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A fast multipole boundary element method for modeling 2-D multiple crack problems with constant elements

机译:快速多极边界元方法,用于建模带有常量元素的二维多重裂纹问题

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A fast multipole boundary element method (BEM) for solving 2-D multiple crack problems in linear elastic fracture mechanics is presented in this paper. For multiple crack problems, both the degrees of freedom (DOFs) and the size of system matrices increase quickly as the number of cracks increases, and the conventional BEM cannot support such large systems. Instead of using the singular quarter-point boundary elements at the crack tips, constant line elements are applied to symmetrically discretize the outer boundaries and crack surfaces in the present approach. In order to keep the accuracy within a limited acceptable range, a relatively large number of constant elements are required to discretize the crack surfaces. The crack opening displacement (COD) fields of the multiple crack problems are obtained by the fast multipole BEM. Stress intensity factors (SIFs) are extracted from the obtained displacement fields near the crack tip by using one point COD formula. Comparison of the CODs between the fast multipole BEM and a finite element method using ANSYS are illustrated to show the feasibility of the proposed approach. With the acceleration of fast multipole technique, multi-crack problems can be dealt with desktop PCs. Several numerical examples are presented for computing the SIFs of cracks to study the effectiveness and the efficiency of the proposed approach. The numerical results clearly demonstrate the potentials of the fast multipole BEM for solving 2-D large-scale multi-crack problems by using constant elements.
机译:本文提出了一种快速多极边界元方法(BEM),用于解决线性弹性断裂力学中的二维多重裂纹问题。对于多个裂纹问题,随着裂纹数量的增加,自由度(DOF)和系统矩阵的大小都会迅速增加,并且常规BEM无法支持如此大的系统。代替在裂纹尖端处使用奇异的四分之一点边界元素,在本方法中,使用恒定线元素对称地离散化外部边界和裂纹表面。为了将精度保持在有限的可接受范围内,需要相对大量的常量元素来离散裂纹表面。快速多极边界元法获得了多个裂纹问题的裂纹开口位移(COD)场。通过使用一点COD公式,从获得的裂纹尖端附近的位移场中提取应力强度因子(SIF)。举例说明了快速多极边界元法和使用ANSYS的有限元方法对COD的比较,表明了该方法的可行性。随着快速多极技术的加速,台式PC可以解决多裂纹问题。给出了几个数值示例,用于计算裂纹的SIF,以研究所提出方法的有效性和效率。数值结果清楚地证明了快速多极边界元法通过使用常量元素来解决二维大规模多裂纹问题的潜力。

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