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Isogeometric boundary element methods and patch tests for linear elastic problems: Formulation, numerical integration, and applications

机译:等几何边界元方法和线性弹性问题的斑块测试:公式,数值积分和应用

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摘要

An Isogeometric Boundary Element Method for solving three-dimensional boundary-value problems of classical linear elasticity theory is proposed. The method is developed as a generalization of the author's earlier work on Laplace's equation to Navier's equations. As a result the proposed method features (i) proper basis functions for approximating Dirichlet and Neumann data, (ii) high-order collocation schemes for weakly singular, singular, and hyper-singular integral operators, (iii) state-of-the-art numerical integration schemes capable of handling geometries with disparate dimensions, (iv) well-conditioned linear algebraic systems, with the condition number independent of the mesh size. Boundary Element Patch Tests, as extensions of concepts widely used for finite element methods, are also introduced. It is shown how these tests can be used to assess the veracity of boundary element formulations and numerical integration schemes, implementations, and geometric precision of Computer Aided Design models. The method is applied to two challenging case studies, representative of industrial applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:提出了一种求解经典线性弹性理论的三维边值问题的等几何边界元方法。该方法是将作者先前在拉普拉斯方程上的早期工作概括为纳维尔方程而开发的。结果,所提出的方法具有(i)逼近Dirichlet和Neumann数据的适当基函数,(ii)弱奇异,奇异和超奇异积分算子的高阶配置方案,(iii)现状能够处理具有不同尺寸的几何形状的现有技术数值积分方案;(iv)条件良好的线性代数系统,条件数与网格大小无关。还介绍了边界元素补丁测试,作为广泛用于有限元方法的概念的扩展。它显示了如何使用这些测试来评估边界元素公式的准确性以及计算机辅助设计模型的数值积分方案,实现和几何精度。该方法应用于两个具有挑战性的案例研究,代表了工业应用。 (C)2019 Elsevier B.V.保留所有权利。

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