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Advanced concept design and numerical study of suction bucket foundation in deep ocean

机译:深海吸水桶基础先进概念设计与数值研究

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The commonly used bucket foundation for the tension leg platforms (TLPs) depends on pumping to generate negative pressure. The capacity of pump limits application of the bucket foundations to water depth around 350 m. To make TLPs applicable in deepwater field, an advanced design named integrated suction foundation for TLPs is proposed in this paper. The most important improvement is the design of a pressure-resistant storage module, which utilizes the high hydrostatic pressure in deep ocean to drive water into the module to generate negative pressure for suction, not to utilize pump to drive water. Another breakthrough in the design is that all buckets are connected using trusses to form an integrated foundation. Due to the integrity it is feasible for the bucket foundations penetrating together into soil so the installation time and cost can be reduced significantly. Finite element analysis (FEA) was performed for the integrated suction foundation with environmental data based on South China Sea. The analysis results show that the integrated suction foundation is applicable well to water depth of 1000 m. In all, the newly designed integrated suction foundation will be of a great benefit to the applications of TLPs in deep ocean.
机译:张力腿平台(TLP)常用的铲斗基础取决于抽水以产生负压。泵的容量限制了桶形基础在水深约350 m时的应用。为了使TLP适用于深水领域,本文提出了一种先进的设计,即TLP集成吸力基础。最重要的改进是耐压存储模块的设计,该模块利用深海中的高静水压力将水驱动到模块中以产生负压以进行抽吸,而不是利用泵驱动水。设计的另一个突破是,所有的铲斗都使用桁架连接在一起,从而形成一个集成的基础。由于整体性,桶形基础可以一起渗透到土壤中,因此可以大大减少安装时间和成本。基于南中国海,结合环境数据对集成吸力基础进行了有限元分析(FEA)。分析结果表明,集成吸力基础适用于1000 m水深。总而言之,新设计的集成式吸力基础将对TLP在深海中的应用大有裨益。

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