Refineable Poisson problem in fish-shaped domain. Template parameter identifies the element type. More...
Public Member Functions | |
RefineableFishPoissonProblem () | |
Constructor. More... | |
virtual | ~RefineableFishPoissonProblem () |
Destructor: Empty. More... | |
void | actions_after_newton_solve () |
Update the problem specs after solve (empty) More... | |
void | actions_before_newton_solve () |
Update the problem specs before solve (empty) More... | |
RefineableFishMesh< ELEMENT > * | mesh_pt () |
Overloaded version of the problem's access function to the mesh. Recasts the pointer to the base Mesh object to the actual mesh type. More... | |
void | doc_solution (DocInfo &doc_info) |
Doc the solution. Output directory and labels are specified by DocInfo object. More... | |
Refineable Poisson problem in fish-shaped domain. Template parameter identifies the element type.
Definition at line 69 of file fish_poisson.cc.
RefineableFishPoissonProblem< ELEMENT >::RefineableFishPoissonProblem |
Constructor.
Constructor for adaptive Poisson problem in fish-shaped domain.
Definition at line 109 of file fish_poisson.cc.
References ConstSourceForPoisson::source_function().
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inlinevirtual |
Destructor: Empty.
Definition at line 78 of file fish_poisson.cc.
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inline |
Update the problem specs after solve (empty)
Definition at line 81 of file fish_poisson.cc.
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inline |
Update the problem specs before solve (empty)
Definition at line 84 of file fish_poisson.cc.
void RefineableFishPoissonProblem< ELEMENT >::doc_solution | ( | DocInfo & | doc_info | ) |
Doc the solution. Output directory and labels are specified by DocInfo object.
Doc the solution in tecplot format.
Definition at line 161 of file fish_poisson.cc.
Referenced by solve_with_fully_automatic_adaptation(), and solve_with_incremental_adaptation().
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inline |
Overloaded version of the problem's access function to the mesh. Recasts the pointer to the base Mesh object to the actual mesh type.
Definition at line 89 of file fish_poisson.cc.
Referenced by solve_with_fully_automatic_adaptation(), and solve_with_incremental_adaptation().