubeBundle_L2_Dynamic.geo.A_front * $cse13) 9/9 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Re_psi1 = max(1e-15, flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.properties.d * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.w * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.length_char / (flameRoomWithTubeBundle_L2_Dynamic.geo.psi * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.properties.transp.eta)) 10/10 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_lturb = 0.037 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Re_psi1 ^ 0.8 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.properties.transp.Pr / (1.0 + 2.443 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Re_psi1 ^ (-0.1) * (-1.0 + flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.properties.transp.Pr ^ 0.6666666666666666)) 11/11 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_tubeBank = 0.3 + sqrt(flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_llam ^ 2.0 + flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_lturb ^ 2.0) 12/12 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.alpha = 0.8 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_tubeBank * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.properties.transp.lambda / flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.length_char 13/13 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Q_flow_conv = flameRoomWithTubeBundle_L2_Dynamic.geo.A_heat_CF[2] * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.alpha * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Delta_T_mean 14/14 (1): flameRoomWithTubeBundle_L2_Dynamic.Q_flow_TubeBundle = flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Q_flow_rad + flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Q_flow_conv 15/15 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_llam = 0.664 * sqrt(flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Re_psi1) * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.properties.transp.Pr ^ 0.3333333333333333 16/16 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.w = (abs(flameRoomWithTubeBundle_L2_Dynamic.V_flow_flueGas_in) + abs(flameRoomWithTubeBundle_L2_Dynamic.V_flow_flueGas_out)) / (flameRoomWithTubeBundle_L2_Dynamic.geo.A_cross + flameRoomWithTubeBundle_L2_Dynamic.geo.A_front) 17/17 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Re = max(1e-15, flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.properties.d * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.w * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.length_char / flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.properties.transp.eta) 18/18 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_turb = 0.037 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Re ^ 0.8 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.properties.transp.Pr / (1.0 + 2.443 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Re ^ (-0.1) * (-1.0 + flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.properties.transp.Pr ^ 0.6666666666666666)) 19/19 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_l0 = sqrt(flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_lam ^ 2.0 + flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_turb ^ 2.0) 20/20 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.alpha = 0.8 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_l0 * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.properties.transp.lambda / flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.length_char 21/21 (1): flameRoomWithTubeBundle_L2_Dynamic.Q_flow_CarrierTubes = flameRoomWithTubeBundle_L2_Dynamic.geo.A_heat_CF[3] * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.alpha * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Delta_T_mean 22/22 (1): flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_lam = 0.664 * sqrt(flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Re) * flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.properties.transp.Pr ^ 0.3333333333333333 23/23 (24): (flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.d, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.kappa, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodp_hxi, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodh_pxi, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.xi_gas) = TILMedia.Internals.GasObjectFunctions.additionalProperties_pTxi(flueGasPressureSink_top.p_const, flameRoomWithTubeBundle_L2_Dynamic.summary.outline.T_out, {flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[1], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[2], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[3], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[4], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[5], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[6], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[7], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[8], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[9]}, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.gasPointer) 24/47 (1): flameRoomWithTubeBundle_L2_Dynamic.summary.outline.h_out = TILMedia.Internals.GasObjectFunctions.specificEnthalpy_pTxi(flueGasPressureSink_top.p_const, flameRoomWithTubeBundle_L2_Dynamic.summary.outline.T_out, {flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[1], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[2], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[3], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[4], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[5], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[6], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[7], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[8], flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[9]}, flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.gasPointer) 25/48 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[9] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[9]) - flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9]) / flameRoomWithTubeBundle_L2_Dynamic.mass 26/49 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[8] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[8]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[8] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8])) / flameRoomWithTubeBundle_L2_Dynamic.mass 27/50 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[7] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[7]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[7] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7])) / flameRoomWithTubeBundle_L2_Dynamic.mass 28/51 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[6] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[6]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[6] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6])) / flameRoomWithTubeBundle_L2_Dynamic.mass 29/52 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[5] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[5]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[5] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5])) / flameRoomWithTubeBundle_L2_Dynamic.mass 30/53 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[4] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[4]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[4] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4])) / flameRoomWithTubeBundle_L2_Dynamic.mass 31/54 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[2] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[2]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[2] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2])) / flameRoomWithTubeBundle_L2_Dynamic.mass 32/55 (1): der(flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1]) = (burner2.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.summary.inlet.flueGas.xi[1] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1]) + flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow * (flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1] - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[1]) + flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (flameRoomWithTubeBundle_L2_Dynamic.reactionZone.prod_comp[1] - flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1])) / flameRoomWithTubeBundle_L2_Dynamic.mass 33/56 (1): flameRoomWithTubeBundle_L2_Dynamic.drhodt * flameRoomWithTubeBundle_L2_Dynamic.geo.volume = flameRoomWithTubeBundle_L2_Dynamic.m_flow_fuel_burned * (1.0 - flameRoomWithTubeBundle_L2_Dynamic.elementaryComposition_fuel_in[6] * flameRoomWithTubeBundle_L2_Dynamic.reactionZone.xi_slag) + burner2.eyeOut.m_flow - flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow 34/57 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[9] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9] 35/58 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[8] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8] 36/59 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[7] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7] 37/60 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[6] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6] 38/61 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[5] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 0.9910802775024783 