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NORTHERN EXPOSURE: MONITORING AND TESTING A SUBARCTIC LIQUIDS PIPELINE

机译:北曝光:监测和测试亚曲率液体管道

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The subarctic location of Enbridge's Norman Wells pipeline provides unique conditions affecting both construction and operations. These include the huge variations in annual air temperature, permanently frozen ground (permafrost), hundreds of river crossings and potential slope instability. The regulatory authorities recognized this environmental sensitivity and stringent conditions for construction and operation were applied. In this difficult environment, loss of integrity must be detected rapidly and at low thresholds. To ensure that integrity monitoring maintains or improves these thresholds, frequent testing is necessary. Testing of the integrity of this remote northern oil pipeline provides significant operational challenges. This remote 869 km (540 mile) NPS12 crude oil pipeline has been operating in the Canadian subarctic since 1985. This paper will outline the implementation, assessment and future directions of the integrity monitoring testing of the pipeline's leak detection capability. The history of this pipeline in the Canadian Northwest Territories will be outlined with emphasis on the special regulatory issues of this sensitive sub arctic environment. The development of a Computational Pipeline Modeling (CPM) leak detection system to meet these regulations will be summarized with reference to the guidelines of CSA Z662, Appendix E. A central component of meeting this regulatory requirement is an annual test program that uses controlled fluid withdrawal to test the CPM system and operational responses. The special methods and procedures used to meet the challenges of this program will be noted. The extent and frequency of testing make this probably one of the most tested liquid pipeline leak detection systems in the world. These controlled fluid withdrawal tests are used to enhance the Enbridge response to operational emergencies. Many factors must be considered when designing these tests. A detailed description of the preparation and field logistics required for the pipeline CPM test will be presented. The special needs of conducting tests in an environmentally sensitive region will also be outlined. A review of how these tests address the considerations of API 1149 and API 1155 are summarized. Since pipeline completion, over 70 test events have been conducted. A recent case study will detail some of the issues associated with testing. Future plans for enhancements using additional testing methodologies will be presented with particular mention of a simulation-based alternative.
机译:Enbridge公司的诺曼底井管道的亚北极位置提供既影响施工和运营得天独厚的条件。这些措施包括在全年空气温度的巨大变化,永久冻土(永久冻土层),数百个渡口和潜在的边坡失稳。监管部门认识到这种环境的敏感性和应用结构和操作的严格条件。在这种艰难的环境中,诚信的损失必须快速和低阈值检测。为了保证完整性监控保持或改善这些阈值,频繁的测试是必要的。这个偏远的北部石油管道的完整性测试提供显著的运营挑战。这种远程869公里(540英里)的NPS12原油管道已在加拿大亚北极自1985年以来本文将概述完整性监测管道的泄漏检测能力的测试的实施,评估和未来的方向运行。这条管道在加拿大西北地区的历史将重点放在这个敏感子北极环境的特殊监管问题进行概述。一个计算管线模型(CPM)泄漏检测系统,以满足这些法规的制定将参照CSA Z662,满足这一监管要求的附录E的核心组件的指导原则来概括是一年一度的测试程序使用控制流体排出测试CPM系统和业务响应。用来满足这一计划的挑战特别的方法和程序,需要注意的。测试的程度和频率使这可能是世界上最测试液体管道泄漏检测系统中的一个。这些受控流体排出测试用于增强安桥响应于操作的紧急情况。许多因素必须在设计这些测试时,可以考虑。为管道CPM测试所需的准备和物流领域的详细描述将被呈现。在环境敏感地区进行测试的特殊需求也将被列出。这些测试是如何解决的API 1149和API 1155的注意事项的审查进行了总结。由于管道完成后,在70测试赛已经进行。最近的一个案例研究将详细介绍一些与测试相关的问题。使用额外的测试方法,增强未来计划将与基于仿真的替代的特别提及来呈现。

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