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A symmetric boundary integral formulation for time-domain acoustic-elastic scattering

Numerical Analysis 2025-08-19 v4 Numerical Analysis Analysis of PDEs Computational Physics

Abstract

A symmetric boundary integral formulation for the transient scattering of acoustic waves off homogeneous and isotropic elastic obstacles is analyzed. Both the acoustic scattered field and the elastodynamic excited field are represented through a direct integral representation, resulting in a coupled system of interior/exterior integral equations that is symmetrized through the introduction of an auxiliary mortar variable. The analysis of each system and of its Galerkin discretization is done through the passage to the Laplace domain, which allows for the use of convolution quadrature for time discretization. Since the operators of the acustic and elastic Calder\'on calculus appear independently of each other, the formulation is well suited for non-intrusive numerical impementations (i.e. existing codes for acoustic and elastic problems can be used without any modification).

Keywords

Cite

@article{arxiv.2502.04767,
  title  = {A symmetric boundary integral formulation for time-domain acoustic-elastic scattering},
  author = {Tonatiuh Sánchez-Vizuet},
  journal= {arXiv preprint arXiv:2502.04767},
  year   = {2025}
}

Comments

Dedicated to Prof. George C. Hsiao, esteemed collaborator and mentor on the occasion of his 90th birthday