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(OTC 21338)Design of the World's Deepest Hybrid Riser System for the Cascade Chinook Development

机译:(OTC 21338)为级联和奇努克发展的世界最深的混合立管系统设计

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With the successful deployment of the five Cascade & Chinook free standing hybrid risers (FSHRs) in the Gulf ofMexico at a water depth of 8,250 ft in year 2010, hybrid riser technology is adopted for deepwater developmentworldwide. It is basically a combination of steel and flexible risers with utilization of their advantages and henceoffers unique features. The Cascade & Chinook FSHRs set a few new world records such as the deepest installedhybrid risers, first disconnectable hybrid risers, first hybrid riser in severe environmental conditions in the GoM, firsthybrid riser designed to accommodate two floater concepts. Compared to other installed hybrid risers worldwide,the Cascade & Chinook FSHRs posed more technical challenges and hence required more engineering effort tocome up with robust engineering solutions.This paper addresses the engineering challenges and solutions associated with the detail design of the Cascade &Chinook FSHR system including global configuration, material selection and sizing, component design, global andlocal analysis, and qualification testing. A brief description of the Cascade & Chinook hybrid riser system is givenfirst together with the highlights of the technical challenges. Secondly, factors affecting the global configuration andlocal component design are identified and evaluated. The logical procedure for design and analysis of deepwaterFSHRs is discussed and presented in more detail. Thirdly, focus is given to the global response analysis includingstrength and fatigue as well as local finite element analysis of components such as the taper stress joint, buoyancycan, riser top, lower assembly and foundation pile. Discussion is also given to the relationship betweenengineering design, fabrication and installation, which is of particular interest for this type of riser. And inconclusion, some important lessons learnt from the execution of the Cascade & Chinook FSHR engineering aresummarized.
机译:通过成功部署五个级联和Chinook自由站立的混合立管(FSHRS)在2010年的水深在8,250英尺的水深,对深水开发世界采用混合动力提升技术。它基本上是钢和柔性立管的组合,利用它们的优势,因此是独特的特征。 Cascade&Chinook FSHRS设置了一些新的世界纪录,如最深的储存犬立管,首先可脱离的混合立管,在GOM中的严重环境条件下的第一个混合立管,FirstHybrid Riser旨在容纳两个浮动概念。与世界上其他安装的混合立管相比,级联和奇努克FSHRS提出了更多的技术挑战,因此需要更强大的工程解决方案所需的工程努力。本文解决了与Cascade&Chinook FSHR系统的详细设计相关的工程挑战和解决方案,包括全局配置,材料选择和尺寸,组件设计,全球和本地分析和资格测试。 Cascade和Chinook混合立管系统的简要说明与技术挑战的亮点一起获得了束缚。其次,确定并评估影响全局配置和本地组分设计的因素。更详细地讨论和展示了深水汇流设计和分析的逻辑程序。第三,对全球响应分析的重点包括经历和疲劳以及锥形应力关节,浮力,提升机顶部,下组装和基础桩等部件的局部有限元分析。还讨论了工程设计,制造和安装之间的关系,这对这种类型的提升机特别感兴趣。和咒语,从执行级联和Chinook FSHR工程的执行中汲取了一些重要的教训。

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