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Modelling cohesive crack growth in concrete beams using scaled boundary finite element method based on super-element remeshing technique

机译:基于超单元网格化的比例尺边界有限元法模拟混凝土梁内聚裂纹扩展

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摘要

A super-element remeshing technique is developed to model cohesive crack growth based on the linear asymptotic superposition assumption. The remeshing operation only occurs along the crack path. Mesh size is refined merely at the crack-tip super-element. The stress intensity factors are solved semi-analytically by the scaled boundary finite element method, sufficient accuracy can be ensured. The cohesive tractions are treated as side-face forces, and the induced displacement field can be sought as a particular solution to the governing differential equations. Numerical examples validate the efficiency and accuracy of the proposed approach.
机译:开发了一种基于线性渐近叠加假设的超单元重新网格化技术,以对内聚裂纹扩展进行建模。重划操作仅沿裂纹路径进行。网格大小仅在裂纹尖端的超级元素上得到改进。应力强度因子采用比例边界有限元法半解析求解,可以保证足够的精度。内聚牵引力被视为侧面力,并且可以将感应位移场作为控制微分方程的特定解决方案。数值算例验证了该方法的有效性和准确性。

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