Convergence of Exponential Attractors for a Finite Element Approximation of the Allen–Cahn Equation

Type: Article

Publication Date: 2018-10-08

Citations: 3

DOI: https://doi.org/10.1080/01630563.2018.1497651

Abstract

We consider a space semidiscretization of the Allen–Cahn equation by continuous piecewise linear finite elements. For every mesh parameter h, we build an exponential attractor of the dynamical system associated with the approximate equations. We prove that, as h tends to 0, this attractor converges for the symmetric Hausdorff distance to an exponential attractor of the dynamical system associated with the Allen–Cahn equation. We also prove that the fractal dimension of the exponential attractor and of the global attractor is bounded by a constant independent of h. Our proof is adapted from the result of Efendiev, Miranville and Zelik concerning the continuity of exponential attractors under perturbation of the underlying semigroup. Here, the perturbation is a space discretization. The case of a time semidiscretization has been analyzed in a previous paper.

Locations

  • Numerical Functional Analysis and Optimization - View
  • HAL (Le Centre pour la Communication Scientifique Directe) - View - PDF

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