> simulation by means of second-kind Galerkin boundary element method.>> Source: Elke Spindler "Second-Kind Single Trace Boundary Integral>> Formulations for Scattering at Composite Objects", ETH Diss 23620, 2016."" > > simulation by means of second-kind Galerkin boundary element method.>> Source: Elke Spindler "Second-Kind Single Trace Boundary Integral>> Formulations for Scattering at Composite Objects", ETH Diss 23620, 2016."" > Research reports – Seminar for Applied Mathematics | ETH Zurich

Research reports

Boundary integral formulation of the first kind for acoustic scattering by composite structures

by X. Claeys and R. Hiptmair

(Report number 2011-45)

Abstract
We study the scattering of an acoustic wave by an object composed of several adjacent sub-domains with different material properties. For this problem we derive an integral formulation of the first kind. This formulation involves two Dirichlet data and two Neumann data at each point of each interface of the diffracting object. This formulation is immune to spurious resonances, and it satisfies a stability property that ensures quasi optimal convergence of conforming Galerkin boundary element methods. Besides, the operator of this formulation satisfies a relation similar to the standard Calderon identity.

Keywords:

BibTeX
@Techreport{CH11_83,
  author = {X. Claeys and R. Hiptmair},
  title = {Boundary integral formulation of the first kind for acoustic scattering by composite structures},
  institution = {Seminar for Applied Mathematics, ETH Z{\"u}rich},
  number = {2011-45},
  address = {Switzerland},
  url = {https://www.sam.math.ethz.ch/sam_reports/reports_final/reports2011/2011-45.pdf },
  year = {2011}
}

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