Exponential integrator Fourier Galerkin methods for semilinear parabolic equations

Fuente: arXiv
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Main Authors: Huang, Jianguo, Xu, Yuejin
Format: Preprint
Published: 2024
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_version_ 1866917851243216896
author Huang, Jianguo
Xu, Yuejin
author_facet Huang, Jianguo
Xu, Yuejin
contents In this paper, in order to improve the spatial accuracy, the exponential integrator Fourier Galerkin method (EIFG) is proposed for solving semilinear parabolic equations in rectangular domains. In this proposed method, the spatial discretization is first carried out by the Fourier-based Galerkin approximation, and then the time integration of the resulting semi-discrete system is approximated by the explicit exponential Runge-Kutta approach, which leads to the fully-discrete numerical solution. With certain regularity assumptions on the model problem, error estimate measured in $H^2$-norm is explicitly derived for EIFG method with two RK stages. Several two and three dimensional examples are shown to demonstrate the excellent performance of EIFG method, which are coincident to the theoretical results.
format Preprint
id arxiv_https___arxiv_org_abs_2411_19265
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Exponential integrator Fourier Galerkin methods for semilinear parabolic equations
Huang, Jianguo
Xu, Yuejin
Numerical Analysis
In this paper, in order to improve the spatial accuracy, the exponential integrator Fourier Galerkin method (EIFG) is proposed for solving semilinear parabolic equations in rectangular domains. In this proposed method, the spatial discretization is first carried out by the Fourier-based Galerkin approximation, and then the time integration of the resulting semi-discrete system is approximated by the explicit exponential Runge-Kutta approach, which leads to the fully-discrete numerical solution. With certain regularity assumptions on the model problem, error estimate measured in $H^2$-norm is explicitly derived for EIFG method with two RK stages. Several two and three dimensional examples are shown to demonstrate the excellent performance of EIFG method, which are coincident to the theoretical results.
title Exponential integrator Fourier Galerkin methods for semilinear parabolic equations
topic Numerical Analysis
url https://arxiv.org/abs/2411.19265