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首页> 外文期刊>International journal of computational methods >MODIFIED VIRTUAL CRACK-CLOSURE TECHNIQUE USING SPECTRAL ELEMENT METHOD
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MODIFIED VIRTUAL CRACK-CLOSURE TECHNIQUE USING SPECTRAL ELEMENT METHOD

机译:基于谱元法的虚拟裂纹闭合修正技术

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This paper presents a general Chebyshev Spectral Element Method (CSEM) for obtaining strain-energy release rates for crack growth in two-dimensional isotropic materials. The procedure uses virtual crack-closure method. This method is developed for different orders of CSEM and suitable expressions for energy release rates are obtained. These expressions are evaluated by applying them to two Mode-I and two Mixed-mode problems. Two different classes of spectral elements (SEs) are formulated using Chebyshev interpolating functions, the inconsistent conventional SE formulation and the field consistent SE formulation. The convergence is investigated using both the formulations. A relative study on the efficiency of the CSEM with increasing order of polynomials is clearly brought out. The effect of crack-tip element size is also studied. It is observed that field consistent formulation always gives better results compared to inconsistent formulation. Comparisons with results from the literature for theseproblems show the efficiency of the CSEM.
机译:本文提出了一种通用的切比雪夫谱元方法(CSEM),用于获得二维各向同性材料中裂纹扩展的应变能释放速率。该程序使用虚拟裂缝封闭方法。针对不同阶数的CSEM开发了该方法,并获得了合适的能量释放速率表达式。通过将它们应用于两个模式I和两个混合模式问题来评估这些表达式。使用Chebyshev插值函数可公式化两种不同的光谱元素(SE),即常规SE公式不一致和场SE公式一致。使用这两种公式研究收敛性。清楚地提出了随着多项式递增阶数的CSEM效率的相关研究。还研究了裂纹尖端元素大小的影响。可以观察到,与不一致的配方相比,电场一致的配方始终能提供更好的结果。与这些问题的文献结果进行比较表明,CSEM是有效的。

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