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首页> 外文期刊>International Journal for Numerical Methods in Engineering >An embedded mesh method for treating overlapping finite element meshes
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An embedded mesh method for treating overlapping finite element meshes

机译:一种处理重叠有限元网格的嵌入式网格方法

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摘要

A new technique for treating the mechanical interactions of overlapping finite element meshes is presented. Such methods can be useful for numerous applications, for example, fluid-solid interaction with a superposed meshed solid on an Eulerian background fluid grid. In this work, we consider the interaction of two elastic domains: one mesh is the foreground and defines the surface of interaction, the other is a background mesh and is often a structured grid. Many of the previously proposed methods employ surface defined Lagrange multipliers or penalties to enforce the boundary constraints. It has become apparent that these methods will cause mesh locking under certain conditions. Appropriately applied, the Nitsche method can overcome this locking, but, in its canonical form, is generally not applicable to non-linear materials such as hyperelastics. The relationship between interior point penalty, discontinuous Galerkin and Nitsche's method is well known. Based on this relationship, a nonlinear theory analogous to the Nitsche method is proposed to treat nonlinear materials in an embedded mesh. Here, a discontinuous Galerkin derivative based on a lifting of the interface surface integrals provides a consistent treatment for non-linear materials and demonstrates good behavior in example problems.
机译:提出了一种处理重叠有限元网格力学相互作用的新技术。这样的方法可用于许多应用,例如,与欧拉背景流体网格上的叠加的网状固体的流固相互作用。在这项工作中,我们考虑了两个弹性域的相互作用:一个网格是前景,定义了相互作用的表面,另一个是背景网格,通常是结构化的网格。许多先前提出的方法采用表面定义的拉格朗日乘数或罚分来强制执行边界约束。显然,这些方法将在某些条件下导致网格锁定。适当地应用尼采方法可以克服这种锁定,但是以其规范形式,通常不适用于非线性材料,例如超弹性材料。内点罚分,不连续Galerkin和Nitsche方法之间的关系是众所周知的。基于这种关系,提出了一种类似于Nitsche方法的非线性理论来处理嵌入式网格中的非线性材料。在此,基于界面表面积分的提升的不连续Galerkin导数为非线性材料提供了一致的处理,并在示例问题中证明了良好的行为。

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