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ENERGY EXTRACTION OF PONTOON-TYPE WAVE ENERGY CONVERTER

机译:浮子式波能转换器的能量提取

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Presented herein is the performance of a pontoon-type wave energy converter (WEC) similar to that of the 'Floater Blanket' WEC, which consists of a grid of interconnected floating elements. The current WEC design takes into account the elastic deformation of the structure under wave action and investigates its efficiency in generating wave energy as compared to its counterparts that achieve this via rigid body motions. The power take off (PTO) systems are installed at the seabed and attached to the WEC to generate energy via the vertical motions of the WEC's structural modules. Three types of pontoon-type WEC designs are investigated, i.e. with hinges, with a reduced number of hinges and without hinges. In addition, the influence of the flexibility of the structural modules towards the energy generation is also investigated in order to assess its performance when behaving like an elastic material. The pontoon-type WEC's structural modules with fewer or without hinge connections are preferable due to their ease in installation, while allowing for flexible deformation in the structural design would yield savings in material cost.
机译:本文介绍的是浮筒型波能转换器(WEC)的性能,类似于“浮毯” WEC的性能,它由相互连接的浮动元件组成的网格组成。当前的WEC设计考虑了波浪作用下结构的弹性变形,并与通过刚体运动实现波浪能的效率相比,研究了其在产生波浪能方面的效率。取力器(PTO)系统安装在海底并连接到WEC,以通过WEC的结构模块的垂直运动产生能量。研究了三种类型的浮船式WEC设计,即带铰链,铰链数量减少和不带铰链的WEC设计。此外,还研究了结构模块的柔韧性对能量产生的影响,以评估其在表现为弹性材料时的性能。浮筒型WEC的结构模块具有较少的铰链连接或不具有铰链连接是优选的,因为它们易于安装,同时允许结构设计中的柔性变形将节省材料成本。

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