Error estimates for semidiscrete finite element methods for parabolic integro-differential equations

Author:

Thomée Vidar,Zhang Nai Ying

Abstract

The purpose of this paper is to attempt to carry over known results for spatially discrete finite element methods for linear parabolic equations to integro-differential equations of parabolic type with an integral kernel consisting of a partial differential operator of order β 2 \beta \leq 2 . It is shown first that this is possible without restrictions when the exact solution is smooth. In the case of a homogeneous equation with nonsmooth initial data v , v L 2 v,v \in {L_2} , optimal O ( h r ) O({h^r}) convergence for positive time is possible in general only if r 4 β r \leq 4 - \beta . This depends on the fact that the exact solution is then only in H 4 β {H^{4 - \beta }} .

Publisher

American Mathematical Society (AMS)

Subject

Applied Mathematics,Computational Mathematics,Algebra and Number Theory

Reference8 articles.

1. Some convergence estimates for semidiscrete Galerkin type approximations for parabolic equations;Bramble, J. H.;SIAM J. Numer. Anal.,1977

2. J. R. Cannon & Y. Lin, "A priori 𝐿² error estimates for Galerkin methods for nonlinear parabolic integro-differential equations," Manuscript, 1987.

3. Finite element methods for parabolic and hyperbolic partial integro-differential equations;Yanik, Elizabeth G.;Nonlinear Anal.,1988

4. Numerical solution of semilinear integrodifferential equations of parabolic type with nonsmooth data;Le Roux, Marie-Noëlle;SIAM J. Numer. Anal.,1989

5. Time discretization of an integro-differential equation of parabolic type;Sloan, I. H.;SIAM J. Numer. Anal.,1986

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