首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >A COLLABORATIVE APPROACH TO ROOT CAUSE ANALYSIS- WITH REFERENCE TO SUNCOR ENERGY TERRA NOVA FLEXIBLE FLOWLINES AND RISERS
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A COLLABORATIVE APPROACH TO ROOT CAUSE ANALYSIS- WITH REFERENCE TO SUNCOR ENERGY TERRA NOVA FLEXIBLE FLOWLINES AND RISERS

机译:根本原因分析的协同方法 - 参考Suncor Energy Terra Nova Flexible Flowline和Risers

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One riser and two flowline sections installed in the Suncor Energy Terra Nova riser replacement programme were shown to leak during field tests performed after site installation. No hydrocarbon loss occurred nor was there an environmental incident; however, the scheduled production start-up for the pipes was delayed. The pipes were designed and manufactured to comply with API [1] code and had successfully undergone full-scale factory acceptance testing (FAT) at 1.5 times design pressure following manufacture. Investigations confirmed that the leaks in both pipes occurred due to a crack in the polymer (PVDF) barrier within the end-fitting region of the pipe. It was also concluded that the crack in the barrier in these pipes occurred after completion of the FAT and sometime during the transportation, storage and subsequent installation of the pipes in the field. It was identified that the problem in the barrier resulted from an unknown thermo-mechanical loading condition of the pipe during this period, and also related to specific design features of some components in those end-fittings. The TapRoot Root Cause Analysis (RCA) tool was used to guide the investigation effort and consider all available data. Small and full-scale tests were performed to simulate and understand the end fitting design in the environments and conditions experienced during transport, installation and offshore testing. What is presented here is a brief outline of the incident and details of the subsequent investigation. The investigation was conducted over a period of 18 months with the participation of all parties involved in the design, manufacture, installation and operation of the flexibles. This paper summarises the investigation process followed, documents the results, discusses the results and outlines the conclusions and recommendations arising from this investigation.
机译:安装在Suncor Energy Terra Nova Riser更换程序中的一个提升管和两个流线部分在现场安装后进行了现场测试期间泄漏。没有碳氢化合物损失也没有发生环境事件;但是,管道的预定生产启动被延迟。设计和制造管道以符合API [1]代码,并在制造后的设计压力下成功经历了全面的工厂验收测试(FAT)。研究证实,由于在管的端部配合区域内的聚合物(PVDF)屏障中的裂缝,两管子中的泄漏发生。还结论,这些管道中的屏障中的裂缝发生在脂肪完成后发生,在运输,储存和随后安装现场管道的某个时间。鉴定了屏障中的问题是由于在此期间的未知热机械负载条件导致的,并且还与这些端部配件中一些组件的特定设计特征有关。 Taproot根原因分析(RCA)工具用于指导调查工作并考虑所有可用数据。进行小型和全规模测试以模拟和了解运输,安装和海上测试期间的环境和条件中的端部配件设计。这里提出的是事件的简要概述以及随后调查的详细信息。所有参与设计,制造,安装和操作的各方参与的所有各方都在为期18个月进行调查。本文总结了调查过程,遵循文件,讨论结果,概述了这项调查所产生的结论和建议。

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