Numerical Solution of Parabolic Problems Based on a Weak Space-Time Formulation

Author:

Larsson Stig1,Molteni Matteo2

Affiliation:

1. 1Department of Mathematical Sciences, Chalmers University of Technology and University of Gothenburg, SE–41296 Gothenburg, Sweden

2. 2Department of Mathematical Sciences, Chalmers University of Technologyand University of Gothenburg, SE–41296 Gothenburg, Sweden

Abstract

AbstractWe investigate a weak space-time formulation of the heat equation and its use for the construction of a numerical scheme. The formulation is based on a known weak space-time formulation, with the difference that a pointwise component of the solution, which in other works is usually neglected, is now kept. We investigate the role of such a component by first using it to obtain a pointwise bound on the solution and then deploying it to construct a numerical scheme. The scheme obtained, besides being quasi-optimal in the ${L^{2}}$ sense, is also pointwise superconvergent in the temporal nodes. We prove a priori error estimates and we present numerical experiments to empirically support our findings.

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics,Computational Mathematics,Numerical Analysis

Reference34 articles.

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4. Stability of sparse space-time finite element discretizations of linear parabolic evolution equations;IMA J. Numer. Anal.,2013

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