Solving transient acoustic boundary value problems with equivalent sources using a lumped parameter approach

An equivalent source method is developed for solving transient acoustic boundary value problems. The method assumes the boundary surface is discretized in terms of triangular or quadrilateral elements and that the solution is represented using the acoustic fields of discrete sources placed at the element centers. Also, the boundary condition is assumed to be specified for the normal component of the surface velocity as a function of time, and the source amplitudes are determined to match the known elemental volume velocity vector at a series of discrete time steps. Equations are given for marching-on-in-time schemes to solve for the source amplitudes at each time step for simple, dipole, and tripole source formulations. Several example problems are solved to illustrate the results and to validate the formulations, including problems with closed boundary surfaces where long-time numerical instabilities typically occur. A simple relationship between the simple and dipole source amplitudes in the tripole source formulation is derived so that the source radiates primarily in the direction of the outward surface normal. The tripole source formulation is shown to eliminate interior acoustic resonances and long-time numerical instabilities.

Copyright 2016 Acoustical Society of America. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the Acoustical Society of America.

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Work Title Solving transient acoustic boundary value problems with equivalent sources using a lumped parameter approach
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Open Access
Creators
  1. John B. Fahnline
License In Copyright (Rights Reserved)
Work Type Article
Publisher
  1. The Journal of the Acoustical Society of America
Publication Date December 5, 2016
Publisher Identifier (DOI)
  1. https://doi.org/10.1121/1.4968789
Deposited March 16, 2024

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    • Journal of the Acoustical Society of America
    • The Journal of the Acoustical Society of America
    Publication Date
    • 2016-12-01
    • 2016-12-05
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