COOLFluiD
Release kernel
COOLFluiD is a Collaborative Simulation Environment (CSE) focused on complex MultiPhysics simulations.
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Variables | |
int | n = 10 |
tuple | measurement = ET.Element('DartMeasurement', name = 'Problem size', type = 'numeric/integer') |
tuple | model = cf.Core.root() |
tuple | domain = model.create_domain() |
tuple | physics = model.create_physics('cf3.UFEM.NavierStokesPhysics') |
tuple | solver = model.create_solver('cf3.UFEM.Solver') |
tuple | ns_solver = solver.add_unsteady_solver('cf3.UFEM.demo.NavierStokesChorin') |
tuple | mesh = domain.create_component('Mesh', 'cf3.mesh.Mesh') |
tuple | mesh_generator = domain.create_component("MeshGenerator","cf3.mesh.SimpleMeshGenerator") |
tuple | triangulator = domain.create_component('triangulator', 'cf3.mesh.MeshTriangulator') |
tuple | ic_u = solver.InitialConditions.create_initial_condition(builder_name = 'cf3.UFEM.InitialConditionFunction', field_tag = 'navier_stokes_u_solution') |
tuple | ic_p = solver.InitialConditions.create_initial_condition(builder_name = 'cf3.UFEM.InitialConditionFunction', field_tag = 'navier_stokes_p_solution') |
tuple | bc_wall = ns_solver.VelocityBC.create_bc_action(region_name = 'top', builder_name = 'cf3.UFEM.BCDirichletFunction') |
tuple | bc_p_out = ns_solver.PressureBC.create_bc_action(region_name = 'right', builder_name = 'cf3.UFEM.BCDirichletFunction') |
tuple | bc_p_in = ns_solver.PressureBC.create_bc_action(region_name = 'left', builder_name = 'cf3.UFEM.BCDirichletFunction') |
tuple | lss = ns_solver.children.AuxiliaryLSS.create_lss() |
tuple | time = model.create_time() |
tuple bc_p_in = ns_solver.PressureBC.create_bc_action(region_name = 'left', builder_name = 'cf3.UFEM.BCDirichletFunction') |
Definition at line 77 of file atest-ufem-demo-chorin.py.
tuple bc_p_out = ns_solver.PressureBC.create_bc_action(region_name = 'right', builder_name = 'cf3.UFEM.BCDirichletFunction') |
Definition at line 72 of file atest-ufem-demo-chorin.py.
tuple bc_wall = ns_solver.VelocityBC.create_bc_action(region_name = 'top', builder_name = 'cf3.UFEM.BCDirichletFunction') |
Definition at line 64 of file atest-ufem-demo-chorin.py.
tuple domain = model.create_domain() |
Definition at line 22 of file atest-ufem-demo-chorin.py.
tuple ic_p = solver.InitialConditions.create_initial_condition(builder_name = 'cf3.UFEM.InitialConditionFunction', field_tag = 'navier_stokes_p_solution') |
Definition at line 55 of file atest-ufem-demo-chorin.py.
tuple ic_u = solver.InitialConditions.create_initial_condition(builder_name = 'cf3.UFEM.InitialConditionFunction', field_tag = 'navier_stokes_u_solution') |
Definition at line 49 of file atest-ufem-demo-chorin.py.
tuple lss = ns_solver.children.AuxiliaryLSS.create_lss() |
Definition at line 86 of file atest-ufem-demo-chorin.py.
tuple measurement = ET.Element('DartMeasurement', name = 'Problem size', type = 'numeric/integer') |
Definition at line 15 of file atest-ufem-demo-chorin.py.
tuple mesh = domain.create_component('Mesh', 'cf3.mesh.Mesh') |
Definition at line 32 of file atest-ufem-demo-chorin.py.
tuple mesh_generator = domain.create_component("MeshGenerator","cf3.mesh.SimpleMeshGenerator") |
Definition at line 33 of file atest-ufem-demo-chorin.py.
tuple model = cf.Core.root() |
Definition at line 20 of file atest-ufem-demo-chorin.py.
int n = 10 |
Definition at line 12 of file atest-ufem-demo-chorin.py.
tuple ns_solver = solver.add_unsteady_solver('cf3.UFEM.demo.NavierStokesChorin') |
Definition at line 29 of file atest-ufem-demo-chorin.py.
tuple physics = model.create_physics('cf3.UFEM.NavierStokesPhysics') |
Definition at line 24 of file atest-ufem-demo-chorin.py.
tuple solver = model.create_solver('cf3.UFEM.Solver') |
Definition at line 28 of file atest-ufem-demo-chorin.py.
tuple time = model.create_time() |
Definition at line 95 of file atest-ufem-demo-chorin.py.
tuple triangulator = domain.create_component('triangulator', 'cf3.mesh.MeshTriangulator') |
Definition at line 41 of file atest-ufem-demo-chorin.py.
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