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Response of Suction Caissons in Clay under Monotonic and Cyclic Horizontal Loading

机译:单调和循环水平载荷下粘土中吸盘的反应

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Tidal energy converters (TECs) provide a means to extract energy from the horizontal flow of water resulting from the rise and fall of tides. It is critical that the behavior of all aspects of the TEC, including the foundation, be understood to optimize not only its reliability but also its cost efficiency. Unlike the majority of offshore energy structures that attempt to minimize the interaction with flowing water, a TEC is designed to interact with this flow through a rotating turbine. The rotating turbine blades, fluctuations in the tidal current speed and direction, wave loading, turbulence, and vibrations all result in a combined cyclic loading of the foundation or anchoring system. A suction caisson is a suitable foundation type to secure tidal current turbines to the seabed. In soft marine clays, the suction caisson provides an ideal foundation for TECs that can be installed without the need of equipment for pile driving or mobilizing gravity base foundation while allowing for the removal of the foundation, contributing to the overall "green" nature of the device. When configured in the monopod configuration the TEC will apply significant horizontal loading on the suction caisson. Therefore, the response of a suction caisson in the monopod configuration in soft clay with an aspect ratio of 1 is investigated under monotonic and cyclic horizontal loading.
机译:潮汐能转换器(TECS)提供从潮汐升高和下降产生的水平流动中提取能量的手段。重要的是,包括基础的TEC的所有方面的行为应理解为优化其可靠性,而且还可以优化其成本效率。与大多数近海能量结构不同,试图最小化与流动水的相互作用,设计用于通过旋转涡轮机与这种流相互作用。旋转涡轮叶片,潮汐电流速度和方向,波浪加载,湍流和振动的波动均导致基础或锚固系统的组合循环负载。吸取沉箱是一种合适的基础类型,可以将潮汐电流涡轮机固定到海底上。在柔软的船用粘土中,吸取沉箱为TECS提供了理想的基础,可以安装在没有桩驾驶或动员重力底座的设备的情况下安装,同时允许剥夺基础,为整体的“绿色”性质有助于设备。在MONOPOD配置中配置时,TEC将在抽吸沉箱上应用显着的水平负载。因此,在单调和循环水平载荷下研究了在单调和循环水平加载下进行纵横比在软粘土中的偏离粘土中的响应。

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