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Strict and effective bounds in goal-oriented error estimation applied to fracture mechanics problems solved with XFEM

机译:面向目标的误差估计中的严格有效边界应用于XFEM解决的断裂力学问题

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摘要

In this work, we analyze a method that leads to strict and high-quality local error bounds in the context of fracture mechanics. We investigate in particular the capability of this method to evaluate the discretization error for quantities of interest computed using the extended finite element method (XFEM). The goal-oriented error estimation method we are focusing on uses the concept of constitutive relation error along with classical extraction techniques. The main innovation in this paper resides in the methodology employed to construct admissible fields in the XFEM framework, which involves enrichments with singular and level set basis functions. We show that this construction can be performed through a generalization of the classical procedure used for the standard finite element method. Thus, the resulting goal-oriented error estimation method leads to relevant and very accurate information on quantities of interest that are specific to fracture mechanics, Such as mixed-mode stress intensity factors. The technical aspects and the effectiveness of the method are illustrated through two-dimensional numerical examples. Copyright (C) 2009 John Wiley & Sons, Ltd.
机译:在这项工作中,我们分析了一种在断裂力学方面导致严格和高质量的局部误差范围的方法。我们特别研究了此方法评估使用扩展有限元方法(XFEM)计算出的感兴趣量的离散化误差的能力。我们正在关注的面向目标的误差估计方法使用本构关系误差的概念以及经典的提取技术。本文的主要创新在于用于在XFEM框架中构造可允许字段的方法,该方法涉及具有奇异和水平集基础函数的扩充。我们表明,可以通过对用于标准有限元方法的经典过程进行概括来执行此构造。因此,最终的面向目标的误差估计方法可得出有关断裂力学特有的感兴趣量的相关且非常准确的信息,例如混合模式应力强度因子。通过二维数值示例说明了该方法的技术方面和有效性。版权所有(C)2009 John Wiley&Sons,Ltd.

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