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EXTREME TESTING: ASSESSING CPM LEAK DETECTION SYSTEMS ON A NORTHERN OIL PIPELINE

机译:极端测试:评估北方石油管道上的CPM泄漏检测系统

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Pipelines in remote and ecologically sensitive regions pose special challenges for pipeline integrity monitoring. These challenges include difficulties of access, reliability issues of communication and instrumentation that may impact the leak detection technology applied in these regions. The selection, application and continuous testing of an appropriate technology to detect possible leaks are important to pipeline integrity monitoring. The paper reports theoretical assessment and extensive testing on an Enbridge subarctic liquid pipeline. It also reports the comprehensive cost-benefit analysis to guide the leak detection instrument design/configuration and the evaluation of the capabilities of alternative computational pipeline monitoring (CPM) technologies for leak detection. The selected test pipeline is an 869 kilometer (540 mile), NPS 12 inch pipeline that transports sweet crude through environmentally sensitive areas. This pipeline currently uses a real-time transient model (RTTM) style CPM as the leak detection system (LDS). The pipeline LDS is tested annually by a number of industry-recognized methodologies. These include fluid withdrawal tests, simulated leak tests and an API-1130 instrument adjustment approach. This pipeline is also assessed by API-1149 for its theoretical CPM leak detection sensitivity. A pilot project invited commercial CPM-style vendors to participate in an LDS test using data from fluid withdrawal and simulated leak tests. Five vendors responded and were included in the test suite. The paper describes the design and implementation of the test process. The results of the commercial systems are presented in aggregated form and the participating vendors remain anonymous. Performance assessment focuses on the LDS evaluation factors of sensitivity and accuracy. The paper concludes with a "lessons learned" review of issues associated with test design.
机译:远程和生态敏感区域的管道对管道完整性监测构成了特殊挑战。这些挑战包括可能影响在这些地区应用泄漏检测技术的通信和仪器的访问,可靠性问题的困难。选择,应用和连续测试,用于检测可能的泄漏的适当技术对管道完整性监测很重要。该论文报告了对亚桥蛛网中液体管道的理论评估和广泛的测试。它还报告了综合成本效益分析,以指导泄漏检测仪器设计/配置以及替代计算管道监测(CPM)技术的能力进行泄漏检测的能力。所选的测试管道是869公里(540英里),NPS 12英寸管道,通过环境敏感区域运输甜蜜的原油。该管道目前使用实时瞬态模型(RTTM)样式CPM作为泄漏检测系统(LDS)。管道LDS每年通过许多行业认可的方法进行测试。这些包括流体取出测试,模拟泄漏测试和API-1130仪器调整方法。该管道也由API-1149评估其理论CPM泄漏检测灵敏度。试点项目邀请商业CPM风格的供应商使用来自流体取出和模拟泄漏测试的数据参与LDS测试。五家供应商应对并包含在测试套件中。本文介绍了测试过程的设计和实现。商业系统的结果以汇总形式呈现,参与供应商仍然是匿名的。性能评估重点是LDS评估因素的敏感性和准确性。本文结束了“经验教训”审查与测试设计相关的问题。

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