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Coupling and scattering from axisymmetric bodies, open and closed: Regularisation methods

An accurate and numerically efficient solution is developed for the scalar wave diffraction problem from an arbitrary shaped body of revolution, either closed or having an aperture. The Dirichlet boundary condition is considered. Based on analytical regularization, the method transforms the standard...

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Main Authors: Smith, P.D., Panin, S.B., Vinogradova, E.D., Tuchkin, Yu.A., Vinogradov, S.S.
Format: Conference Proceeding
Language:English
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creator Smith, P.D.
Panin, S.B.
Vinogradova, E.D.
Tuchkin, Yu.A.
Vinogradov, S.S.
description An accurate and numerically efficient solution is developed for the scalar wave diffraction problem from an arbitrary shaped body of revolution, either closed or having an aperture. The Dirichlet boundary condition is considered. Based on analytical regularization, the method transforms the standard surface integral equation to an algebraic system that may be truncated to well-conditioned system that produces solutions of prescribed and guaranteed accuracy.
doi_str_mv 10.1109/ICEAA.2009.5297798
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subjects Apertures
Boundary conditions
Diffraction
Electromagnetic coupling
Electromagnetic scattering
Integral equations
Mathematics
Scattering parameters
Surface waves
Transforms
title Coupling and scattering from axisymmetric bodies, open and closed: Regularisation methods
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