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ANALYTICAL APPROACH TO DETERMINE HYDROTEST INTERVALS

机译:确定最大水汽间隔的分析方法

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摘要

Many gas pipeline operators use hydrotesting as a means of managing stress corrosion cracking in pipelines. Historically the interval at which the pipelines are hydrotested is largely empirical. If for instance a failure occurred on a pipeline section four years after a hydrotest, then four years would become the baseline interval. As failures are rare, these worst-case intervals are often applied across the system with little consideration to the many factors that would affect the relevant interval for different pipelines. This can result in an overly conservative frequency of hydrotests.rnIn IPC 2006 an analytical method of determining hydrotest intervals, based on a time vs. pressure plot, was developed and published by Fessler et al. The study conducted herein examines this method, its assumptions, applicability, and limitations, with regards to an in-service pipeline system. It also discusses how this method was adapted to account for variable crack growth rates and failures. Application of this adapted method to the pipeline system and its results are discussed. It was found that this method could be used to predict hydrotest intervals for in-service pipelines.rnAn additional method of using crack assessments with certain growth characteristics to develop hydrotest intervals is also presented. This method incorporated crack failure prediction calculations, and estimated crack growth rates, to predict hydrotest intervals. The results and the limitations are critically examined. Practical ways of improving the methods and ongoing work to improve the method are also explained.
机译:许多天然气管道运营商使用水压试验作为管理管道应力腐蚀开裂的手段。从历史上看,对管道进行水压测试的间隔主要是根据经验确定的。例如,如果在一次水压试验后四年内在管道部分发生了故障,则四年将成为基准间隔。由于故障很少发生,因此这些最坏情况的间隔通常在整个系统中应用,而很少考虑会影响不同管道的相关间隔的许多因素。在IPC 2006中,Fessler等人开发并发布了一种基于时间与压力的关系图来确定水力测试间隔的分析方法。本文进行的研究针对服务中管道系统检查了此方法,其假设,适用性和局限性。它还讨论了该方法如何适用于解决可变的裂纹扩展速率和故障。讨论了这种改进方法在管道系统中的应用及其结果。研究发现,该方法可用于预测在役管道的水压试验间隔。rn还提出了另一种使用具有一定增长特征的裂缝评估来制定水压试验间隔的方法。该方法结合了裂纹破坏预测计算和估计的裂纹扩展速率,以预测水压试验间隔。严格审查结果和局限性。还说明了改进方法的实际方法以及改进方法的正在进行的工作。

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  • 来源
  • 会议地点 Calgary(CA);Calgary(CA);Calgary(CA)
  • 作者单位

    TransCanada Pipelines Ltd. 450 1st St. SW Calgary, Canada T2P 5H1;

    TransCanada Pipelines Ltd. 450 1st St. SW Calgary, Canada T2P 5H1;

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  • 原文格式 PDF
  • 正文语种 eng
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