首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering 2007(OMAE2007) vol.1; 20070610-15; San Deigo,CA(US) >DEVELOPMENT AND QUALIFICATION OF ALTERNATE SOLUTIONS FOR IMPROVED FATIGUE PERFORMANCE OF DEEPWATER STEEL CATENARY RISERS
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DEVELOPMENT AND QUALIFICATION OF ALTERNATE SOLUTIONS FOR IMPROVED FATIGUE PERFORMANCE OF DEEPWATER STEEL CATENARY RISERS

机译:改善深水钢接触管疲劳性能的替代解决方案的开发和定性

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Several initiatives have been undertaken by the operators, engineering companies, product manufacturers, and regulatory bodies to enable increased use of steel catenary riser (SCR) design in development of deepwater and ultra-deepwater fields. Some of these efforts focus on improvement in understanding of soil-structure interaction at SCR touch down zone (TDZ) and its impact on fatigue damage estimates through analytical studies, laboratory testing, or in-field monitoring of SCR behavior. Through recent studies and laboratory testing work for floating platforms with SCR, the need for significant enhancement of SCR design at TDZ through implementation of alternate solutions has been identified. This paper presents a summary of the work undertaken in a Joint Industry Project (JIP) during 2004 to 2007 [1, 2] to develop solutions and undertake qualification tasks for four alternatives with potential to improve fatigue performance at TDZ by factor of up to 10 or more. The solutions considered at SCR TDZ include: thick light-weight coating over steel riser sections; steel riser sections with upset ends; high strength steel riser sections with integral connectors; and a titanium segment. The major qualification tasks undertaken for each solution will be identified and discussed. The qualification program undertaken for each solution varied and in some cases, it also included manufacturing of samples, laboratory and full-scale fatigue testing, and post-failure evaluation. Through significant qualification activities undertaken in this JIP, progress has been made to bring these solutions to project ready state for their consideration at the frond end engineering design (FEED) stage. Such design enhancements would enable increase in selection of SCR design for production and export riser applications under severe operating conditions, harsh environment, and floating systems with high motions.
机译:运营商,工程公司,产品制造商和监管机构已采取了多项举措,以在深水和超深水油田的开发中增加使用钢悬链提升管(SCR)设计。这些努力中的一些工作着重于通过分析研究,实验室测试或SCR行为的现场监测来提高对SCR着陆区(TDZ)的土壤-结构相互作用及其对疲劳损伤估计值的影响的理解。通过针对SCR浮动平台的最新研究和实验室测试工作,已经确定了通过实施替代解决方案来显着增强TDZ SCR设计的需求。本文概述了在2004年至2007年[1,2]的联合工业项目(JIP)中开展的工作,该工作旨在开发解决方案并承担四种替代方案的鉴定任务,这些替代方案有可能将TDZ的疲劳性能提高多达10倍。或者更多。 SCR TDZ考虑的解决方案包括:在钢立管段上覆盖厚薄的轻质涂层;末端带有钢up的立管部分;带整体连接器的高强度钢立管部分;还有一个钛金属片将确定并讨论为每种解决方案承担的主要资格鉴定任务。针对每种解决方案进行的资格认证计划各不相同,在某些情况下,还包括样品制造,实验室和全面疲劳测试以及失效后评估。通过在本JIP中进行的重大资格认证活动,已经取得了进展,将这些解决方案带入了项目就绪状态,以便在前端工程设计(FEED)阶段进行审议。这样的设计增强将能够增加在恶劣的工作条件,恶劣的环境以及高运动浮动系统下用于生产和出口立管应用的SCR设计的选择。

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