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POST ASSESSMENT OF ULTRASONIC CRACK DETECTION INLINE INSPECTION DATA

机译:超声波裂纹检测在线检查数据的后评估

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The information supplied from inline inspection data is often used by pipeline operators to make mitigation and/or remediation decisions based on integrity management program requirements. It is common practice to apply industry accepted remaining strength pressure calculations (i.e. B31G, 0.85 dl, effective area) to the data analysis results from an inline inspection survey used for the detection and characterization of metal loss. Similar assessments of data analysis results from an ultrasonic crack detection survey require expert knowledge in the field of fracture mechanics and, just as importantly, require knowledge to understand the limitations of shear wave ultrasonic technology as applied to an inline inspection tool.rnTraditionally, crack-like and crack-field features have been classified with a maximum depth distributed over the entire length of the feature; crack-field features also have width reported. In an effort to provide further prioritization, techniques such as "longest length" or "interlinked length" [1] have been employed. More recently, an effort has been made to provide a depth profile of the crack-like or crack-field feature using the ultrasonic crack detection data analysis results. This presentation will discuss the advantages of post assessment of ultrasonic crack detection data analysis results to aid in the evaluation of pipeline integrity and discuss the limitations of advanced analysis techniques. Additionally, the potential for new inline inspection ultrasonic technologies which lend themselves to more accurate data analysis techniques will be reviewed.
机译:管道操作员经常使用从在线检查数据中提供的信息来根据完整性管理程序的要求做出缓解和/或补救决策。通常的做法是将行业认可的剩余强度压力计算(即B31G,0.85 dl,有效面积)应用于在线检测调查的数据分析结果中,以用于金属损失的检测和表征。超声波裂缝检测调查对数据分析结果的类似评估需要断裂力学领域的专业知识,并且同样重要的是,需要知识来理解应用于在线检测工具的剪切波超声波技术的局限性。类和裂纹场特征已分类,最大深度分布在整个特征长度上;裂纹场特征也有宽度报告。为了提供进一步的优先级,已使用诸如“最长长度”或“互连长度” [1]之类的技术。最近,已经努力使用超声波裂纹检测数据分析结果来提供裂纹状或裂纹场特征的深度轮廓。本演讲将讨论超声裂缝检测数据分析结果的后评估的优点,以帮助评估管道完整性,并讨论先进分析技术的局限性。此外,还将对新的在线检查超声技术的潜力进行介绍,这些技术将有助于更准确的数据分析技术。

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