A Method to Analyze the Impact of Inline Inspection Accuracy on Integrity Management Program Planning of Pipelines

Mingjiang Xie, Zhigang Tian, J. Sutherland, Bingyan Fang, Bill Gu
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引用次数: 1

Abstract

A pipeline integrity management program is greatly affected by integrity planning methods and inline inspection (ILI) tool performance. In integrity management program planning, inspection and maintenance activities are in common practice, determined from risk and integrity assessment practices with the objective to reduce risk and effectively exceed a reliability target for the safe operation of the pipeline. An efficient and effective integrity planning method can address the most significant risk and optimize the operational and maintenance costs. In this paper, a method is presented for analyzing the impact of ILI tool accuracy on integrity planning for pipelines for fatigue cracks. Crack inspection and threat of fatigue cracking was used as the working case for the analysis although the approach could potentially be used for any pipeline threat type. The proposed method is based on the use of a Monte Carlo simulation framework, where initial crack defect size and ILI measurement errors are considered as key random variables. The integrity (severity) assessment of the crack population scenarios used the CorLAS™ burst pressure model, and the Paris’ law crack growth model based on API 579. The subsequent pipeline reliability assessments also considered single and multiple cracks scenarios. Using a reliability / probability of failure (PoF) approach, the impact of ILI tool accuracy and initial crack size on when to set reinspection and reassessment intervals was investigated. Furthermore, integrity program cost scenarios for pipeline integrity programs with multiple cracks was also evaluated with respect to different (crack) populations, pipe conditions and ILI accuracies. A sensitivity analysis was performed considering different inspection costs, maintenance costs and relative crack severity for pipelines with financial metrics. Various scenarios were discussed regarding maintenance and inspection planning and a “total cost rate” for different situations. The proposed method can support integrity management program planning by linking risks with integrity plan costs associated with ILI accuracies, and optimal re-assessment intervals.
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在线检测精度对管道完整性管理方案规划影响的分析方法
管道完整性管理方案受完整性规划方法和在线检测工具性能的影响很大。在完整性管理程序规划中,检查和维护活动是常见的做法,它们是根据风险和完整性评估实践确定的,目的是降低风险并有效地超过管道安全运行的可靠性目标。高效的完整性规划方法可以解决最重要的风险并优化运营和维护成本。本文提出了一种分析ILI刀具精度对疲劳裂纹管道完整性规划影响的方法。裂纹检测和疲劳裂纹威胁作为分析的工作案例,尽管该方法可能用于任何管道威胁类型。该方法基于蒙特卡罗模拟框架,将初始裂纹缺陷尺寸和ILI测量误差作为关键随机变量。裂缝种群情景的完整性(严重性)评估采用CorLAS™破裂压力模型和基于API 579的Paris’law裂缝增长模型。随后的管道可靠性评估也考虑了单裂纹和多裂纹情况。采用可靠性/失效概率(PoF)方法,研究了ILI刀具精度和初始裂纹尺寸对设置复检和重评估间隔时间的影响。此外,还针对不同裂纹数量、管道状况和ILI精度,评估了多裂纹管道完整性方案的完整性方案成本方案。考虑不同的检测成本、维护成本和管道相对裂缝严重程度,对具有财务指标的管道进行敏感性分析。讨论了关于维护和检查计划以及不同情况下的“总成本率”的各种场景。该方法通过将风险与ILI精度相关的完整性计划成本以及最优重新评估间隔联系起来,支持完整性管理方案的规划。
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