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Coupling Stokes–Darcy Flow with Transport

SIAM J. Sci. Comput. Volume 31, Issue 5, pp. 3661-3684 (2009)

Published October 1, 2009
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A mathematical and numerical model describing chemical transport in a Stokes–Darcy flow system is discussed. The flow equations are solved through domain decomposition using classical finite element methods in the Stokes region and mixed finite element methods in the Darcy region. The local discontinuous Galerkin (LDG) method is used to solve the transport equation. Models dealing with coupling between Stokes and Darcy equations have been extensively discussed in the literature. This paper focuses on the approximation of the transport equation. Stability of the LDG scheme is analyzed, and an a priori error estimate is proved. Several numerical examples verifying the theory and illustrating the capabilities of the method are presented.

©2009 Society for Industrial and Applied Mathematics
History: Received August 4, 2008; accepted June 16, 2009; published October 1, 2009
Permalink: http://dx.doi.org/10.1137/080732146

KEYWORDS and AMS

Keywords
AMS Subject Classifications
65M12, 65M15, 65N30, 76D07, 76S05

PUBLICATION DATA

ISSN:
1064-8275 (print)   1095-7197 (online)
Publisher:
AIP is a member of CrossRef SIAM

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