Numerical assessment of PML transmission conditions in a domain decomposition method for the Helmholtz equation

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Main Authors: Bootland, Niall, Borzooei, Sahar, Dolean, Victorita, Tournier, Pierre-Henri
Format: Preprint
Published: 2022
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author Bootland, Niall
Borzooei, Sahar
Dolean, Victorita
Tournier, Pierre-Henri
author_facet Bootland, Niall
Borzooei, Sahar
Dolean, Victorita
Tournier, Pierre-Henri
contents The convergence rate of domain decomposition methods (DDMs) strongly depends on the transmission condition at the interfaces between subdomains. Thus, an important aspect in improving the efficiency of such solvers is careful design of appropriate transmission conditions. In this work, we will develop an efficient solver for Helmholtz equations based on perfectly matched layers (PMLs) as transmission conditions at the interfaces within an optimised restricted additive Schwarz (ORAS) domain decomposition preconditioner, in both two and three dimensional domains. We perform a series of numerical simulations on a model problem and will assess the convergence rate and accuracy of our solutions compared to the situation where impedance boundary conditions are used.
format Preprint
id arxiv_https___arxiv_org_abs_2211_06859
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Numerical assessment of PML transmission conditions in a domain decomposition method for the Helmholtz equation
Bootland, Niall
Borzooei, Sahar
Dolean, Victorita
Tournier, Pierre-Henri
Numerical Analysis
The convergence rate of domain decomposition methods (DDMs) strongly depends on the transmission condition at the interfaces between subdomains. Thus, an important aspect in improving the efficiency of such solvers is careful design of appropriate transmission conditions. In this work, we will develop an efficient solver for Helmholtz equations based on perfectly matched layers (PMLs) as transmission conditions at the interfaces within an optimised restricted additive Schwarz (ORAS) domain decomposition preconditioner, in both two and three dimensional domains. We perform a series of numerical simulations on a model problem and will assess the convergence rate and accuracy of our solutions compared to the situation where impedance boundary conditions are used.
title Numerical assessment of PML transmission conditions in a domain decomposition method for the Helmholtz equation
topic Numerical Analysis
url https://arxiv.org/abs/2211.06859