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Influence of Buoy Size on Accelerated Wave Power Generation Device

机译:浮标大小对加速波发电装置的影响

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摘要

This paper proposed a pulley-buoy accelerated wave energy linear power generation system, and the feasibility and effectiveness of this system were verified through experimental research. Compared with the traditional wave energy power generation system with three-stage energy conversion links, the pulley-buoy accelerated wave energy linear power generation system omits the intermediate energy transfer and conversion link, and realizes the direct gain of electric energy from the buoy movement caused by wave, and by introducing the pulley combination, the movement speed of the buoy is enlarged, the power generation of the linear power generation system is increased, thereby the wave energy conversion efficiency of the system is improved. Under laboratory conditions, a small-size pulley-buoy accelerated wave energy linear power generation system prototype and a swing-plate wave-making system were built to explore the effects of different buoy sizes on the power generation performance of the system. The test results show that within the research scope of this paper, increasing the size of the buoy can effectively increase the wave energy conversion efficiency of the system and improve the power generation performance of the accelerated wave energy power generation system. The research results in this paper provide useful experience for the practical application and efficient operation of wave energy power generation systems.
机译:本文提出了一个滑轮,救生圈加速波浪能线性发电系统,而这个系统的可行性和有效性是通过实验研究证实。与三阶段的能量转换环节传统波浪能发电系统相比,该滑轮浮标加速波能量线性发电系统省略了中间能量传递和转换链路,并实现电能从引起浮标运动直接增益由波,并通过引入滑轮组合,所述浮标的移动速度变大,发电功率的线性发电系统的增加,从而该系统的波能量转换效率得到提高。在实验室条件下,小尺寸的滑轮浮标加速波浪能线性发电系统的原型和摆动板造波系统被建立,探讨对系统的发电性能不同浮标的大小的影响。测试结果表明,本文的研究范围内,增加浮标的大小,可以有效地提高系统的波浪能量转换效率,改善加速波浪能发电系统的发电性能。这一研究成果,本文提供了波浪能发电系统的实际应用和高效运行有益的经验。

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