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A virtual crack extension method to compute energy release rates using a complex variable finite element method

机译:使用复杂变量有限元方法计算能量释放率的虚拟裂纹扩展方法

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The complex-valued finite element method, ZFEM, is proposed as a new virtual crack extension method to compute the energy release rate. The energy release rate is computed as a numerical derivative of the strain energy with respect to a crack extension using the complex Taylor series expansion method (CTSE). This is accomplished using a finite element method with complex nodal coordinates and extending the crack by a very small quantity along the imaginary directions of the complex nodal coordinates. The resulting finite element formulation becomes complex valued with the imaginary component of the strain energy containing the energy release rate. This method retains the conceptual simplicity of numerical differentiation but eliminates numerical issues regarding perturbation of the crack size. Both two-and three-dimensional examples are provided. Numerical examples indicate that the energy release rate computed using ZFEM is of the same accuracy as the domain-based J integral formulation. The method is very general and can be applied to self-similar or non-self-similar crack extensions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了复值有限元方法ZFEM,作为计算能量释放率的一种新的虚拟裂纹扩展方法。使用复数泰勒级数展开法(CTSE),将能量释放速率计算为应变能相对于裂纹扩展的数值导数。这是通过使用具有复杂节点坐标的有限元方法并沿着复杂节点坐标的虚构方向将裂纹扩展很小的量来实现的。所得的有限元公式变得复杂,其包含包含能量释放速率的应变能的虚部值。该方法保留了数值微分的概念简单性,但消除了与裂纹尺寸扰动有关的数值问题。提供了二维和三维示例。数值示例表明,使用ZFEM计算的能量释放速率与基于域的J积分公式具有相同的精度。该方法非常通用,可以应用于自相似或非自相似的裂纹扩展。 (C)2016 Elsevier Ltd.保留所有权利。

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