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A mesh-free approach to acoustic scattering from multiple spheres nested inside a large sphere by using diagonal translation operators

Source: J. Acoust. Soc. Am. 127, 850 (2010); doi:10.1121/1.3277219

Issue Date: 15 February 2010

KEYWORDS and PACS
Keywords
PACS
  • 43.58.Ta
    Computers and computer programs in acoustics
  • 43.20.Fn
    Scattering of linear acoustic waves
  • 43.80.Qf
    Medical diagnosis with acoustics
  • 43.80.Ev
    Acoustical measurement methods in biological systems and media
  • YEAR: 2010
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PUBLICATION DATA
ISSN:
1553-9628 (online)
Publisher:
AIP is a member of CrossRef ASA
Andrew J. Hesford and Jeffrey P. Astheimer
Department of Electrical and Computer Engineering, University of Rochester, Rochester, New York 14627

Leslie F. Greengard
Courant Institute of Mathematical Sciences, New York University, New York, New York 10012

Robert C. Waag
Department of Electrical and Computer Engineering and Department of Imaging Sciences, University of Rochester, Rochester, New York 14627
A multiple-scattering approach is presented to compute the solution of the Helmholtz equation when a number of spherical scatterers are nested in the interior of an acoustically large enclosing sphere. The solution is represented in terms of partial-wave expansions, and a linear system of equations is derived to enforce continuity of pressure and normal particle velocity across all material interfaces. This approach yields high-order accuracy and avoids some of the difficulties encountered when using integral equations that apply to surfaces of arbitrary shape. Calculations are accelerated by using diagonal translation operators to compute the interactions between spheres when the operators are numerically stable. Numerical results are presented to demonstrate the accuracy and efficiency of the method. ©2010 Acoustical Society of America
History: Received 15 January 2009; revised 2 December 2009; accepted 3 December 2009
Permalink: http://dx.doi.org/10.1121/1.3277219

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