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A comparative study of numerical solutions to non-linear discrete crack modelling of concrete beams involving sharp snap-back

机译:包含急骤回弹的混凝土梁非线性离散裂纹建模数值解的比较研究

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摘要

Numerical problems are often encountered in modelling crack propagation in concrete beams using non-linear finite element (FE) analysis, especially when sharp snap-back behaviour in load-displacement relations occurs. This paper firstly identifies 16 arc-length control based numerical strategies based on extensive literature review. They are then used to carefully model the structural behaviour of a four-point single notched shear beam using discrete crack modelling approach in which cracks are represented by interface elements with bilinear softening constitutive laws. Based on extensive FE analyses, detailed comparisons of the merits and demerits of these numerical algorithms are then made. The results indicate that the effectiveness and efficiency of different algorithms may vary considerably from one to another, with the local arc-length based procedures in conjunction with tangential stiffness strategy and reversible unloading model being the most robust.
机译:在使用非线性有限元(FE)分析对混凝土梁中的裂纹扩展进行建模时,经常会遇到数值问题,尤其是当在载荷-位移关系中出现急剧的回弹行为时。在广泛文献综述的基础上,本文首先确定了16种基于弧长控制的数值策略。然后,使用离散裂纹建模方法将它们用于仔细模拟四点单切口剪力梁的结构行为,其中裂纹由具有双线性软化本构律的界面单元表示。基于广泛的有限元分析,然后对这些数值算法的优缺点进行详细的比较。结果表明,不同算法的有效性和效率可能彼此之间有很大差异,其中基于局部弧长的过程以及切向刚度策略和可逆卸载模型是最可靠的。

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