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N-sided polygonal smoothed finite element method (nSFEM) with non-matching meshes and their applications for brittle fracture problems

机译:不匹配网格的N边多边形平滑有限元方法(nSFEM)及其在脆性断裂问题中的应用

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In this work, an n-sided polygonal smoothed finite element method (nSFEM) based on gradient smoothing technique is presented for phase field fracture modelling. The phase field approach approximates the crack topology in a diffuse way through an exponential function. A coupled elastic displacement and phase field variational formulation is established by using a Smoothed Galerkin Weak form. Meanwhile, non-matching meshes for local refinement are considered in brittle fracture problems. Non-matching meshes at their interfaces are automatically converted to matching meshes by using present arbitrary sided polygonal elements. In other words, no interface constraint is needed here. In order to validate the feasibility of present nSFEM for brittle fracture problem with non-matching meshes, several numerical examples are employed. The nSFEM can discretize the computational domain in a very flexible manner. Arbitrary sided polygonal elements and non-matching meshes are adopted for comparison. Numerical results validate that the nSFEM shows great potential for phase field fracture problems due to its flexibility in dealing with complex elements shape and non-matching meshes. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项工作中,提出了一种基于梯度平滑技术的n边多边形平滑有限元方法(nSFEM),用于相场裂缝建模。相场方法通过指数函数以扩散方式近似裂纹拓扑。通过使用光滑的Galerkin弱形式建立了弹性位移和相场变化耦合公式。同时,在脆性断裂问题中考虑使用不匹配的网格进行局部细化。通过使用当前的任意侧部多边形元素,其界面处的不匹配网格将自动转换为匹配网格。换句话说,这里不需要接口约束。为了验证当前nSFEM在不匹配网格的情况下解决脆性断裂问题的可行性,采用了几个数值示例。 nSFEM可以非常灵活的方式离散化计算域。比较采用任意面的多边形元素和不匹配的网格。数值结果证明,nSFEM由于具有处理复杂元素形状和不匹配网格的灵活性,因此在相场断裂问题上显示出巨大潜力。 (C)2019 Elsevier B.V.保留所有权利。

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