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Stress intensity factors for an axially oriented internal crack embedded in a buried pipe

机译:埋在地下管道中的轴向内部裂纹的应力强度因子

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In this paper, the finite element method has been used to study the effect of soil weight on the stress intensity factors of an axially oriented semi-elliptical crack located on the inner surface of a buried pipe. The Burns and Richard model has been utilized to take into account the interaction between the soil and the pipe. The finite element results revealed that the cracks in a buried pipe are subjected to mixed mode loading. The mode I and mode II stress intensity factors depend on the circumferential location of internal crack. K_I is always significantly larger than K_(II) and is maximum when the internal crack is along the vertical direction. A comparison between the results of two-dimensional and three-dimensional cracks also signified that the two-dimensional analysis always represents more conservative results. Depending on the crack aspect ratio (a/c), the discrepancy between the results of two and three-dimensional analyses can be significant.
机译:在本文中,有限元方法已被用于研究土壤重量对位于地下管道内表面的轴向半椭圆形裂纹的应力强度因子的影响。已经使用了Burns and Richard模型来考虑土壤和管道之间的相互作用。有限元结果表明,埋管中的裂纹受到混合模式载荷。模式I和模式II应力强度因子取决于内部裂纹的圆周位置。 K_I始终显着大于K_(II),并且在内部裂纹沿垂直方向时最大。二维和三维裂纹结果的比较也表明,二维分析总是代表更保守的结果。根据裂缝的纵横比(a / c),二维和三维分析结果之间的差异可能会很大。

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