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Pré-Publication, Document De Travail Année : 2011

A high-order finite volume cell-centered scheme for anisotropic diffusion on two-dimensional unstructured grids

Résumé

In this paper, we describe a high-order cell-centered finite volume method for solving anisotropic diffusion on two-dimensional unstructured grids. The resulting numerical scheme, named CCLAD (Cell-Centered LAgrangian Diffusion), is characterized by a local stencil and cell-centered unknowns. It is devoted to the resolution of diffusion equation on distorted grids in the context of Lagrangian hydrodynamics wherein a strong coupling occurs between gas dynamics and diffusion. The space discretization relies on the introduction of two half-edge normal fluxes and two half-edge temperatures per cell interface using the partition of each cell into sub-cells. For each cell, the two half-edge normal fluxes attached to a node are expressed in terms of the half-edge temperatures impinging at this node and the cell-centered temperature. This local flux approximation can be derived through the use of either a sub-cell variational formulation or a finite difference approximation, leading to the two variants CCLADS and CCLADNS. The elimination of the half-edge temperatures is performed locally at each node by solving a small linear system which is obtained by enforcing the continuity condition of the normal heat flux across sub-cell interface impinging at the node. The accuracy and the robustness of the present scheme is assessed by means of various numerical test cases.
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Dates et versions

hal-00605548 , version 1 (02-07-2011)

Identifiants

  • HAL Id : hal-00605548 , version 1

Citer

P.H. Maire, Jérôme Breil. A high-order finite volume cell-centered scheme for anisotropic diffusion on two-dimensional unstructured grids. 2011. ⟨hal-00605548⟩
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