Analysis of A Mixed Finite Element Method for Poisson's Equation with Rough Boundary Data

Fuente: arXiv
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Main Authors: Gao, Huadong, Huang, Yuhui, Xie, Wen
Format: Preprint
Published: 2025
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author Gao, Huadong
Huang, Yuhui
Xie, Wen
author_facet Gao, Huadong
Huang, Yuhui
Xie, Wen
contents This paper is concerned with finite element methods for Poisson's equation with rough boundary data. Conventional methods require that the boundary data $g$ of the problem belongs to $H^{1/2} (\partial Ω)$. However, in many applications one has to consider the case when $g$ is in $L^2(\partial Ω)$ only. To this end, very weak solutions are considered to establish the well-posedness of the problem. Most previously proposed numerical methods use regularizations of the boundary data. The main purpose of this paper is to use the Raviart--Thomas mixed finite element method to solve the Poisson equation with rough boundary data directly. We prove that the solution to the proposed mixed method converges to the very weak solution. In particular, we prove that the convergence rate of the numerical solution is $O(h^{1/2})$ in convex domains and $O(h^{s-1/2})$ in nonconvex domains, where $s > 1/2$ depends on the geometry of the domain. The analysis is based on a regularized approach and a rigorous estimate for the corresponding dual problem. Numerical experiments confirm the theoretically predicted convergence rates for the proposed mixed method for Poisson's equation with rough boundary data.
format Preprint
id arxiv_https___arxiv_org_abs_2507_00697
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Analysis of A Mixed Finite Element Method for Poisson's Equation with Rough Boundary Data
Gao, Huadong
Huang, Yuhui
Xie, Wen
Numerical Analysis
This paper is concerned with finite element methods for Poisson's equation with rough boundary data. Conventional methods require that the boundary data $g$ of the problem belongs to $H^{1/2} (\partial Ω)$. However, in many applications one has to consider the case when $g$ is in $L^2(\partial Ω)$ only. To this end, very weak solutions are considered to establish the well-posedness of the problem. Most previously proposed numerical methods use regularizations of the boundary data. The main purpose of this paper is to use the Raviart--Thomas mixed finite element method to solve the Poisson equation with rough boundary data directly. We prove that the solution to the proposed mixed method converges to the very weak solution. In particular, we prove that the convergence rate of the numerical solution is $O(h^{1/2})$ in convex domains and $O(h^{s-1/2})$ in nonconvex domains, where $s > 1/2$ depends on the geometry of the domain. The analysis is based on a regularized approach and a rigorous estimate for the corresponding dual problem. Numerical experiments confirm the theoretically predicted convergence rates for the proposed mixed method for Poisson's equation with rough boundary data.
title Analysis of A Mixed Finite Element Method for Poisson's Equation with Rough Boundary Data
topic Numerical Analysis
url https://arxiv.org/abs/2507.00697