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A study on the Wave Response and Efficiency of a Pendulum Wave Energy Converter

机译:摆波能量转换器的波浪响应与效率研究

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With the increase in renewable energy expectations, wave-generated energy is being studied for its economic and environmental benefits. A pendulum wave energy converter induces incident waves in a water chamber and forms standing waves as the incident and reflected waves are superposed. A pendular plate is installed at the standing wave node and it drives an electric generator connected to the power system. In this study, two-dimensional model tests are conducted to evaluate the basic shape design and wave responses of a water chamber and pendulum system. The wave responses of the fixed model water chamber and the motions of a floating model are presented by varying wave periods and wave heights. An electric motor, acting as a load system of the generator with torque control, is connected to the pendulum shaft to assess the wave energy conversion efficiency. The effects of variations in load and incident wave conditions (period and height) are compared and analyzed from the viewpoint of wave energy conversion efficiency. These results suggest a more optimal design of a pendulum wave energy converter (WEC) with improved energy conversion efficiency.
机译:随着可再生能源期望的增加,正在研究其经济和环境效益的波浪产生的能源。摆波能量转换器在水室中引起入射波,并将驻波形成驻波,因为入射和反射波被叠加。摆件安装在常设波节点处,并驱动连接到电力系统的发电机。在该研究中,进行二维模型试验以评估水室和摆动系统的基本形状设计和波反应。通过不同的波段和波浪高度呈现固定模型水室的波响应和浮动模型的运动。用作具有扭矩控制的发电机的负载系统的电动机连接到摆轴以评估波能量转换效率。比较载荷和入射波条件(周期和高度)的变化的影响,并从波能量转换效率的观点进行比较和分析。这些结果表明,具有改善的能量转换效率的摆波能量转换器(WEC)更优化了设计。

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