Approximations of the Helmholtz equation with variable wave number in one dimension

Author:

Mitsoudis Dimitrios A.12,Plexousakis Michael23,Makrakis George N.23,Makridakis Charalambos234

Affiliation:

1. Department of Naval Architecture University of West Attica Egaleo Greece

2. Institute of Applied and Computational Mathematics, FORTH Crete Greece

3. Department of Mathematics and Applied Mathematics University of Crete Crete Greece

4. Mathematics Department University of Sussex Brighton UK

Abstract

AbstractThis work is devoted to the numerical solution of the Helmholtz equation with variable wave number and including a point source in appropriately truncated infinite domains. Motivated by a two‐dimensional model, we formulate a simplified one‐dimensional model. We study its well posedness via wave number explicit stability estimates and prove convergence of the finite element approximations. As a proof of concept, we present the outcome of some numerical experiments for various wave number configurations. Our experiments indicate that the introduction of the artificial boundary near the source and the associated boundary condition lead to an efficient model that accurately captures the wave propagation features.

Publisher

Wiley

Reference36 articles.

1. A perfectly matched layer for the Helmholtz equation in a semi-infinite strip

2. Error analysis of PML‐FEM approximations for the Helmholtz equation in waveguides;Kim S;ESAIM: M2AN,2019

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4. Near‐ and far‐field boundary conditions for a finite element method for the Helmholtz equation in axisymmetric problems of underwater acoustics;Mitsoudis DA;Acta Acust United Acust,2007

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