A finite volume method with linearisation in time for the solution of advection–reaction–diffusion systems

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摘要

The numerical solution in one space dimension of advection–reaction–diffusion systems with nonlinear source terms may invoke a high computational cost when the presently available methods are used. Numerous examples of finite volume schemes with high order spatial discretisations together with various techniques for the approximation of the advection term can be found in the literature.Almost all such techniques result in a nonlinear system of equations as a consequence of the finite volume discretisation especially when there are nonlinear source terms in the associated partial differential equation models.This work introduces a new technique that avoids having such nonlinear systems of equations generated by the spatial discretisation process when nonlinear source terms in the model equations can be expanded in positive powers of the dependent function of interest.The basis of this method is a new linearisation technique for the temporal integration of the nonlinear source terms as a supplementation of a more typical finite volume method. The resulting linear system of equations is shown to be both accurate and significantly faster than methods that necessitate the use of solvers for nonlinear system of equations.

论文关键词:Nonlinear,Reaction,Advection,Diffusion,Shock,Chemotaxis,Finite volume method

论文评审过程:Available online 31 January 2014.

论文官网地址:https://doi.org/10.1016/j.amc.2013.12.179