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Finite separation method: an efficient boundary element crack modeling technique

机译:有限分离法:一种有效的边界元裂纹建模技术

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In computational fracture mechanics, great benefits are obtained from the reduced modeling dimension order and the accurate integral formulation of the boundary element method (BEM). However, the direct representation of co-planar surfaces (i.e., cracks) causes a degeneration of the standard displacement BEM formulation which can only be circumvented with special modeling techniques. Aiming to simplify the generalized application of the BEM to fracture mechanics problems, this paper presents a two-dimensional crack modeling approach. The method uses the direct BEM displacement formulation within a single-domain model to efficiently and precisely calculate any mixed mode crack tip stress intensity factor. Details of the application of the method are presented, while its accuracy and reliability are demonstrated through numerous comparisons with benchmark results.
机译:在计算断裂力学中,从减小的建模尺寸顺序和边界元素方法(BEM)的精确积分公式中可以获得巨大的收益。但是,共面表面(即裂缝)的直接表示会导致标准位移BEM公式的退化,这只能通过特殊的建模技术来避免。为了简化BEM在断裂力学问题中的通用应用,本文提出了一种二维裂纹建模方法。该方法在单域模型中使用直接BEM位移公式来有效且精确地计算任何混合模式裂纹尖端应力强度因子。介绍了该方法的应用细节,同时通过与基准结果的大量比较证明了该方法的准确性和可靠性。

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