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首页> 外文期刊>Journal of Computational Physics >A locking-free immersed finite element method for planar elasticity interface problems
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A locking-free immersed finite element method for planar elasticity interface problems

机译:平面弹性界面问题的免锁定沉浸有限元方法

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摘要

This article proposes a nonconforming immersed finite element (IFE) method for solving planar elasticity interface problems with structured (or Cartesian) meshes even if the material interface has a nontrivial geometry. IFE functions developed in this article are applicable to arbitrary configurations of elasticity materials and interface locations. Optimal approximation capability is observed for this new IFE space. The displacement Galerkin method based on this IFE space is robust (locking-free). Numerical experiments are presented to demonstrate that the IFE solution converges optimally for both compressible and nearly incompressible materials.
机译:本文提出了一种非协调沉浸式有限元(IFE)方法,即使材料界面具有非平凡的几何形状,也可以解决结构化(或笛卡尔)网格的平面弹性界面问题。本文开发的IFE功能适用于弹性材料和界面位置的任意配置。对于这种新的IFE空间,观察到了最佳逼近能力。基于该IFE空间的位移Galerkin方法是鲁棒的(无锁定)。数值实验表明,IFE解决方案对于可压缩和几乎不可压缩的材料均能最佳收敛。

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