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CRITICAL CRACK SIZE DETECTION CRITERIA TO DEVELOP A NOVEL ILI TOOL FOR NON-PIGGABLE GAS PIPELINES

机译:开发用于非输气管道的新型ILI工具的关键裂纹尺寸检测标准

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Cracks or crack-like defects have been associated with failures in gas transmission pipelines and gas distribution piping systems, some incidents being consequential. Cracks are identified in natural gas pipeline safety regulations and safety standards as conditions that must be dealt with, however critical sizes or other specific evaluation criteria are not generally given. A hydrostatic test pressure to specified margins above the operating pressure could establish a benchmark for critical sizes that are a potential threat to the integrity of the pipe. Cracks that are too small to fail at the hydrostatic test pressure may still remain present in the pipeline. Ideally, determination of a sufficient margin of safety to identify defects that should be monitored after taking into consideration the potential growth of crack or crack like defects that are too small to fail a hydrostatic test pressure will address defects of concern that may remain present in the pipeline. The development of an integrated robotic internal inspection tool that can be used to accurately detect and size cracks or crack like features in natural gas pipelines is of mutual interest to pipeline regulators and operators. NDE technology carried by inline inspection tools should be at least capable of identifying cracks or crack like features that would fail in a hydrostatic pressure test or could potentially grow to failure with a high degree of probability prior to the next ILI reassessment. The tool and its integrated software algorithms must be capable of indicating the location, position, orientation, size, and characteristics of defects of interest or concern to minimize validation and/or repair costs and to preserve the overall integrity of pipelines in a gas transmission operator's integrity management program. This paper develops criteria for the minimum detection requirements of cracks or crack-like defects by an ILI tool to ensure equivalent integrity to that provided by a hydrostatic pressure test performed to standard requirements. The critical defect sizes will be estimated using fracture mechanics (e.g., the Modified NG-18 equation) considering different toughness categories. The paper addresses the challenge of variability in the real material properties through two approaches. The first approach is to conduct three sets of analyses for each material grade based on the lower 5% percentile, mean and upper 95% percentile properties. The second approach is to conduct the analysis based on Monte Carlo simulations to generate random combinations of material properties as well as crack dimensions.
机译:裂纹或类似裂纹的缺陷与气体输送管道和气体分配管道系统的故障有关,某些事故是必然的。裂缝在天然气管道安全法规和安全标准中被确定为必须处理的条件,但是通常不会给出临界尺寸或其他特定的评估标准。静水压力测试压力达到高于操作压力的指定裕度可能会为关键尺寸建立基准,而这些尺寸可能会对管道的完整性造成威胁。太大的裂纹无法在静水压测试压力下失效,仍然会保留在管道中。理想情况下,在考虑到裂纹或裂纹之类的缺陷的潜在增长(过小而无法通过静水压试验压力)后,确定足以监控缺陷的安全余量,将解决可能仍存在的缺陷。管道。集成的机器人内部检查工具的开发可用于准确检测天然气管道中的裂缝或类似裂缝的特征,并对其进行尺寸调整,这对管道监管者和操作人员来说都是共同的兴趣所在。在线检查工具所采用的NDE技术应至少能够识别在静水压力测试中失败或可能在下一次ILI重新评估之前以很高的概率发展为失败的裂纹或类似裂纹的特征。该工具及其集成的软件算法必须能够指示出所关注或关注的缺陷的位置,位置,方向,大小和特征,以最大程度地减少验证和/或维修成本,并保持天然气输送运营商的管道的整体完整性。完整性管理程序。本文提出了使用ILI工具检测裂纹或类似裂纹的最低检测要求的标准,以确保与按标准要求进行的静水压力测试所提供的完整性相同。考虑到不同的韧性类别,将使用断裂力学(例如,改进的NG-18方程式)来估计关键缺陷的尺寸。本文通过两种方法解决了实际材料特性可变性的挑战。第一种方法是根据较低的5%,平均值和较高的95%的性能对每种材料等级进行三组分析。第二种方法是基于蒙特卡洛模拟进行分析,以生成材料特性以及裂纹尺寸的随机组合。

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