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A recursive multilevel trust region method with application to fully monolithic phase-field models of brittle fracture

机译:递归多级信赖域方法在脆性断裂全单相场模型中的应用

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The simulation of crack initiation and propagation in an elastic material is difficult, as crack paths with complex topologies have to be resolved. Phase-field approaches allow to simulate crack behavior without the need to explicitly model crack paths. However, the underlying mathematical model gives rise to a non-convex constrained minimization problem. In this work, we propose a recursive multilevel trust region (RMTR) method to efficiently solve such a minimization problem. The RMTR method combines global convergence properties of trust region methods with the optimality of multilevel methods. The solution process is accelerated by employing level dependent objective functions, minimization of which provides correction to the original/fine-level problem. In the context of the phase-field fracture approach, it is challenging to design efficient level dependent objective functions as a certain mesh resolution is required to resolve fracture bands. We introduce level dependent objective functions that combine fine level description of the crack path with the coarse level discretization. The overall performance and the convergence properties of the proposed RMTR method are investigated by means of several numerical examples in three dimensions. (C) 2019 Elsevier B.V. All rights reserved.
机译:弹性材料中裂纹萌生和扩展的模拟非常困难,因为必须解决具有复杂拓扑结构的裂纹路径。相场方法可以模拟裂纹行为,而无需明确地模拟裂纹路径。但是,基础数学模型引起了非凸约束最小化问题。在这项工作中,我们提出了一种递归多级信任区域(RMTR)方法,以有效解决这种最小化问题。 RMTR方法将信任域方法的全局收敛性与多级方法的最优性相结合。通过采用与水平相关的目标函数,可以加快求解过程,最小化目标函数可以纠正原始/精细问题。在相场裂缝方法的背景下,设计有效的取决于水平的目标函数具有挑战性,因为需要一定的网格分辨率才能解决裂缝带。我们引入了与水平有关的目标函数,该函数将裂纹路径的精细水平描述与粗糙水平离散化相结合。通过在三个维度上的几个数值示例研究了提出的RMTR方法的整体性能和收敛性。 (C)2019 Elsevier B.V.保留所有权利。

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