Finite volume solution of the two-dimensional Euler equations on a regular triangular mesh
A. Jameson, Dimitri J. Mavriplis
Abstract
A. Jameson, Dimitri J. Mavriplis
Abstract
The two-dimensional Euler equations have been solved on a triangular grid by a multigrid scheme using the finite volume approach. By careful construction of the dissipative terms, the scheme is designed to be secondorder accurate in space, provided the grid is smooth, except in the vicinity of shocks, where it behaves as firstorder accurate. In its present form, the accuracy and convergence rate of the triangle code are comparable to that of the quadrilateral mesh code of Jameson.
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The two-dimensional Euler equations have been solved on a triangular grid by a multigrid scheme using the finite volume approach. By careful construction of the dissipative terms, the scheme is designed to be secondorder accurate in space, provided the grid is smooth, except in the vicinity of shocks, where it behaves as firstorder accurate. In its present form, the accuracy and convergence rate of the triangle code are comparable to that of the quadrilateral mesh code of Jameson.
Key concepts: Quadrilateral, Finite volume method, Multigrid method, Backward Euler method, Euler equations, Euler's formula, Mathematics, Unstructured grid