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Adaptive mesh refinement schemes for the localizing gradient damage method based on biquadratic-bilinear coupled-field elements

机译:基于双层双线性耦合场元件的本地化梯度损伤方法的自适应网格细化方案

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摘要

In the present work, adaptive h-refinement schemes are developed for the localizing gradient damage method. In general, the existing adaptive refinement schemes have been developed using the bilinear quadrilateral (Q4) elements for the weakly coupled systems such as XFEM and Phase field method. In contrast to this, the presently developed refinement schemes are designed for simultaneous refinement of the strongly coupled biquadratic serendipity (Q8) and Q4 elements, which is a typical requirement of the localizing gradient damage method. This work addresses mainly two types of numerical complexities in the presently developed refinement schemes, first one is the strong coupling of primary variables in the localizing gradient damage method and other is the presence of mid-side nodes in the Q8 element. A detailed comparative study of three adaptive refinement schemes i.e. hanging nodes based, template based and multiscale FEM based, is carried out. The suitability and effectiveness of the refinement schemes are demonstrated through the study of various parameters like damage profile, load-displacement response, discretization error and computation time. Additionally, a comparison matrix of implementation complexity based on developed algorithm and coding is also presented to highlight the difficulties in their implementation. A novel oversampling data transfer scheme is proposed for the transfer of Gauss point's state variables from unrefined to refined mesh.
机译:在本作工作中,开发了适应性的H-改进方案以用于定位梯度损伤方法。通常,已经使用诸如XFEM和相场方法的弱耦合系统的双线性四边形(Q4)元件开发了现有的自适应改进方案。与此相反,目前开发的细化方案被设计用于同时改进强耦合的双层串联(Q8)和Q4元件,这是本地化梯度损伤方法的典型要求。该工作主要解决了目前开发的细化方案中的两种类型的数值复杂性,首先是本地化梯度损伤方法中的初级变量的强耦合,而其他是Q8元件中的中间节点的存在。三种自适应细化方案的详细比较研究,即基于,基于模板和多尺寸FES的悬挂节点。通过研究损坏轮廓,负载 - 位移响应,离散误差和计算时间等各种参数来证明细化方案的适用性和有效性。另外,还提出了一种基于发达算法和编码的实现复杂性的比较矩阵,以突出显示其实现中的困难。提出了一种新的过采样数据传输方案,用于将高斯点的状态变量从未精确的网格传输转移。

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