Pipe Knocked From Supports by Hydraulic Transient Event

L. Matta, Jacob Manuel, S. Ramamoorthy
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Abstract

Following what was considered a routine realignment of liquid product lines and tankage at a storage and transfer facility, an incident occurred that resulted in significant movement of a 20-inch pipeline, causing a large section of it to fall from its supports. The event also resulted in the failure of a gasket at a valve flange and loss of containment. The alignment activities and pump startup were investigated for the potential to generate a hydraulic transient capable of generating sufficient force to cause the movement. A transient hydraulic model of the fluid in the piping as it was aligned at the time of the event was generated to assist in determining the cause and to help prevent a similar occurrence in the future. Several scenarios were modeled and are discussed in this paper: 1) pump shutdown from steady flow, 2) pump start up with the discharge valve open, 3) pump startup with the discharge valve closed, and 4) pump start up with a vapor cavity present near a closed valve at the high point in the line. Pipe stress and finite element analysis were used to assess the displaced pipe and to determine if it could be placed back into service. The piping stress analysis indicated that the highest stress in the piping was below the yield stress of the material. Results from a detailed finite element analysis with material nonlinearity confirmed that there was no global plastic strain in the piping due to the event. This left a potential for local plastic strain due to the impact of the pipe against any hard surfaces, and this was addressed with visual examination. In the end, the pipe was lifted back onto the supports, lateral restraints were added at pipe support locations, and procedural changes were implemented to reduce the likelihood of future events.
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液压瞬变事件使管道从支架上脱落
在对储运设施的液体生产线和储罐进行例行调整后,发生了一起事故,导致一条20英寸的管道发生重大移动,导致一大部分管道从支架上脱落。这一事件还导致阀门法兰上的垫圈失效,并失去了安全壳。研究了对中活动和泵启动的可能性,以产生能够产生足够的力来引起运动的液压瞬变。在事故发生时,生成了管道中流体的瞬态水力模型,以帮助确定原因,并帮助防止将来发生类似事件。本文模拟并讨论了几种情况:1)在稳定流量下关闭泵,2)在排放阀打开时启动泵,3)在排放阀关闭时启动泵,以及4)在管道高点关闭阀附近存在汽腔时启动泵。使用管道应力和有限元分析来评估位移管道,并确定其是否可以重新投入使用。管道应力分析表明,管道内的最高应力低于材料的屈服应力。考虑材料非线性的详细有限元分析结果证实,由于该事件,管道中没有整体塑性应变。由于管道对任何坚硬表面的冲击,这留下了局部塑性应变的可能性,这是通过目视检查解决的。最后,将管柱吊回到支架上,在管柱支架位置增加横向约束,并对程序进行修改,以减少未来发生事故的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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