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PIPELINE INTEGRITY ANALYSIS BASED ON INTERDISCIPLINARY COOPERATION

机译:基于跨学科合作的管道完整性分析

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For many years, BP Pipelines, North America has used high-resolution Magnetic Flux Leakage (MFL) in-line inspection (ILI) technology to help maintain the integrity of their pipelines. The improvements in this technology that now allow an Operator to make integrity decisions also bring challenges. Reports from ILI can list thousands, or even hundreds of thousands, of individual anomalies or features. When combined with data from NDT field measurements and existing pipe tallies, it can become overwhelming. Methods had to be developed to distill this information for further analysis. BP Pipelines NA encouraged cooperation between all parties involved in the integrity process to adapt reporting requirements and work procedures to provide the best available information for integrity analysis and to ensure continued improvements. This cooperation is a key part of the integrity equation and essential to a successful program. This paper presents an overview of the validation process undertaken on a 51 km (32-mile) section of 457 mm (18-inch) pipeline. This pipe section was inspected in 1999 and again in 2003 by the same inspection company. This provided an opportunity to evaluate improvements in inspection technology, assess repeatability of performance and develop an engineering based approach to review, analyze, and validate high-resolution metal loss MFL data. Field verification and data validation included the use of a several NDE techniques to acquire field measurements to overlay and compare to the ILI inspection data. Anomaly classification and distribution is examined and methods of selecting validation locations for future inspection developed. In addition to the primary goal outlined, the 2003 repair program provided an opportunity to evaluate the performance of the composite sleeve reinforcements applied in 1999, after 4 years of service.
机译:多年来,BP管道,北美使用了高分辨率磁通泄漏(MFL)在线检查(ILI)技术,帮助保持其管道的完整性。这项技术的改进现在允许操作员制定诚信决策也带来挑战。 Ili的报告可以列出数千甚至数十万人的个体异常或特征。与来自NDT现场测量和现有管道的数据相结合时,它可能会压倒。必须开发方法以蒸馏出该信息以进一步分析。 BP Pipelines Na鼓励所有参与诚信流程的各方之间的合作,以适应报告要求和工作程序,为完整性分析提供最佳信息,并确保继续改进。这种合作是完整方程的关键部分,对成功计划至关重要。本文概述了51公里(32英里)457毫米(18英寸)管道的51公里(32英里)部分所开展的验证过程。该管道部分于1999年进行了检查,并于2003年由同一检验公司进行检查。这为评估了检测技术的改进提供了一个机会,评估性能的可重复性,并开发基于工程的方法来审查,分析和验证高分辨率金属损耗MFL数据。现场验证和数据验证包括使用几种NDE技术来获取现场测量以覆盖并与ILI检测数据进行比较。检查了异常分类和分配以及选择未来检查的验证位置的方法。除了概述的主要目标外,2003年的维修计划还提供了在4年服务后,评估1999年的复合套管增强件的性能的机会。

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