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5] 39/62 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[4] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4] 40/63 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[3] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[3] 41/64 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[2] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2] 42/65 (1): flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[1] = if noEvent((-flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow) > 0.0) then 9.910802775024783e-4 else flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1] Variables: 1: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[1]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 2: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[2]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 3: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[3]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 4: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[4]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 5: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[5]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 6: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[6]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 7: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[7]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 8: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[8]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 9: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.xi[9]:VARIABLE(flow=false min = 0.0 max = 1.0 nominal = 1.0 ) "Mass concentrations" type: Real [9] 10: flameRoomWithTubeBundle_L2_Dynamic.drhodt:VARIABLE(protected = true ) "Density derivative" type: Real 11: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[1]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 12: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[2]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 13: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[4]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 14: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[5]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 15: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[6]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 16: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[7]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 17: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[8]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 18: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[9]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 19: flameRoomWithTubeBundle_L2_Dynamic.summary.outline.h_out:VARIABLE(unit = "J/kg" nominal = 1000.0 ) "Flue gas enthalpy at outlet" type: Real 20: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[5]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 21: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[9]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 22: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[1]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 23: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.kappa:VARIABLE(unit = "1/Pa" protected = true ) "Isothermal compressibility" type: Real 24: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[3]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 25: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[8]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 26: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[7]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 27: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[3]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 28: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[5]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 29: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[4]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 30: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[9]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 31: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[6]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 32: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[6]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 33: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[2]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 34: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[8]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 35: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[2]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 36: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[7]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 37: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.xi_gas:VARIABLE(min = 0.0 max = 1.0 unit = "1" protected = true ) "Mass fraction of gasoues condensing component" type: Real 38: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[1]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 39: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodp_hxi:VARIABLE(unit = "s2/m2" protected = true ) "Derivative of density wrt pressure at specific enthalpy and mass fraction" type: Real 40: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodh_pxi:VARIABLE(unit = "kg.s2/m5" protected = true ) "Derivative of density wrt specific enthalpy at constant pressure and mass fraction" type: Real 41: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_lam:VARIABLE(protected = true ) "Nusselt number laminar" type: Real 42: flameRoomWithTubeBundle_L2_Dynamic.Q_flow_CarrierTubes:VARIABLE(unit = "W" nominal = 1e5 ) "Heat flow from carrier tubes" type: Real 43: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.alpha:VARIABLE(min = 0.0 unit = "W/(m2.K)" nominal = 1.0 ) "Heat transfer coefficient" type: Real 44: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_l0:VARIABLE(protected = true ) "Nusselt number" type: Real 45: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Nu_turb:VARIABLE(protected = true ) "Nusselt number turbulent" type: Real 46: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.Re:VARIABLE(protected = true ) "Reynolds number" type: Real 47: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_CarrierTubes.w:VARIABLE(unit = "m/s" nominal = 1.0 ) "Flue gas velocity" type: Real 48: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_llam:VARIABLE() "Nusselt number laminar" type: Real 49: flameRoomWithTubeBundle_L2_Dynamic.Q_flow_TubeBundle:VARIABLE(unit = "W" nominal = 1e5 ) "Heat flow from tube bundle" type: Real 50: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Q_flow_conv:VARIABLE(unit = "W" nominal = 1e5 ) "Convective heat flow" type: Real 51: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.alpha:VARIABLE() "Convective heat transfer coefficient" type: Real 52: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_tubeBank:VARIABLE() "Nusselt number at tube bank" type: Real 53: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Nu_lturb:VARIABLE() "Nusselt number turbulent" type: Real 54: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.Re_psi1:VARIABLE(protected = true ) "Corrected Reynolds number" type: Real 55: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.w:VARIABLE(unit = "m/s" nominal = 1.0 ) "Flue gas velocity" type: Real 56: $cse13:VARIABLE(protected = true ) type: Real unreplaceable 57: flameRoomWithTubeBundle_L2_Dynamic.heattransfer_TubeBundle.x2:VARIABLE(protected = true ) type: Real 58: flameRoomWithTubeBundle_L2_Dynamic.V_flow_flueGas_out:VARIABLE(unit = "m3/s" nominal = 1.0 ) "Outlet volume flow" type: Real 59: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.d:VARIABLE(min = 0.0 unit = "kg/m3" protected = true ) "Density" type: Real 60: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.p_i[10]:VARIABLE(min = 0.0 unit = "Pa" nominal = 1e5 protected = true ) "Partial pressure" type: Real [10] 61: flameRoomWithTubeBundle_L2_Dynamic.flueGasOutlet.drhodxi_ph[4]:VARIABLE(unit = "kg/(m3)" protected = true ) "Derivative of density wrt mass fraction of water at constant pressure and specific enthalpy" type: Real [9] 62: flameRoomWithTubeBundle_L2_Dynamic.summary.outline.T_out:VARIABLE(min = 0.0 start = 288.15 unit = "K" nominal = 300.0 ) "Outlet temperature" type: Real 63: flameRoomWithTubeBundle_L2_Dynamic.eyeOut.m_flow:VARIABLE(flow=false start = 1.0 nominal = 1.0 ) "Mass flow rate in kg/s" type: Real 64: flameRoomWithTubeBundle_L2_Dynamic.xi_flueGas[3]:STATE(1)(min = 0.0 max = 1.0 unit = "kg/kg" nominal = 1.0 ) "Flue gas composition " type: Real [9] 65: flameRoomWithTubeBundle_L2_Dynamic.h_flueGas_out:STATE(1)(unit = "J/kg" nominal = 1000.0 ) "Gas outlet specific enthalpy" type: Real [/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/Compiler/BackEnd/BackendDAEUtil.mo:9805:5-9806:77:writable] Error: Internal error BackendDAEUtil.traverseEqSystemStrongComponents failed with function: omc_DAEMode_traverserStrongComponents Notification: Performance of postOpt createDAEmodeBDAE (simulation): time 0.05035/9.418, allocations: 10.76 MB / 3.24 GB, free: 256.1 MB / 1.014 GB Error: post-optimization module createDAEmodeBDAE (simulation) failed. Error: Internal error SimCode DAEmode: The model ClaRa.Components.Furnace.Check.Test_burner_adiabatic_fuelDrying could not be translated