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A CASE STUDY: FAILURE ANALYSIS OF CRUDE OIL PIPELINE RUPTURE

机译:案例研究:原油管道破裂的故障分析

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More than 80% of crude oil requirement in India is met through imports. Imported crude oil is delivered to the shore tanks through Single Point Mooring (SPM) system. Generally, SPM systems are installed in the sea where water depth is around 30m and more. Crude oil tankers discharge their cargo through these SPMs and off-shore pipelines to storage tanks located in the shore. Therefore, off-shore crude unloading pipelines are a vital link to in the energy supply chain in India. Management of these off-shore pipelines is a challenging task. This paper discusses a case of mechanical damage to an Indian off-shore pipeline and how the damage is being evaluated to ensure reliability and safety of this vital link to ensure sustained and safe operation of the line. The mechanical damage discussed in this paper is in a 48" off-shore pipeline at a depth of nearly 30m and 24km away from the shore. Owners believe that the damage was caused due to anchor hit from a ship that was buffeted away from safe anchor zone to no anchor zone during a cyclonic storm. Owner had to face considerable challenge in locating and measuring the extent of damage and evaluating its severity and probable impact on the integrity of the pipeline. Owner had done multiple geometry inspection of the pipeline to measure the length of the damage and restriction introduced in the bore due to local reduction in diameter. Possibility of presence of a crack and its likelihood of growth in the near and distant future is also evaluated. The paper also discusses the possible remedial measures to ensure long term integrity of the pipeline.
机译:通过进口实现印度的超过80%的原油要求。通过单点系泊(SPM)系统将进口原油输送到岸罐。通常,SPM系统安装在水深约为30米和更多的海洋中。原油罐机通过这些SPM和离岸管道排放到位于岸边的储罐。因此,离岸原油卸载管道是印度能源供应链中的重要环节。这些离岸管道的管理是一个具有挑战性的任务。本文讨论了对印度离岸管道的机械损坏以及如何评估损坏,以确保这种重要链接的可靠性和安全性,以确保该线路的持续和安全运行。在本文中讨论的机械损伤是在近30米,24公里的深度离岸边48" 离岸管道。车主认为,损失是由于从从安全锚的打击远船舶锚命中造成区气旋风暴期间没有锚区。用户不得不面临相当大的挑战,在定位和测量损伤的程度,并评估其严重性和对管道的完整性可能产生的影响。用户所做的管道来衡量的多个几何检查由于局部局部减小,孔中引入的损坏和限制的长度。还评估了近距离未来裂缝的可能性及其增长的可能性。本文还讨论了可能的补救措施,以确保长期保证管道的完整性。

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