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ADVANCED ENGINEERING CRITICAL ASSESSMENTS OF SEAM WELD FEATURES IN PRESSURE CYCLED HAZARDOUS LIQUID PIPELINES

机译:压力循环危险液体管道的无缝焊接特征的高级工程关键评估

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摘要

The performance of older ERW pipelines has raised concerns regarding their ability to reliably transport product to market. Low toughness or "dirty" steels combined with time dependent threats such as surface breaking defects, selective corrosion and hook cracks are especially of concern in hazardous liquid pipelines that are inevitably subject to cyclic loading, increasing both the probability and rate of crack growth.rnThe existing methods of evaluating seam weld flaws by hydrostatically testing the pipeline or In-Line Inspection (ILI) with an appropriate technology are well established. Hydrostatic testing, whilst providing a quantified level of safety is often impracticable due to associated costs, logistics and the possibility of multiple failures during the test. ILI technologies have become more sophisticated and as a result can accurately detect and size both critical and sub-critical flaws within the pipeline. However, the vast amounts of data generated can often be daunting for a pipeline operatorrnespecially when tool tolerances and future growth are required to be accounted for. For either method, extensive knowledge of the benefits and disadvantages are required to assess which is the more appropriate for a particular pipeline segment.rnThis paper will describe advances in the interpretation of seam weld flaws detected by ILI and how they can be applied to an Integrity Management Plan. Signal processing improvements, validated by in-field verifications have enabled detailed profiles of surface breaking defects at seam welds for ERW pipelines to be determined. Using these profiles along with established fracture and fatigue analysis methods allows for reductions in the unnecessary conservatism previously associated with the assessment of seam weld flaws detected by ILI. Combining these results with other available data, e.g. dig verifications, previous hydrostatic testing records, enables more realistic and better-informed integrity and maintenance planning decisions to be made. A real case study conducted in association with a pipeline operator is detailed in the paper and quantifies the benefits that can be realised by using thesernadvanced assessment techniques, to safely and economically manage their assets going forward.
机译:较旧的ERW管道的性能引起了人们对其可靠地将产品推向市场的能力的担忧。低韧性或“脏”钢与时间相关的威胁(例如表面破裂缺陷,选择性腐蚀和钩形裂纹)相结合,在不可避免地承受周期性载荷的危险液体管道中尤其令人关注,这会增加裂纹扩展的可能性和速度。通过适当的技术对管道进行静水压测试或在线检查(ILI)来评估接缝焊缝缺陷的现有方法已得到广泛确立。由于相关的成本,物流以及测试过程中可能发生多次故障,在提供定量安全级别的同时进行静水压测试通常是不可行的。 ILI技术已经变得更加复杂,因此可以准确地检测并确定管道中的关键和次关键缺陷的大小。但是,当需要考虑工具的公差和未来的增长时,生成的大量数据通常对于管道操作员而言可能是艰巨的。对于这两种方法,都需要广泛了解其优缺点,以评估哪种方法更适合特定的管道段。rn本文将介绍在ILI检测到的缝焊缺陷的解释方面的进展以及如何将其应用于完整性管理计划。信号处理的改进,通过现场验证得到了验证,从而能够确定ERW管道接缝焊缝表面断裂缺陷的详细资料。使用这些轮廓以及已建立的断裂和疲劳分析方法,可以减少以前与ILI检测到的焊缝缺陷评估相关的不必要的保守性。将这些结果与其他可用数据结合起来,例如挖掘验证和以前的静水压力测试记录,使您可以做出更现实,更明智的完整性和维护计划决策。本文详细介绍了与管道运营商联合进行的实际案例研究,并量化了使用先进的评估技术可以安全,经济地管理其资产的实现所能带来的收益。

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  • 来源
  • 会议地点 Calgary(CA);Calgary(CA);Calgary(CA)
  • 作者单位

    Pll Pipeline Solutions Business of GE Oil Gas 1003 11th Street SW, Calgary, T2R 0T4, Canada;

    ExxonMobil New Road, Hardley, Hythe, S045 3NR, England;

    Pll Pipeline Solutions Business of GE Oil Gas Atley Way, North Nelson Industrial Estate, Cramlington, Northumberland, NE23 1WW, UK;

    Pll Pipeline Solutions Business of GE Oil Gas 1003 11th Street SW, Calgary, T2R 0T4, Canada;

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