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Adaptive phase field method using novel physics based refinement criteria

机译:基于新型物理学的细化标准的自适应相现场方法

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Amongst the available methods to model fracture processes, the phase field approach has proved to be efficient and has received extensive attention. However, the approach is computationally demanding as it requires a very high resolution, both in space and time to resolve the fracture characteristics. In this paper, a novel adaptive phase field method is proposed for modelling quasi-static crack propagation in brittle materials. The adaptive refinement is based on the stability analysis which is combined with the quadtree decomposition. The stability analysis is based on a linear perturbation method that is used herein to determine the onset of fracture initiation on the fly. Three standard benchmark problems are solved to show the efficiency and the robustness of the proposed method. It is shown that the proposed framework does not require any post processing technique for adaptive refinement and yet is effective. (C) 2021 Elsevier B.V. All rights reserved.
机译:在模拟骨折过程的可用方法中,阶段现场方法已被证明是有效的,并受到广泛的关注。 然而,该方法是计算的要求,因为它需要非常高的分辨率,在空间和时间内都可以解决裂缝特征。 本文提出了一种新的自适应相现场方法,用于在脆性材料中建模拟静态裂纹传播。 自适应细化基于与四叉树分解相结合的稳定性分析。 稳定性分析基于在本文中使用的线性扰动方法,用于确定裂缝开始的裂缝开始。 解决了三个标准基准问题,以展示所提出的方法的效率和鲁棒性。 结果表明,所提出的框架不需要任何用于自适应细化的后处理技术,但却是有效的。 (c)2021 elestvier b.v.保留所有权利。

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