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Peano
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Public Member Functions | |
| __init__ (self, dimensions, adv_speed=1.0) | |
| eigenvalues (self) | |
| flux (self) | |
Data Fields | |
| dimensions | |
| num_unknowns | |
| num_auxiliary_variables | |
| adv_speed | |
| is_linear | |
Additional Inherited Members | |
Static Public Member Functions inherited from equations.equation.Equation | |
| ncp () | |
Static Public Attributes inherited from equations.equation.Equation | |
| int | dimensions = 2 |
| int | num_unknowns = 0 |
| int | num_auxiliary_variables = 0 |
| bool | is_linear = False |
Definition at line 6 of file advection.py.
| equations.advection.Advection.__init__ | ( | self, | |
| dimensions, | |||
| adv_speed = 1.0 ) |
Definition at line 7 of file advection.py.
| equations.advection.Advection.eigenvalues | ( | self | ) |
Reimplemented from equations.equation.Equation.
Definition at line 14 of file advection.py.
References equations.advection.Advection.adv_speed.
Referenced by exahype2.symhype.FirstOrderConservativePDEFormulation.FirstOrderConservativePDEFormulation.implementation_of_eigenvalues(), exahype2.symhype.FirstOrderConservativePDEFormulation.FirstOrderConservativePDEFormulation.implementation_of_max_eigenvalue(), and exahype2.symhype.FirstOrderConservativePDEFormulation.FirstOrderConservativePDEFormulation.LaTeX().

| equations.advection.Advection.flux | ( | self | ) |
Reimplemented from equations.equation.Equation.
Definition at line 24 of file advection.py.
References equations.advection.Advection.adv_speed.
| equations.advection.Advection.adv_speed |
Definition at line 11 of file advection.py.
Referenced by equations.advection.Advection.eigenvalues(), and equations.advection.Advection.flux().
| equations.advection.Advection.dimensions |
Definition at line 8 of file advection.py.
Referenced by peano4.visualisation.input.PatchFileParser.PatchFileParser.__parse_meta_data_region(), peano4.visualisation.input.PatchFileParser.PatchFileParser.__parse_patch_region(), exahype2.symhype.PDE.PDE._implementation_of_mapping_onto_named_quantities(), peano4.visualisation.input.PatchFileParser.UnknownAttributes._initialise_default_mapping_if_no_mapping_specified(), mghype.api.matrixgenerators.MatrixGenerator.MatrixGenerator.convert_index_to_dim(), equations.euler.Euler.eigenvalues(), mghype.api.matrixgenerators.MatrixGenerator.MatrixGenerator.eval_integral(), equations.elastic.Elastic.flux(), equations.euler.Euler.flux(), mghype.api.matrixgenerators.GaussLobatto.GaussLobattoMatrixFree.get_boundary_matrix(), mghype.api.matrixgenerators.GaussLobatto.GaussLobattoMatrixFree.get_cell_from_face_matrix(), mghype.api.matrixgenerators.DLinear.DLinear.get_cell_identity_matrix(), mghype.api.matrixgenerators.DLinearMassIdentity.DLinearMassIdentity.get_cell_identity_matrix(), mghype.api.matrixgenerators.DLinear.DLinear.get_cell_mass_matrix(), mghype.api.matrixgenerators.DLinear.DLinear.get_cell_system_matrix_for_laplacian(), mghype.api.matrixgenerators.DLinearMassIdentity.DLinearMassIdentity.get_cell_system_matrix_for_laplacian(), mghype.api.matrixgenerators.MatrixGenerator.MatrixGenerator.get_deriv(), mghype.api.matrixgenerators.MatrixGenerator.MatrixGenerator.get_points_for_dimension(), mghype.api.matrixgenerators.MatrixGenerator.MatrixGenerator.get_polynomial(), mghype.api.matrixgenerators.GaussLobatto.GaussLobattoMatrixFree.get_projection_matrices(), mghype.api.matrixgenerators.MatrixGenerator.MatrixGenerator.get_weights_for_dimension(), matrices.DgGenerator.getCellToFaceMatrix(), exahype2.symhype.FirstOrderConservativePDEFormulation.FirstOrderConservativePDEFormulation.implementation_of_eigenvalues(), exahype2.symhype.FirstOrderConservativePDEFormulation.FirstOrderConservativePDEFormulation.implementation_of_flux(), exahype2.symhype.FirstOrderConservativePDEFormulation.FirstOrderConservativePDEFormulation.implementation_of_max_eigenvalue(), exahype2.symhype.FirstOrderConservativePDEFormulation.FirstOrderConservativePDEFormulation.implementation_of_ncp(), api.solvers.DiscontinuousGalerkinDiscretisation.DiscontinuousGalerkinDiscretisation.nodes_per_cell(), api.solvers.DiscontinuousGalerkinDiscretisation.DiscontinuousGalerkinDiscretisation.nodes_per_face(), and peano4.visualisation.input.PatchFileParser.PatchFileParser.parse_file().
| equations.advection.Advection.is_linear |
Definition at line 12 of file advection.py.
| equations.advection.Advection.num_auxiliary_variables |
Definition at line 10 of file advection.py.
| equations.advection.Advection.num_unknowns |
Definition at line 9 of file advection.py.