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Added configuration files for ss-CHT tutorial
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% %
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% SU2 configuration file %
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% Case description: solid-to-solid and solid-to-fluid conjugate heat transfer %
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% with contact resistance. %
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% Author: E.C.Bunschoten %
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% Date: August 6, 2024 %
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% File Version 8.0.1 "Harrier" %
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% %
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% ------------- DIRECT, ADJOINT, AND LINEARIZED PROBLEM DEFINITION ------------%
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SOLVER= INC_NAVIER_STOKES
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INC_ENERGY_EQUATION= YES
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% ------------------- INCOMPRESSIBLE FREE-STREAM DEFINITION -------------------%
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FREESTREAM_TEMPERATURE= 300
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INC_VELOCITY_INIT=(0.1, 0.0, 0.0)
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FLUID_MODEL=INC_IDEAL_GAS
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VISCOSITY_MODEL=CONSTANT_VISCOSITY
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MU_CONSTANT=1e-5
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REF_DIMENSIONALIZATION= DIMENSIONAL
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INC_NONDIM= DIMENSIONAL
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% -------------------- BOUNDARY CONDITION DEFINITION --------------------------%
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%
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INC_INLET_TYPE=VELOCITY_INLET
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INC_OUTLET_TYPE=PRESSURE_OUTLET
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MARKER_SYM= ( side_3 )
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MARKER_INLET= ( inlet, 300, 0.1, 1.0, 0.0, 0.0 )
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MARKER_OUTLET= ( outlet, 0.0)
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MARKER_INTERNAL= (fluid)
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% ------------- COMMON PARAMETERS DEFINING THE NUMERICAL METHOD ---------------%
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CFL_NUMBER= 100
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% -------------------- FLOW NUMERICAL METHOD DEFINITION -----------------------%
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%
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CONV_NUM_METHOD_FLOW= FDS
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MUSCL_FLOW= YES
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% --------------------------- CONVERGENCE PARAMETERS --------------------------%
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CONV_RESIDUAL_MINVAL= -12
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% ------------------------- INPUT/OUTPUT INFORMATION --------------------------%
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%
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MESH_FILENAME= fluid_mesh.su2
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CONV_FILENAME= history_fluid_3
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TABULAR_FORMAT= CSV
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% %
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% SU2 configuration file %
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% Case description: solid-to-solid and solid-to-fluid conjugate heat transfer %
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% with contact resistance. %
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% Author: E.C.Bunschoten %
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% Date: August 6, 2024 %
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% File Version 8.0.1 "Harrier" %
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% %
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% ------------- DIRECT, ADJOINT, AND LINEARIZED PROBLEM DEFINITION ------------%
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%
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SOLVER= MULTIPHYSICS
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MATH_PROBLEM= DIRECT
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MULTIZONE_MESH=NO
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CONFIG_LIST = (solid_1.cfg, solid_2.cfg, fluid.cfg)
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MARKER_ZONE_INTERFACE= (cht_interface_1_2, cht_interface_2_1, \
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cht_interface_1_3, cht_interface_3_1, \
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cht_interface_2_3, cht_interface_3_2)
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MARKER_CHT_INTERFACE= (cht_interface_1_2, cht_interface_2_1, \
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cht_interface_1_3, cht_interface_3_1, \
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cht_interface_2_3, cht_interface_3_2)
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CHT_INTERFACE_CONTACT_RESISTANCE = (1e-5, 0, 0)
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CHT_COUPLING_METHOD= DIRECT_TEMPERATURE_ROBIN_HEATFLUX
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TIME_DOMAIN = NO
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OUTER_ITER = 2000
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WRT_ZONE_HIST=YES
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OUTPUT_FILES=(RESTART, PARAVIEW_MULTIBLOCK)
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% %
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% SU2 configuration file %
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% Case description: solid-to-solid and solid-to-fluid conjugate heat transfer %
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% with contact resistance. %
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% Author: E.C.Bunschoten %
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% Date: August 6, 2024 %
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% File Version 8.0.1 "Harrier" %
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% %
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% ------------- DIRECT, ADJOINT, AND LINEARIZED PROBLEM DEFINITION ------------%
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%
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SOLVER= HEAT_EQUATION
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% -------------------- BOUNDARY CONDITION DEFINITION --------------------------%
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%
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MARKER_ISOTHERMAL= ( isothermal_wall_1, 500.0 )
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MARKER_SYM=(side_1)
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MARKER_MONITORING= ( NONE )
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MARKER_INTERNAL=(solid_1)
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% ---------------- (SOLIDS) CONDUCTION CONDITION DEFINITION -------------------%
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% We should keep the dimensionalization of the coupled flow solver
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INC_NONDIM= DIMENSIONAL
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FREESTREAM_TEMPERATURE= 300.0
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% Properties of stainless steel
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MATERIAL_DENSITY= 8935
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SPECIFIC_HEAT_CP= 3850
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THERMAL_CONDUCTIVITY_CONSTANT=26
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% ------------- COMMON PARAMETERS DEFINING THE NUMERICAL METHOD ---------------%
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CFL_NUMBER= 100.0
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% -------------------- HEAT NUMERICAL METHOD DEFINITION -----------------------%
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TIME_DISCRE_HEAT= EULER_IMPLICIT
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% ------------------------- INPUT/OUTPUT INFORMATION --------------------------%
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TABULAR_FORMAT= CSV
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CONV_FILENAME= history_solid_1
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MESH_FILENAME=solid_mesh_1.su2
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% %
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% SU2 configuration file %
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% Case description: solid-to-solid and solid-to-fluid conjugate heat transfer %
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% with contact resistance. %
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% Author: E.C.Bunschoten %
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% Date: August 6, 2024 %
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% File Version 8.0.1 "Harrier" %
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% %
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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% ------------- DIRECT, ADJOINT, AND LINEARIZED PROBLEM DEFINITION ------------%
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%
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SOLVER= HEAT_EQUATION
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% -------------------- BOUNDARY CONDITION DEFINITION --------------------------%
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%
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MARKER_ISOTHERMAL= ( isothermal_wall_2, 300.0 )
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MARKER_SYM=(side_2)
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MARKER_INTERNAL=(solid_2)
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% ---------------- (SOLIDS) CONDUCTION CONDITION DEFINITION -------------------%
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% We should keep the dimensionalization of the coupled flow solver
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INC_NONDIM= DIMENSIONAL
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FREESTREAM_TEMPERATURE= 300.0
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MATERIAL_DENSITY= 8000
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SPECIFIC_HEAT_CP= 4420
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THERMAL_CONDUCTIVITY_CONSTANT= 61
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% ------------- COMMON PARAMETERS DEFINING THE NUMERICAL METHOD ---------------%
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CFL_NUMBER= 100.0
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% ------------------------- INPUT/OUTPUT INFORMATION --------------------------%
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MESH_FILENAME= solid_mesh_2.su2
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TABULAR_FORMAT= CSV
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CONV_FILENAME= history_solid_2
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