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Article Dans Une Revue Computers and Fluids Année : 2011

A 2D block-structured mesh partitioner for accurate flow simulations on non-rectangular geometries

Résumé

The motivation of this work is to carry out parallel simulations of incompressible flows on block-structured meshes. A new partitioning method is proposed. The quality of rectangular partitions is checked and compared with other methods, as regards load balance, edge-cut and block numbers. The partitioner is coupled with the massively parallel Hypre solver library and efficiency of the coupling is measured. Finally, the code is applied to study laminar flows (steady and unsteady) on three non-rectangular geometries. Very fine grids are used to compute reference solutions of a Z-shaped channel flow and the L-shaped and double lid driven cavities. © 2010 Elsevier Ltd.
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Dates et versions

hal-00861283 , version 1 (12-09-2013)

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  • HAL Id : hal-00861283 , version 1

Citer

Etienne Ahusborde, S. Glockner. A 2D block-structured mesh partitioner for accurate flow simulations on non-rectangular geometries. Computers and Fluids, 2011, 43 (1), pp.2-13. ⟨hal-00861283⟩
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