Summer 2024 MULTIDOMAIN FEM-BEM COUPLING FOR ACOUSTIC SCATTERING
Marcella Bonazzoli, Xavier Claeys
J. Integral Equations Applications 36(2): 129-167 (Summer 2024). DOI: 10.1216/jie.2024.36.129

Abstract

We model time-harmonic acoustic scattering by an object composed of piecewise homogeneous parts and an arbitrarily heterogeneous part. We propose and analyze new formulations that couple, adopting a Costabel-type approach, boundary integral equations for the homogeneous subdomains with volume variational formulations for the heterogeneous subdomain. This is an extension of the Costabel FEM-BEM coupling to a multidomain configuration, with cross-points allowed, i.e., points where three or more subdomains are adjacent. While generally just the exterior unbounded subdomain is treated with the BEM, here we wish to exploit the advantages of BEM whenever it is applicable, that is, for all the homogeneous parts of the scattering object. Our formulation is based on the multitrace formalism, which initially was introduced for acoustic scattering by piecewise homogeneous objects. Instead, here we allow the wavenumber to vary arbitrarily in a part of the domain. We prove that the bilinear form associated with the proposed formulation satisfies a Gårding coercivity inequality, which ensures stability of the variational problem if it is uniquely solvable. We identify conditions for injectivity and construct modified versions immune to spurious resonances.

Citation

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Marcella Bonazzoli. Xavier Claeys. "MULTIDOMAIN FEM-BEM COUPLING FOR ACOUSTIC SCATTERING." J. Integral Equations Applications 36 (2) 129 - 167, Summer 2024. https://doi.org/10.1216/jie.2024.36.129

Information

Received: 15 May 2023; Revised: 23 April 2024; Accepted: 9 May 2024; Published: Summer 2024
First available in Project Euclid: 31 July 2024

Digital Object Identifier: 10.1216/jie.2024.36.129

Subjects:
Primary: 31B10 , 35C15 , 65N30 , 65N38

Keywords: Acoustic scattering , boundary integral equations , cross-points , FEM-BEM coupling , Helmholtz equation , multitrace formulations

Rights: Copyright © 2024 Rocky Mountain Mathematics Consortium

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Vol.36 • No. 2 • Summer 2024
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