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Pré-Publication, Document De Travail Année : 2021

Non overlapping Domain Decomposition Methods for Time Harmonic Wave Problems

Résumé

The domain decomposition method (DDM) initially designed, with the celebrated paper of Schwarz in 1870 as a theoretical tool for partial differential equations (PDEs) has become, since the advent of the computer and parallel computing techniques, a major tool for the numerical solution of such PDEs, especially for large scale problems. Time harmonic wave problems offer a large spectrum of applications in various domains (acoustics, electromagnetics, geophysics, ...) and occupy a place of their own, that shines for instance through the existence of a natural (possibly small) length scale for the solutions: the wavelength. Numerical DDMs were first invented for elliptic type equations (e.g. the Laplace equation), and even though the governing equations of wave problems (e.g. the Helmholtz equation) look similar, standard approaches do not work in general.
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hal-03225578 , version 1 (12-05-2021)

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  • HAL Id : hal-03225578 , version 1

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Xavier Claeys, Francis Collino, Patrick Joly, Emile Parolin. Non overlapping Domain Decomposition Methods for Time Harmonic Wave Problems. 2021. ⟨hal-03225578⟩
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