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Design of an Optimized Composite Repair System for Offshore Risers Using Integrated Analysis and Testing Techniques

机译:集成分析与测试技术的海上立管综合修理系统优化设计

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Composite systems are a generally-accepted method for repairing corroded and mechanically-damaged onshore pipelines. The pipeline industry has arrived at this point after more than 15 years of research and investigation. Because the primary method of loading for onshore pipelines is in the circumferential direction due to internal pressure, most composite systems have been designed and developed to provide hoop strength reinforcement. On the other hand, offshore pipes (especially risers), unlike onshore pipelines, can experience significant tension and bending loads. As a result, there is a need to evaluate the current state of the art in terms of assessing the use of composite materials in repairing offshore pipelines and risers.rnThe paper presents findings conducted as part of a joint industry effort involving the Minerals Management Service, the Offshore Technology Research Center at Texas A&M University, Stress Engineering Services, Inc., and four composite repair manufacturers to evaluate the state of the art using full-scale testing methods. Loads typical for offshore risers were used in the test program that integrated internal pressure, tension, and bending loads. This program is the first of its kind and likely to contribute significantly to the future of offshore riser repairs. The end result of this study was the development of a carbon-fiber repair system that can be easily deployed to provide significant reinforcement for repairing risers. It is anticipated that the findings of this program will foster future investigations involving operators by integrating their insights regarding the need for composite repair based on emerging technology.
机译:复合系统是修复腐蚀和机械损坏的陆上管道的普遍接受的方法。经过15年以上的研究和调查,管道行业已到达这一点。由于陆上管道的主要加载方法是由于内部压力而沿周向方向,因此大多数复合材料系统的设计和开发都是为了增强环向强度。另一方面,与陆上管道不同,海上管道(特别是立管)会承受很大的拉力和弯曲载荷。因此,有必要就评估复合材料在修复海上管道和立管中的使用情况进行评估,以评估当前的技术水平。rn本文介绍了作为矿产管理处联合行业共同努力的一部分而得出的发现,美国德克萨斯州A&M大学海洋技术研究中心,应力工程服务公司以及四家复合材料维修制造商使用全面的测试方法评估了最新技术水平。测试程序中使用了海上立管的典型载荷,该载荷综合了内部压力,拉力和弯曲载荷。该计划是同类项目中的第一个,可能会为海上立管维修的未来做出重大贡献。这项研究的最终结果是开发了一种碳纤维修复系统,该系统可以轻松部署,为修复立管提供重要的加固。可以预期,该计划的结果将通过整合他们对基于新兴技术的复合材料维修需求的见解,促进未来涉及操作员的调查。

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