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A boundary element model for a partially piston-type porous wave energy converter in gravity waves

机译:部分活塞式多孔波能量转换器在重力波中的边界元模型

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The present paper applies the multi-domain boundary element method (BEM) to investigate the performance of a partially piston-type porous wave energy converter (WEC), which consists of a solid wall, a vertical porous plate, a transmission bar, a rigid block constrained by rollers, a spring, and a damper. This WEC is subjected to a dynamic loading external source from a wave attack. For this wave-body interaction problem, a single-degree-of-freedom (SDOF) system is developed to describe the response of the present WEC. Linear wave theory governs the entire fluid domain, which is divided into three regions by a pseudo boundary and the vertical porous plate. Darcy's law applies to the porous plate. Examples are shown to illustrate the wave reflection from the WEC, the response to wave loading, and the instantaneous mechanical power from the wave.
机译:本文应用多域边界元方法(BEM)来研究部分活塞式多孔波能量转换器(WEC)的性能,该转换器由实心壁,垂直多孔板,传输杆,刚性由滚子,弹簧和减震器约束的滑块。该WEC受到来自波浪攻击的动态加载外部源的影响。针对此波体相互作用问题,开发了一种单自由度(SDOF)系统来描述当前WEC的响应。线性波理论控制着整个流体域,通过伪边界和垂直多孔板将其分为三个区域。达西定律适用于多孔板。示例显示了来自WEC的波反射,对波负载的响应以及来自波的瞬时机械功率。

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