Validation of the New Gamma Exponent Model for Axial Crack Assessment in Oil and Gas Pipelines

C. Scott
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引用次数: 1

Abstract

In the late 1960s and early 1970s, the researchers of the NG-18 committee at the Battelle Institute in Columbus, Ohio completed a seminal study on the failure pressures of flaws in oil and gas pipelines. One of the key developments was the “log-secant” equation for the assessment of axial crack-like flaws. The model was later modified to improve its accuracy and precision. The Gamma Exponent Model (GEM) was recently developed for assessment of axial crack-like flaws in pipelines. The developer recognized that the NG-18 log-secant model was theoretically derived on length, and then empirically corrected for depth. The new GEM was theoretically derived on depth, and then empirically corrected for length. The new model is similar in mathematical form to the original NG-18 log-secant model, but there are some key differences. This work is a validation study of the GEM using axial crack failure pressure data from the industry literature. Laboratory tests with machined flaws, and hydrotest and in-service failures with natural metallurgical flaws, are also considered. The results of the GEM are compared to the equivalent failure predictions using other models. The strengths and limitations of the new model are discussed in the context of improved accuracy and precision for crack assessments.
油气管道轴向裂纹评价新Gamma指数模型的验证
在20世纪60年代末和70年代初,俄亥俄州哥伦布市巴特尔研究所NG-18委员会的研究人员完成了一项关于石油和天然气管道缺陷失效压力的开创性研究。其中一个关键的发展是“对数-割线”方程的轴向裂纹样缺陷的评估。后来对该模型进行了修改,以提高其准确性和精密度。伽马指数模型(GEM)是近年来发展起来的用于管道轴向类裂纹缺陷评估的模型。开发商认识到NG-18对数-割线模型在理论上是根据长度推导出来的,然后根据深度进行经验修正。新的GEM从理论上推导出深度,然后根据长度进行经验校正。新模型在数学形式上与原来的NG-18对数-割线模型相似,但有一些关键的区别。这项工作是利用工业文献中的轴向裂纹破坏压力数据对GEM进行验证研究。还考虑了带有机械加工缺陷的实验室试验,以及带有自然冶金缺陷的水压试验和在役失效。将GEM的结果与使用其他模型的等效失效预测进行比较。在提高裂纹评估的准确性和精度的背景下,讨论了新模型的优点和局限性。
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