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首页> 外文期刊>Computers & Structures >A node-centric indirect boundary element method: three- dimensional displacement discontinuities
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A node-centric indirect boundary element method: three- dimensional displacement discontinuities

机译:以节点为中心的间接边界元方法:三维位移不连续性

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摘要

An indirect boundary element formulation based on unknown physical values, defined only at the nodes (vertices) of a boundary discretization of a linear elastic continuum, is introduced. As an adaptation of this general framework, a linear displacement discontinuity density distribution using a flat triangular boundary discretization is considered. A unified element integration methodology based on the continuation principle is introduced to handle regular as well as near-singular and singular integrals. The boundary functions that form the basis of the integration methodology are derived and tabulated in the appendix for linear displacement discontinuity densities. The integration of the boundary functions is performed numerically using an adaptive algorithm which ensures a specified numerical accuracy. The applications include verification examples which have closed-form analytical solutions as well as practical problems arising in rock engineering. The node-centric displacement discontinuity method is shown to be numerically efficient and robust for such problems.
机译:介绍了一种基于未知物理值的间接边界元素公式,仅在线性弹性连续体的边界离散化的节点(顶点)处定义。作为此通用框架的改编,考虑了使用平坦三角形边界离散化的线性位移不连续性密度分布。引入了基于连续原理的统一元素集成方法,以处理正则,近奇异和奇异积分。附录导出了构成积分方法基础的边界函数,并在表中列出了线性位移不连续密度。边界函数的积分使用确保指定数值精度的自适应算法在数值上进行。这些应用程序包括具有封闭形式分析解决方案的验证示例以及岩石工程中出现的实际问题。对于这些问题,节点中心位移不连续方法显示出数值上的有效性和鲁棒性。

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