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Study on capture power of the sealed-buoy wave energy converter in low energy flow density area

机译:低能量流密度区域中密封浮标波能量转换器的捕获功率研究

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摘要

In order to achieve the conversion of the wave energy into electrical energy in low energy flow density sea areas in this paper, the capture power of the sealed-buoy wave energy converter (SBWEC) was investigated by dynamics methods of rigid bodies based on the hydrology data of Shandong Peninsula. The effect of buoy diameter on the response amplitude operator (RAO) was studied using frequency domain analysis method. The effect of buoy diameter on the instantaneous capture power and the effect of mooring angle on the pitch time domain response were studied using time domain analysis method. Results show that the pitch RAO is increased by 10.5 times from 8 degrees/m to 93 degrees/m with the decrease in buoy diameter. The maximum pitch time domain response and capture power are obtained in the SBWEC with the diameter 15m, mooring angle 45 degrees and the slider mass 40 Kg. It is derived that the average capture power and wave energy conversion efficiency are 44.1 KW and 54.44% for the SBWEC in low energy flow density sea areas. Then, the relevant research results provide some reference for the design and utilization of wave energy converter in low energy flow density sea areas. (c) 2020 Elsevier Ltd. All rights reserved.
机译:为了在低能流密度海域实现波能向电能的转换,基于水文学的刚体动力学方法研究了密封浮标波能转换器的捕获功率。半岛数据使用频域分析方法研究了浮标直径对响应幅度算子(RAO)的影响。使用时域分析方法研究了浮标直径对瞬时捕获能力的影响以及系泊角对俯仰时域响应的影响。结果表明,随着浮标直径的减小,螺距RAO从8度/米增加到93度/米,增加了10.5倍。在直径为15m,系泊角为45度,滑块质量为40 Kg的SBWEC中,可以获得最大的俯仰时域响应和捕获能力。结果表明,SBWEC在低能流密度海域的平均捕获功率和波能转换效率分别为44.1 KW和54.44%。然后,相关研究成果可为低能流密度海域波浪能转换器的设计和利用提供参考。 (c)2020 Elsevier Ltd.保留所有权利。

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