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A unified formulation for interface coupling and frictional contact modeling with embedded error estimation

机译:具有嵌入式误差估计的界面耦合和摩擦接触建模的统一公式

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摘要

We present a derivation of a new interface formulation via a merger of continuous Galerkin and discontinuous Galerkin concepts, enhanced by the variational multiscale method. Developments herein provide treatment for the pure-displacement form and mixed form of small deformation elasticity as applied to the solution of two problem classes: domain decomposition and contact mechanics with friction. The proposed framework seamlessly accommodates merger of different element types within subregions of the computational domain and nonmatching element faces along embedded interfaces. These features are retained in the treatment of multibody small deformation contact problems as well, where an unbiased treatment of the contact interface stands in contrast to classical master/slave constructs. Numerical results for problems in two and three spatial dimensions illustrate the robustness and versatility of the proposed method.
机译:我们通过将连续的Galerkin和不连续的Galerkin概念进行合并,提出了一种新的界面公式,并通过变分多尺度方法进行了改进。本文的进展提供了对小变形弹性的纯位移形式和混合形式的处理,该变形形式适用于以下两个问题类别的解决方案:区域分解和带摩擦的接触力学。所提出的框架无缝地容纳了计算域的子区域内不同元素类型的合并以及沿着嵌入式接口的不匹配元素面的合并。这些特征在多体小变形接触问题的处理中也得以保留,与经典的主/从结构相比,接触界面的无偏性处理更为突出。二维和三维空间问题的数值结果说明了该方法的鲁棒性和多功能性。

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