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Application of MFL on Girth-Weld Defect Detection of Oil and Gas Pipelines

机译:MFL对油气管道周长焊接缺陷检测的应用

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Globally, the integrity of girth weld (GW) of oil and gas pipelines has increased as a concern due to failures with high consequences. A primary integrity issue to pipelines considers defects originating during field construction but over time may also be subject to external loads and stresses due to earth movement. GW defects in newly built pipelines are also assumed to exist but would be much smaller in size, and more difficult to detect, which motivated the investigation into minimum defect detection levels of the inspection technologies. Research objectives of this paper are to characterize and summarize the applicability of inline inspection (ILI) technology of magnetic flux leakage 4 (MFL4) for inspection of defects related to pipeline GWs. Pull-through test and infield site excavations of operational pipelines have been collected and used for detection, internal/external (int/ext) identification, and sizing quantification. It can be concluded that the MFL4 technique is generally sensitive to lack of fusion or penetration, deep undercut, local thinning with results of both pull test and field data; while not sensitive to closed or very narrow small dimension cracks (narrower than 1 mm, less than 2 mm deep) as was observed in this study. (c) 2020 American Society of Civil Engineers.
机译:在全球范围内,由于具有高后果的故障,石油和天然气管道的周长焊接(GW)的完整性增加了。管道管道的主要完整性问题考虑源自现场施工期间的缺陷,但随着时间的推移,由于地球运动,也可能受到外部负荷和应力的影响。还假设新建管道中的GW缺陷存在,但大小会更小,更难以检测,这激励了对检验技术的最小缺陷检测水平的调查。本文的研究目标是表征和总结磁通量泄漏4(MFL4)的内联检测(ILI)技术的适用性,以检查与管道GWS相关的缺陷。已经收集了运营管道的引车测试和infield现场挖掘,并用于检测,内部/外部(INT / EXT)识别和尺寸量化。可以得出结论,MFL4技术通常对缺乏融合或渗透,深层底切,局部稀疏,局部稀疏,具有拉动试验和现场数据的结果;虽然不敏感到闭合或非常窄的小尺寸裂缝(如本研究中观察到的那样窄的小尺寸裂缝(窄于1毫米)。 (c)2020年美国土木工程师协会。

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