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Parallel adaptive multigrid algorithm for 2-d 3-t diffusion equations 

Authors: Mo Zeyao a;  Shen Longjun a; Gabriel Wittum b
Affiliations:   a Institute of Applied Physics and Computational Mathematics, Beijing, P.R. China
b Technical Simulation Group, IWR, University of Heidelberg, Germany
DOI: 10.1080/00207160410001661735
Publication Frequency: 12 issues per year
Published in: journal International Journal of Computer Mathematics, Volume 81, Issue 3 March 2004 , pages 361 - 374
Number of References: 12
Formats available: PDF (English)
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Abstract

Two-dimensional diffusion equations coupled with electron, ion and photon temperatures are widely used to approximately describe the radiation evolution of energy across multiple materials and perceive the exchange of energy among electrons, ions and photons for numerical researches on laser-driven implosion of a fuel capsule in inertial confinement fusion experiments. The numerical solution of such equations is always fascinating because of its strong nonlinear phenomena and strong discontinuous interfaces. On the basis of UG framework, this article successfully solves such equations on two-dimensional unstructured grid applied with full implicit finite volume discrete scheme and parallel adaptive multigrid algorithm. Significant numerical results are given and analyzed.
Keywords: 3-T diffusion equations; Unstructured grid; Parallel adaptive multigrid algorithm; UG framework
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