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Fatigue failure analysis of dented pipeline and simulation calculation

机译:凹陷管道的疲劳失效分析及仿真计算

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摘要

Natural gas pipeline leaks may cause considerable damage to people, properties, and the surrounding environment. This study investigates a dent leak in a gas pipeline in China that has operated for six years. The failure pipe section meets American Petroleum Institute (API) specification 5L-2012 standard for carbon steel pipelines. The cause of leakage is evaluated not only through visual examination, micromorphology observation, structural deformation analysis, and residual stress measure of the dented region near the leak point of the pipe body, but also through finite element analysis on the deformation and stress of the pipe under different loads. The dent formation is related to rocks during pipeline laying. Under the combined effect of external load and internal pressure, the maximum equivalent stresses of the dented edge at the outer wall, bulge top of the inner wall, and dented edge of the inner wall are greater than the yield stress of the material. Moreover, micro-crack formation occurs due to the maximum deformation at the bottom of the dent and the maximum equivalent stress on top of the inner surface bulge. Under alternating stress, microcracks gradually expand until they penetrate the wall thickness, and thereby cause pipeline leakages.
机译:天然气管道泄漏可能对人,属性和周围环境造成相当大的损害。本研究调查了在中国的天然气管道中泄漏六年。故障管部分符合美国石油研究所(API)规范5L-2012碳钢管道标准。不仅通过视觉检查,微晶观察,结构变形分析和管体泄漏点附近的凹陷区域的结构变形分析和残余应力测量来评估泄漏的原因,也通过有限元分析管道的变形和应力在不同的载荷下。凹痕形成与管道铺设期间的岩石有关。在外部负荷和内部压力的组合效果下,外壁处的凹陷边缘的最大等效应力,内壁的凸起顶部和内壁的凹陷边缘大于材料的屈服应力。此外,由于凹痕底部的最大变形以及内表面凸起的顶部的最大当量应力,发生微裂纹形成。在交替应力下,微裂纹逐渐膨胀,直到它们穿透壁厚,从而导致管道泄漏。

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