Power production from wave-induced oscillations of a submerged plate

IF 1.1 Q3 ENGINEERING, CIVIL
Yongbo Chen, Masoud Hayatdavoodi, Binbin Zhao, R. Cengiz Ertekin
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引用次数: 0

Abstract

This paper investigates power production from a submerged wave energy device in shallow water. The energy device consists of a fully submerged, horizontal plate, which is restricted to vertical motions only. The plate undergoes vertical oscillations due to the wave-induced loads. Oscillations of the submerged plate are converted into electricity by use of a direct-drive power take-off (PTO) system. The plate oscillations are controlled by use of a spring and the damping effect of the PTO. Interaction of non-linear shallow-water waves with the submerged plate is studied by coupling the Green–Naghdi equations for the fluid motion with the equation of the vertical motion of the horizontal plate. Particular attention is given to the power production from the oscillations of the plate through the direct-drive PTO system, and its impact on the overall performance of the device under various wave conditions. Optimised configuration of the PTO for a given wave–plate condition is achieved by performing a parametric study over a range of involved variables. It is found that the proposed wave energy device with a direct-drive PTO has very good energy production efficiency and that it is a suitable concept for power production from the ocean waves.
水下板块由波浪引起的振荡所产生的能量
本文研究了浅水潜波能装置的发电问题。能量装置由一个完全浸没的水平板组成,该板仅受垂直运动的限制。由于波浪荷载的作用,板体会产生垂直振动。通过使用直接驱动动力起飞(PTO)系统,水下板的振荡被转换成电能。利用弹簧和PTO的阻尼效应控制板的振荡。通过将流体运动的Green-Naghdi方程与水平板的垂直运动方程耦合,研究了非线性浅水波浪与淹没板的相互作用。特别关注的是通过直接驱动PTO系统从板的振荡产生的功率,以及它在各种波条件下对设备整体性能的影响。在给定波片条件下,PTO的优化配置是通过对一系列相关变量进行参数化研究来实现的。结果表明,采用直接驱动PTO的波浪能装置具有很好的产能效率,是一种适合海浪发电的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
8
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