Experimental Investigation on the Hydrodynamic Performance of A Wave Energy Converter

被引:0
|
作者
ZHENG Xiong-bo [1 ]
MA Yong [2 ]
ZHANG Liang [2 ]
JIANG Jin [3 ]
LIU Heng-xu [2 ]
机构
[1] School of Science, Harbin Engineering University
[2] Institute of Ocean Renewable Energy System, Harbin Engineering University
[3] College of Mechanical and Electrical Engineering, Jinling Institute of Technology
基金
中国国家自然科学基金;
关键词
wave energy; energy conversion experiment; hydrodynamic; floating body;
D O I
暂无
中图分类号
P743 [海洋动力资源开发];
学科分类号
摘要
Wave energy is an important type of marine renewable energy. A wave energy converter(WEC) moored with two floating bodies was developed in the present study. To analyze the dynamic performance of the WEC, an experimental device was designed and tested in a tank. The experiment focused on the factors which impact the motion and energy conversion performance of the WEC. Dynamic performance was evaluated by the relative displacements and velocities of the oscillator and carrier which served as the floating bodies of WEC. Four factors were tested, i.e. wave height, wave period, power take-off(PTO) damping, and mass ratio(RM) of the oscillator and carrier. Experimental results show that these factors greatly affect the energy conversion performance, especially when the wave period matches RM and PTO damping. According to the results, we conclude that:(a) the maximization of the relative displacements and velocities leads to the maximization of the energy conversion efficiency;(b) the larger the wave height, the higher the energy conversion efficiency will be;(c) the relationships of energy conversion efficiency with wave period, PTO damping, and RM are nonlinear, but the maximum efficiency is obtained when these three factors are optimally matched. Experimental results demonstrated that the energy conversion efficiency reached the peak at 28.62% when the wave height was 120 mm, wave period was 1.0 s, RM was 0.21, and the PTO damping was corresponding to the resistance of 100 Ω.
引用
收藏
页码:370 / 377
页数:8
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