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Experimental Study of the Behavior of Wrinkled Energy Pipelines Subjected to Cyclic Pressure Loading

机译:循环压力负荷皱纹能量管道行为的实验研究

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摘要

The development of a small wrinkle defect in a buried pipeline can be a challenging issue for pipeline operators to approach. Although extensive research has been conducted to evaluate the integrity of a pipeline showing signs of irregularities such as corrosion, pipe wall buckling, and/or rippling, limited research data or guidelines are available to assess the severity of a small wrinkle defect. If not dealt with appropriately, these small wrinkle defects can lead to further damage of the pipe wall as a result of fatigue damage caused by internal pressure cycling, A research program comprised of a full-scale two-stage experimental test setup was initiated to investigate the postwrinkling behavior of field pipelines undergoing typical pressure fluctuations. This paper presents test procedures describing both the wrinkle defect initiation stage and the subsequent cyclic pressure fatigue test stage, as well as the corresponding observations and results. The results indicate that wrinkle defects that initiate in pipelines that operate at lower pressures or are temporarily shut down are more susceptible to fatigue failure as a result of pressure fluctuations, due to internal cracks initiating at the apex of the wrinkle and propagating outward.
机译:埋地管道的小皱纹缺陷的发展可能是管道运营商接近的具有挑战性的问题。虽然已经进行了广泛的研究以评估诸如腐蚀,管壁屈曲和/或涟漪等脱模迹象的管道的完整性,但有限的研究数据或指南可用于评估小皱纹缺损的严重程度。如果没有适当地处理,这些小皱纹缺陷可能导致管壁的进一步损坏由于内部压力循环引起的疲劳损坏,因此启动了由满量程两阶段实验测试设置的研究计划进行调查典型压力波动现场管道的后缀行为。本文介绍了描述皱纹缺损起始阶段和随后的循环压力疲劳试验阶段的测试程序,以及相应的观察结果和结果。结果表明,由于压力波动的结果,在较低压力下运行或暂时关闭的管道中发起的皱纹缺陷更容易受到疲劳失效的影响,因为在皱纹的顶点和向外传播的内部裂缝引起的内部裂缝。

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