首页|Highly accurate quadrature schemes for singular integrals in energetic BEM applied to elastodynamics

Highly accurate quadrature schemes for singular integrals in energetic BEM applied to elastodynamics

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We consider an exterior linear elastodynamics problem with vanishing initial conditions and Dirichlet datum on the scatterer. We convert the Navier Equation, governing the wave behaviour, into two space-time Boundary Integral Equations (BIEs) whose solution is approximated by the energetic Boundary Element Method (BEM). To apply this technique, we have to set the BIEs in a weak form related to the energy of the differential problem solution at the final time instant of analysis. After the space-time discretization of the weak formulation, we have to deal with double space-time integrals, with a weakly singular kernel depending on primary and secondary wave speeds and multiplied by Heaviside functions. The main purpose of this work is the analysis of these peculiar integrals and the study of suitable quadrature schemes for their approximation. (c) 2022 Elsevier B.V. All rights reserved.

ElastodynamicsEnergetic BEMWeakly singular kernelHeaviside functionNumerical integrationNUMERICAL-INTEGRATIONEQUATION METHODELEMENT-METHODGALERKIN BEMBOUNDARYFORMULATION

Aimi, Alessandra、Di Credico, Giulia、Diligenti, Mauro、Guardasoni, Chiara

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Univ Parma

2022

Journal of Computational and Applied Mathematics

Journal of Computational and Applied Mathematics

EISCI
ISSN:0377-0427
年,卷(期):2022.410
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