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A second order finite volume technique for simulating transport in anisotropic media

Jayantha Pasdunkorale A. (Centre in Statistical Science and Industrial Mathematics, School of Mathematical Sciences, Gardens Point Campus, Queensland University of Technology, Brisbane, Australia)
Ian W. Turner (Centre in Statistical Science and Industrial Mathematics, School of Mathematical Sciences, Gardens Point Campus, Queensland University of Technology, Brisbane, Australia)

International Journal of Numerical Methods for Heat & Fluid Flow

ISSN: 0961-5539

Article publication date: 1 February 2003

657

Abstract

An existing two‐dimensional finite volume technique is modified by introducing a correction term to increase the accuracy of the method to second order. It is well known that the accuracy of the finite volume method strongly depends on the order of the approximation of the flux term at the control volume (CV) faces. For highly orthotropic and anisotropic media, first order approximations produce inaccurate simulation results, which motivates the need for better estimates of the flux expression. In this article, a new approach to approximate the flux term at the CV face is presented. The discretisation involves a decomposition of the flux and an improved least squares approximation technique to calculate the derivatives of the dependent function on the CV faces for estimating both the cross diffusion term and a correction for the primary flux term. The advantage of this method is that any arbitrary unstructured mesh can be used to implement the technique without considering the shapes of the mesh elements. It was found that the numerical results well matched the available exact solution for a representative transport equation in highly orthotropic media and the benchmark solutions obtained on a fine mesh for anisotropic media. Previously proposed CV techniques are compared with the new method to highlight its accuracy for different unstructured meshes.

Keywords

Citation

Pasdunkorale A., J. and Turner, I.W. (2003), "A second order finite volume technique for simulating transport in anisotropic media", International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 13 No. 1, pp. 31-56. https://doi.org/10.1108/09615530310456750

Publisher

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MCB UP Ltd

Copyright © 2003, MCB UP Limited

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