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Experimental studies were conducted on a trapezoidal pendulum wave energy converter in regular waves. To obtain the incident wave height, the analytical method (AM) was used to separate the incident and reflected waves propagating in a wave flume by analysing wave records measured at two locations. The response amplitude operator (RAO), primary conversion efficiency and the total conversion efficiency of the wave energy converter were studied; furthermore, the power take-off damping coefficients corresponding to the load resistances in the experiment were also obtained. The findings demonstrate that the natural period for a pendulum wave energy converter is relatively large. A lower load resistance gives rise to a larger damping coefficient. The model shows relatively higher wave energy conversion efficiency in the range of 1.0?1.2 s for the incident wave period. The maximum primary conversion efficiency achieved was 55.5%, and the maximum overall conversion efficiency was 39.4%.  相似文献   
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对一种海底铰接摆式波浪能转换装置进行了模型建立及控制优化。分析了装置的水动力特性,考虑黏性阻尼,研究了压载和负载阻尼的控制对装置的波能转换功率和效率的影响。指出对海底铰接摆式波能转换装置而言,由于多数周期附加转动惯量较装置本身的转动惯量大很多,因此压载控制对波能转换功率和效率的影响较小,而负载阻尼的控制则表现出较好的效果和可行性。  相似文献   
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