4.6 Article Proceedings Paper

A multigrid solver for phase field simulation of microstructure evolution

Journal

MATHEMATICS AND COMPUTERS IN SIMULATION
Volume 80, Issue 7, Pages 1438-1448

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.matcom.2009.10.007

Keywords

Phase field simulation; Nonlinear multigrid method; Grain growth

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This paper presents a semi-implicit numerical method for the simulation of grain growth in two dimensions with a multi-phase field model To avoid the strong stability condition of traditional explicit methods, a first-order, semi-implicit discretisation scheme is employed, which offers a good compromise with regard to memory intensity and computational requirements A nonlinear multigrid solver based on the Full Approximation Scheme is implemented to solve the equations resulting from this discretisation Simulations with the multigrid solver show that the solver has grid size independent convergence properties and is faster than a standard first-order explicit solver As such, the multigrid solver promises to be a reliable additional computational tool for the simulation of microstructural evolution A comparison with existing alternatives remains, however, subject of further investigation. To validate the implementation, the results of specific test cases are studied. (C) 2009 IMACS Published by Elsevier B.V All rights reserved

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