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A Model and Experiment Study of an Improved Pendulor Wave Energy Converter

机译:一种改进的摆波能量转换器的模型与实验研究

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This paper proposes one improved design of pendulor wave energy converter (PWEC), which integrates a pendulor, two side-walls and a slope to concentrate wave power. The slope guides the incident wave upward, and the wave drives the pendulor to rotate upward. Different from previous pendulors, one end of present pendulor is hinged near the free water surface, and the other end swings upward and downward. The mechanical flapping energy is converted to hydraulic energy by the connected hydraulic pump, and then it is converted to electrical energy. The proposed design is verified by theoretical and model-experimental study. The energy conversion efficiency is estimated by a simple weight-lifting method. Experimental results show that the first level conversion efficiency is averaged at 35% under the condition of wave height 0.18m, wave period 1.11s and pendulor length 0.6m. In short, this system has various advantages including simple, compact, modularized, light-weight and low-cost structure, which can be generally installed on ocean shore, near-shore piles and offshore platform, especially for China sea conditions.
机译:本文提出了一个改进的摆波能量转换器(PWEC)的改进设计,其整合了摆锤,两个侧壁和斜面以集中到集中波功率。斜坡向上引导入射波,波浪驱动摆件向上旋转。与先前的摆锤不同,当前摆锤的一端铰接在自由水面附近,另一端向上和向下摇摆。通过连接的液压泵将机械拍摄能量转换为液压能量,然后将其转换为电能。通过理论和模型实验研究验证了所提出的设计。通过简单的举重方法估计能量转换效率。实验结果表明,第一水平转化效率在波高0.18m,波浪周期1.11s和摆锤长度0.6m的条件下平均为35%。简而言之,该系统具有各种优点,包括简单,紧凑,模块化,轻量级和低成本结构,可在海岸,近岸桩和海上平台上安装,特别是中国海洋状况。

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