论文标题

用于脆性断裂的高阶相模型的基于NURB的有限元分析的不合格多捕

Non-conforming multipatches for NURBS-based finite element analysis of higher-order phase-field models for brittle fracture

论文作者

Nguyen, Khuong D., Augarde, Charles E., Coombs, William M., Nguyen-Xuan, H., Abdel-Wahab, M.

论文摘要

本文提出了一种有效的计算工具,用于使用基于NURBS的同一几何方法的高阶相位模型和不合格网格的组合,用于脆性裂纹繁殖问题。如本文所示,这种组合在降低使用局部改进网格和高阶相处的计算成本方面具有很大的好处,这需要更高的基础功能衍生物。与使用局部改进网格的其他方法相比,此处介绍的虚拟不常见的插入的主奴隶(Vukims)方法不仅简单实现,而且还可以减少变量数字。 Vukims是在多斑点问题中建立局部改进网格(即不合格网格)的出色选择。相位场模型是用于各种复杂裂纹模式的有效方法,包括有或没有初始裂纹路径的裂纹,弯曲裂纹,裂纹结合以及通过孔传播的裂纹传播。该论文表明,立方NURBS元素是平衡计算成本和准确性的理想选择,因为它们可以通过使用较低的一阶B-Sphine元素的较高的网格来通过使用较低的自由度来产生准确的解决方案。

This paper proposes an effective computational tool for brittle crack propagation problems based on a combination of a higher-order phase-field model and a non-conforming mesh using a NURBS-based isogeometric approach. This combination, as demonstrated in this paper, is of great benefit in reducing the computational cost of using a local refinement mesh and a higher-order phase-field, which needs higher derivatives of basis functions. Compared with other approaches using a local refinement mesh, the Virtual Uncommon-Knot-Inserted Master-Slave (VUKIMS) method presented here is not only simple to implement but can also reduce the variable numbers. VUKIMS is an outstanding choice in order to establish a local refinement mesh, i.e. a non-conforming mesh, in a multi-patch problem. A phase-field model is an efficient approach for various complicated crack patterns, including those with or without an initial crack path, curved cracks, crack coalescence, and crack propagation through holes. The paper demonstrates that cubic NURBS elements are ideal for balancing the computational cost and the accuracy because they can produce accurate solutions by utilising a lower degree of freedom number than an extremely fine mesh of first-order B-spline elements.

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