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Hydrodynamic analysis of a modular multi-purpose floating structure system with different outermost connector types

机译:具有最外面连接器类型的模块化多功能浮动结构系统的流体动力学分析

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The present work investigates the effect of different outermost connector types on the hydrodynamic responses of a modular multi-purpose floating structure (MMFS) system. The MMFS system is preliminarily designed for a mild sea zone, which is composed of a number of standardized floating modules. In this study, the MMFS system has been simplified as a seven-module connected system. Considering the structural deformation of the MMFS system mainly occurs in the connectors among adjacent modules, each module is viewed as a rigid body. Both the hydrodynamic interaction effect and mechanical coupling effect among modules have been taken into consideration in the time-domain analysis. Different outermost connector designs have been proposed and investigated for the MMFS system. The results indicate that the hydrodynamic responses of the MMFS system are sensitive to the effects of the connector types, the wave phase, and the wavelength. The hinge-type design of the outermost connector can significantly reduce the extreme responses of both the bending moment and the shear force of the connectors. The additional PTO damper design for the outermost hinge-type connector can effectively reduce the motion of the outermost module, and also produce considerable wave energy.
机译:本工作调查了不同的最外面的连接器类型对模块化多用途浮动结构(MMFS)系统的流体动力响应的影响。 MMFS系统是针对温和海域而预先设计的,该海域由许多标准化的浮动模块组成。在这项研究中,MMFS系统已简化为七模块连接系统。考虑到MMFS系统的结构变形主要发生在相邻模块之间的连接器中,每个模块被视为一个刚体。在时域分析中已经考虑了模块之间的流体动力相互作用效应和机械耦合效应。对于MMFS系统,已经提出并研究了不同的最外层连接器设计。结果表明,MMFS系统的水动力响应对连接器类型,波相位和波长的影响敏感。最外面的连接器的铰链型设计可以显着降低连接器的弯矩和剪切力的极限响应。最外层铰链型连接器的附加PTO阻尼器设计可以有效地减少最外层模块的运动,并产生可观的波能。

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