Velocity-Based Moving Mesh Methods for Nonlinear Partial Differential Equations

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Abstract

This article describes a number of velocity-based moving mesh numerical methods for multidimensional nonlinear time-dependent partial differential equations (PDEs). It consists of a short historical review followed by a detailed description of a recently developed multidimensional moving mesh finite element method based on conservation. Finite element algorithms are derived for both mass-conserving and non mass-conserving problems, and results shown for a number of multidimensional nonlinear test problems, including the second order porous medium equation and the fourth order thin film equation as well as a two-phase problem. Further applications and extensions are referenced.

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DOI

10.4208/cicp.201010.040511a

How to Cite

Velocity-Based Moving Mesh Methods for Nonlinear Partial Differential Equations. (2011). Communications in Computational Physics, 10(3), 509-576. https://doi.org/10.4208/cicp.201010.040511a