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Two dimensional configurational-force-driven crack propagation using the discontinuous Galerkin method with rp-adaptivity.

机译:使用具有rp适应性的不连续Galerkin方法进行二维构造力驱动的裂纹扩展。

摘要

This paper presents a quasi-static configurational force (CF) brittle fracture propagation method, [1], using theuddiscontinuous Galerkin (dG) symmetric interior penalty (SIP) method, [2]. The method is derived from the firstudlaw of thermodynamics with consideration of the Griffith fracture criterion [1]. The criterion is evaluated byudfinding the difference between the power applied to the domain and the rate of internal energy change at everyudpoint in the domain. If a node within the element mesh satisfies the criterion, a crack will propagate in the CFuddirection. Around the crack tip the advantage of element specific degrees of freedom in dG methods enablesudsimple p-adaptivity to determine the CF in the spatial domain. In the material domain r-adaptivity is implemented,udwhere the CF direction is used to align element edges, which are then split to propagate the crack.
机译:本文提出了一种准静态构型力(CF)脆性断裂扩展方法,[1],使用了不连续的Galerkin(dG)对称内部罚分(SIP)方法,[2]。该方法是根据热力学第一定律得出的,并考虑了格里菲斯断裂准则[1]。通过找到施加到该域的功率与该域中每个 udpoint的内部能量变化率之间的差来评估该标准。如果单元网格中的节点满足条件,则裂纹将沿CF ud方向传播。在裂纹尖端周围,dG方法中元素特定的自由度的优势使得 p-适应性很低,从而可以确定空间域中的CF。在材料域中实现了r适应性,其中CF方向用于对齐元素边缘,然后将元素边缘进行拆分以传播裂纹。

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