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Article Dans Une Revue Computers and Fluids Année : 2003

A direct spectral domain decomposition method for the computation of rotating flows in a T-shape geometry

Résumé

This paper presents a direct domain decomposition method, coupled with a Chebyshev collocation approximation, for solving the incompressible Navier-Stokes equations in the vorticity-streamfunction formulation. The method is based on the influence matrix technique used to treat the lack of vorticity boundary conditions on no-slip walls as well as to enforce the continuity conditions at the interfaces between adjacent subdomains. The multi-domain approach is proposed in order to extend the use of spectral approximations to non-rectangular geometries and singular solutions. It is applied to the computation of a four domain configuration, corresponding to a forced throughflow in a rotating channel-cavity system which is important in air cooling devices and cannot be modeled by single-domain spectral approximations.

Dates et versions

hal-00846076 , version 1 (18-07-2013)

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Isabelle Raspo. A direct spectral domain decomposition method for the computation of rotating flows in a T-shape geometry. Computers and Fluids, 2003, 32 (3), pp.431-456. ⟨10.1016/S0045-7930(01)00091-3⟩. ⟨hal-00846076⟩

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