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JOURNALS // Zhurnal Vychislitel'noi Matematiki i Matematicheskoi Fiziki // Archive

Zh. Vychisl. Mat. Mat. Fiz., 2012 Volume 52, Number 8, Pages 1492–1505 (Mi zvmmf9695)

This article is cited in 21 papers

Potential-based numerical solution of Dirichlet problems for the Helmholtz equation

A. A. Kashirin, S. I. Smagin

Computing Center, Far East Branch, Russian Academy of Sciences, ul. Kim Yu Chena 65, Khabarovsk, 680000 Russia

Abstract: Three-dimensional Dirichlet problems for the Helmholtz equation are considered in generalized formulations. By applying single-layer potentials, they are reduced to Fredholm boundary integral equations of the first kind. The equations are discretized using a special averaging method for integral operators with weak singularities in the kernels. As a result, the integral equations are approximated by systems of linear algebraic equations with easy-to-compute coefficients, which are solved numerically by applying the generalized minimal residual method. A modification of the method is proposed that yields solutions in the spectra of interior Dirichlet problems and integral operators when the integral equations are not equivalent to the original differential problems and are not well-posed. Numerical results are presented for assessing the capabilities of the approach.

Key words: Dirichlet problem, Helmholtz equation, boundary integral equation, spectrum of an integral operator, numerical method.

UDC: 519.634

Received: 24.05.2011
Revised: 10.09.2011


 English version:
Computational Mathematics and Mathematical Physics, 2012, 52:8, 1173–1185

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