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PIPELINE FRACTURE CONTROL CONCEPTS FOR NORWEGIAN OFFSHORE CARBON CAPTURE AND STORAGE

机译:管道骨折控制概念挪威海上碳捕获和储存

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The Northern Lights onshore terminal will initially receive CO_2 transported by ship tankers from industrial source sites located in south-eastern Norway and transport CO_2 via a 12 ¾ OD offshore pipeline for injection into the Johansen storage reservoir, located south of the Troll field. The CO_2 injection pipeline will be laid from the shore terminal to a subsea wellhead structure from where the liquid CO_2 will be injected into the reservoir. Presently, demonstrating arrest of longitudinal propagating shear fracture in CO_2 transport pipelines is specifically addressed in two international guidelines. ISO 27913 and DNVGL-RP-F104. The study reported here aims to develop a robust fracture control methodology unique to the Northern Lights pipeline. To this end, the maximum loading in terms of saturation pressure is conservatively estimated from temperature and pressure scenarios from the planned pipeline route and applied in numerical simulations of the running-fracture phenomenon using the SINTEF coupled FE-CFD code. It is shown that, with the given pipe material, diameter, and loading conditions, the proposed wall thickness of 15.9 mm is sufficient to arrest a propagating crack. Furthermore, the Battelle TCM with ISO 27913 or DNVGL-RP-F104 arrest- and load pressure correction is shown to provide a good first estimate in pipe design, although the arrest pressure saturates for low Charpy energy toughness values, indicating limited accuracy in this study.
机译:北海灯陆运终端将最初收到由位于挪威东南部的工业来源站点的船舶车辆运输的CO_2通过12¾OD离岸管道运输CO_2,用于注射到德罗斯领域南部的约翰森储藏库。 Co_2喷射管道将从岸边端子铺设到液位井口结构,从液体CO_2将被注入贮存器中。目前,在两项国际指南中展示了CO_2运输管道中的纵向繁殖剪切骨折的逮捕。 ISO 27913和DNVGL-RP-F104。本研究报告旨在为北极光管道开发独一无二的骨折控制方法。为此,在饱和压力方面的最大负载保守估计来自计划管道路线的温度和压力场景,并使用Sintef耦合Fe-CFD码在运行裂缝现象的数值模拟中应用。结果表明,通过给定的管材,直径和装载条件,所提出的壁厚为15.9mm足以捕获传播裂缝。此外,具有ISO 27913或DNVGL-RP-F104的BATTELLE TCM被示出了停止和负载压力校正,以便在管道设计中提供良好的第一估计,尽管停留压力饱和对于低夏比能韧性值,表明该研究的准确性有限。

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