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On the space-time discretization of variational retarded potential boundary integral equations

机译:变分迟钝潜在边界积分方程的时空离散化

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摘要

This paper discusses the practical development of space-time boundary element methods for the wave equation in three spatial dimensions. The employed trial spaces stem from simplex meshes of the lateral boundary of the space-time cylinder. This approach conforms genuinely to the distinguished structure of the solution operators of the wave equation, so-called retarded potentials. Since the numerical evaluation of the arising integrals is intricate, the bulk of this work is constituted by ideas about quadrature techniques for retarded layer potentials and associated energetic bilinear forms. Finally, we glimpse at algorithmic aspects regarding the efficient implementation of retarded potentials in the space-time setting. The proposed methods are verified by means of numerical experiments, which illustrate their capacity.
机译:本文探讨了三个空间尺寸波动方程的时空边界元件的实际开发。 所用的试验空间源于时空圆筒的横向边界的单纯形网状物。 该方法真正符合波动方程的解决方案操作者的分类结构,所谓的延迟电位。 由于产生积分的数值评估是复杂的,因此这项工作的大部分由关于延迟层电位的正交技术和相关的能量双线性形式的思想构成。 最后,我们在节省时间设置中有所高效地实现延迟实现的算法方面。 通过数值实验验证所提出的方法,其阐述了它们的能力。

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