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.
翻译:本文建议了一种有效的计算工具,用于小便传播问题,其依据是使用基于 NURBS 的等离子测量法的更高阶阶段模型和不兼容网格。如本文件所示,这种组合对于降低使用本地精细网格和高阶网格的计算成本极为有益,因为使用本地精细网格和高阶网格需要基础功能的较高衍生物。与使用本地精细网格的其他方法相比,此处介绍的虚拟非常见、不常见、不相干总螺旋(VUKIMS)方法不仅易于实施,而且可以减少变量。 VUKIMS是一个杰出的选择,目的是在多档问题中建立一个本地精细网格,即不兼容网格。一个阶段模型是各种复杂裂型模式的有效方法,包括有或没有初始裂缝径、曲线裂缝、裂状总螺,以及通过洞状传播。 论文表明,NURBS要素对于平衡计算成本和极低自由度精度的精确度,是理想的。