The direct-line method for forward and inverse linear elasticity problems of composite materials in general domains with multiple singularities

Fuente: arXiv
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Main Authors: Wei, Qinghua, Zhu, Xiaopeng, Huang, Zhongyi
Format: Preprint
Published: 2026
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author Wei, Qinghua
Zhu, Xiaopeng
Huang, Zhongyi
author_facet Wei, Qinghua
Zhu, Xiaopeng
Huang, Zhongyi
contents In this work, a combined strategy of domain decomposition and the direct-line method is implemented to solve the forward and inverse linear elasticity problems of composite materials in general domains with multiple singularities. Domain decomposition technology treats the general domain as the union of some star-shaped subdomains, which can be handled using the direct-line method. The direct-line method demonstrates rapid convergence of the semi-discrete eigenvalues towards the exact eigenvalues of the elliptic operator, thereby naturally capturing the singularities. We also establish optimal error estimates for the proposed method. Especially, our method can handle multiple singular point problems in general regions, which are difficult to deal with by most methods. On the other hand, the inverse elasticity problem is constructed as a energy functional minimization problem with total variational regularization, we use the aforementioned method as a forward solver to reconstruct the lamé coefficient of multiple singular points in general regions. Our method can simultaneously deduce heterogeneous $μ$ and $λ$ between different materials. Through numerical experiments on three forward and inverse problems, we systematically verified the accuracy and reliability of this method to solve forward and inverse elastic problems in general domains with multiple singularities.
format Preprint
id arxiv_https___arxiv_org_abs_2601_17318
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The direct-line method for forward and inverse linear elasticity problems of composite materials in general domains with multiple singularities
Wei, Qinghua
Zhu, Xiaopeng
Huang, Zhongyi
Numerical Analysis
65N21, 65N40, 74A40, 74B05
In this work, a combined strategy of domain decomposition and the direct-line method is implemented to solve the forward and inverse linear elasticity problems of composite materials in general domains with multiple singularities. Domain decomposition technology treats the general domain as the union of some star-shaped subdomains, which can be handled using the direct-line method. The direct-line method demonstrates rapid convergence of the semi-discrete eigenvalues towards the exact eigenvalues of the elliptic operator, thereby naturally capturing the singularities. We also establish optimal error estimates for the proposed method. Especially, our method can handle multiple singular point problems in general regions, which are difficult to deal with by most methods. On the other hand, the inverse elasticity problem is constructed as a energy functional minimization problem with total variational regularization, we use the aforementioned method as a forward solver to reconstruct the lamé coefficient of multiple singular points in general regions. Our method can simultaneously deduce heterogeneous $μ$ and $λ$ between different materials. Through numerical experiments on three forward and inverse problems, we systematically verified the accuracy and reliability of this method to solve forward and inverse elastic problems in general domains with multiple singularities.
title The direct-line method for forward and inverse linear elasticity problems of composite materials in general domains with multiple singularities
topic Numerical Analysis
65N21, 65N40, 74A40, 74B05
url https://arxiv.org/abs/2601.17318