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DEVELOPMENT AND EXPERIENCES OF A CIRCUMFERENTIAL STRESS CORROSION CRACK MANAGEMENT PROGRAM

机译:圆周应力腐蚀裂纹管理程序的发展与经验

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A pipeline operator set out to assess the risk of circumferential stress corrosion cracking and to develop a proactive management program, which included an in-line inspection and repair program. The first step was to screen the total pipeline inventory based on pipe properties and environmental factors to develop a susceptibility assessment. When a pipeline was found to be susceptible, an inspection plan was developed which often included ultrasonic circumferential crack detection in-line inspection and geotechnical analysis of slopes. Next, a methodology was developed to prioritize the anomalies for investigation based on the likelihood of failure using the provided in-line inspection sizing data, crack severity analysis, and correlation to potential causes of axial or bending stress, combined with a consequence assessment. Excavation programs were then developed to target the anomalies that posed the greatest threat to the pipeline system or environment. This paper summarizes the experiences to date from the operator's circumferential stress corrosion cracking program and describes how the pipeline properties, geotechnical program, and/or in-line inspection programs were combined to determine the susceptibility of each pipeline and develop excavation programs. In-line inspection reported crack types and sizes compared to field inspection data will be summarized, as well as how the population and severity of circumferential stress corrosion cracking found compares to the susceptible slopes found in the geotechnical program completed. Finally, how the circumferential SCC time-average growth rate distributions were calculated and were used to set future geohazard inspections, in-line inspections, or repair dates will be discussed.
机译:管道运营商着手评估周向应力腐蚀裂纹的风险,并制定积极的管理计划,其中包括在线检查和维修计划。第一步是根据管道特性和环境因素筛选管道总库存,以进行敏感性评估。当发现管道易受影响时,制定了一项检查计划,该计划通常包括超声圆周裂缝检测在线检查和边坡的岩土工程分析。接下来,使用提供的在线检查尺寸数据,裂纹严重性分析以及与轴向或弯曲应力的潜在原因的相关性,结合结果评估,开发了一种方法,用于基于故障的可能性来对异常进行优先级划分。然后开发挖掘程序以针对对管道系统或环境造成最大威胁的异常。本文总结了迄今为止从操作员的周向应力腐蚀裂纹程序中获得的经验,并描述了如何结合管道特性,岩土程序和/或在线检查程序来确定每条管道的敏感性并制定开挖程序。将总结在线检查报告的裂缝类型和大小以及与现场检查数据相比的结果,以及所发现的周向应力腐蚀裂缝的数量和严重程度与已完成的岩土工程计划中的敏感坡度相比。最后,将讨论如何计算周向SCC时间平均增长率分布并将其用于设置未来的地质灾害检查,在线检查或维修日期。

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