Extending the BEM for elastic contact problems beyond the half-space approach

J. Zhao, E. Vollebregt, C. Oosterlee
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引用次数: 19

Abstract

In this paper we extend the range of applicability of the boundary element method (BEM) for concentrated elastic contact problems by computing the influence coefficients (ICs) numerically. These ICs represent the Green's function of the problem, i.e. the surface deformation due to unit loads. For the half-space they are analytically available. An elastic model is proposed to compute these coefficients numerically, by the finite element method (FEM). We recommend proper strategies of FEM meshing and element types, considering accuracy and computational cost. The effects of computed ICs to contact solutions are examined for a Cattaneo shift problem. The work in this paper aims at providing a reference to study fast solvers for the conformal contact problem where ICs are not analytically known.
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将弹性接触问题边界元扩展到半空间方法之外
本文通过数值计算影响系数,扩展了边界元法在集中弹性接触问题中的适用范围。这些ic表示问题的格林函数,即由于单位载荷引起的表面变形。对于半空间,它们是解析可用的。提出了一种弹性模型,用有限元法对这些系数进行数值计算。在考虑精度和计算成本的基础上,提出了合理的有限元网格划分策略和单元类型。计算的集成电路对接触解决方案的影响被检查了一个卡塔尼奥移位问题。本文的工作旨在为研究ic不能解析已知的共形接触问题的快速求解方法提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Extending the BEM for elastic contact problems beyond the half-space approach Comparison of some preconditioners for the incompressible Navier-Stokes equations On preconditioning incompressible non-Newtonian flow problems Fast linear solver for pressure computation in layered domains Flexible and multi-shift induced dimension reduction algorithms for solving large sparse linear systems
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