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Research Article | Open Access

An analysis of the isoparametric bilinear finite volume element method by applying the Simpson rule to quadrilateral meshes

Shengying Mu1Yanhui Zhou2( )
School of Mathematics and Statistics, Northeast Normal University, Changchun 130024, China
School of Mathematics and Systems Science, Guangdong Polytechnic Normal University, Guangzhou 510665, China
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Abstract

In this work, we construct and study a special isoparametric bilinear finite volume element scheme for solving anisotropic diffusion problems on general convex quadrilateral meshes. The new scheme is obtained by employing the Simpson rule to approximate the line integrals in the classical isoparametric bilinear finite volume element method. By using the cell analysis approach, we suggest a sufficient condition to ensure the coercivity of the new scheme. The sufficient condition has an analytic expression, which only involves the anisotropic diffusion tensor and the geometry of quadrilateral mesh. This yields that for any diffusion tensor and quadrilateral mesh, we can directly judge whether this sufficient condition is satisfied. Specifically, this condition covers the traditional h 1 + γ -parallelogram and some trapezoidal meshes with any full anisotropic diffusion tensor. An optimal H 1 error estimate of the proposed scheme is also obtained for a quasi-parallelogram mesh. The theoretical results are verified by some numerical experiments.

CLC number: 65N08, 65N12

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AIMS Mathematics
Pages 22507-22537

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Cite this article:
Mu S, Zhou Y. An analysis of the isoparametric bilinear finite volume element method by applying the Simpson rule to quadrilateral meshes. AIMS Mathematics, 2023, 8(10): 22507-22537. https://doi.org/10.3934/math.20231147

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Received: 27 May 2023
Revised: 02 July 2023
Accepted: 05 July 2023
Published: 15 October 2023
©2023 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)