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Nouvelle approche pour la discrétisation de flux diffusifs en volumes finis à forte obliquité
Authors:Yves Marcel Ahipo  Philippe Traore
Institution:Université de Poitiers, laboratoire d''études aérodynamiques, boulevard Marie et Pierre Curie, BP 30179, 86962 Futuroscope, Chasseneuil cedex, France
Abstract:We propose a new approach for the discretization of diffusive flux on a non orthogonal mesh based on the Deferred correction introduced by Peric. This new method is applied successfully to the solution of a Poisson problem in quadrangular domains meshed with very distorted control volumes. The interest of this approach lies in the fact that the precision of the used schemes is conserved despite meshes distortion level. The comparative study of the value of the spectral radius of iteration matrix enables us to explain why our Deferred correction approach is better than that of Peric, which diverges on highly skewed meshes. To cite this article: Y.M. Ahipo, Ph. Traore, C. R. Mecanique 334 (2006).
Keywords:Mécanique des fluides numérique  Volumes finis  Flux diffusif  Équation de Poisson  Deferred correction  Forte obliquité  Computational fluid mechanics  Finite volume  Diffusive flux  Poisson equation  Deferred correction  Strong skewness
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