ANZIAM J. 44(E) ppC664--C686, 2003.

Derive boundary conditions for holistic discretisations of Burgers' equation

A. J. Roberts

(Received 26 June 2001)

Abstract

I previously used Burgers' equation to introduce a new method of numerical discretisation of PDEs. The analysis is based upon centre manifold theory so we are assured that the discretisation accurately models all the processes and their subgrid scale interactions. Here I show how boundaries to the physical domain may be naturally incorporated into the numerical modelling of Burgers' equation. We investigate Neumann and Dirichlet boundary conditions. As well as modelling the nonlinear advection, the method naturally derives symmetric matrices with constant bandwidth to correspond to the self-adjoint diffusion operator. The techniques developed here may be used to accurately model the nonlinear evolution of quite general spatio-temporal dynamical systems on bounded domains.

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Authors

A. J. Roberts
Dept. Maths \& Computing, University of Southern Queensland, Toowoomba, Queensland 4352, Australia. mailto:aroberts@usq.edu.au

Published 1 April 2003. ISSN 1446-8735

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Last Modified: Wed Apr 2 13:37:22 2003

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