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PROBABILISTIC WALL THICKNESS VERIFICATION FOR THE TURKSTREAM PIPELINE

机译:涡轮流管道的概率壁厚验证

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The TurkStream pipeline system is currently being constructed across the Black Sea for supply of natural gas from the Russian coast near Anapa to landfall on the Turkish coastline. The pipeline design is extremely challenging from a technical perspective with water depths along most of the route exceeding 2200m, difficult seabed conditions with steep slopes and geohazard risks, a potentially aggressive and corrosive subsea environment, and high gas deliveries requiring a large pipeline diameter. The combination of diameter, wall thickness, and quality requirements for the TurkStream linepipe is at the limit of leading mills around the world, and outside their normal production envelope. In order to demonstrate that the manufactured linepipe will meet target reliability levels, a material development program was completed, which included a major testing program involving testing prototype TurkStream pipes manufactured by both the UOE and JCOE methods of linepipe fabrication. The results from this test program formed the basis for a probabilistic verification of the pipeline wall thickness. This paper presents the reliability-based verification of the wall thickness for the TurkStream subsea pipelines. The collapse limit state was identified as the governing mode of failure, and was defined by a collapse prediction formula developed specifically for the TurkStream pipelines. The model was verified by full-scale tests from the test program, and then used to define the failure surface of the collapse envelope due to external pressure and bending. The probabilistic analyses resulted in reliability levels that exceed design code requirements. In addition, these analyses highlighted the need for certain criteria to be met during coated linepipe production. These requirements are summarized in this paper.
机译:TurkStream管道系统目前正在穿越黑海建造,用于从阿纳帕附近的俄罗斯海岸向土耳其海岸线的登陆处供应天然气。从技术角度来看,管道的设计极具挑战性,大部分路线的水深超过2200m,困难的海底条件具有陡峭的坡度和地质灾害风险,潜在的侵蚀性和腐蚀性海底环境,以及需要大直径管道的高输气量。 TurkStream管线管的直径,壁厚和质量要求的组合在世界范围内领先的工厂中都处于极限,并且超出了其正常生产范围。为了证明所制造的管线管将达到目标可靠性水平,已完成了一项材料开发计划,其中包括一项主要测试程序,该测试程序涉及对通过UOE和JCOE管线管制造方法制造的原型TurkStream管进行测试。该测试程序的结果为管道壁厚的概率验证奠定了基础。本文介绍了基于可靠性的TurkStream海底管道壁厚验证。崩溃极限状态被确定为故障的主导模式,并由专门为TurkStream管道开发的崩溃预测公式定义。该模型已通过测试程序中的全面测试进行了验证,然后用于定义由于外部压力和弯曲而导致的坍塌外壳的破坏面。概率分析得出的可靠性水平超过了设计规范的要求。此外,这些分析突出显示了在涂层管线管生产过程中需要满足某些标准的需求。本文总结了这些要求。

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