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水力发电学报 ›› 2023, Vol. 42 ›› Issue (12): 79-86.doi: 10.11660/slfdxb.20231208

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运动参数对扑翼能量收集性能的影响

  

  • 出版日期:2023-12-25 发布日期:2023-12-25

Effects of motion parameters on energy harvesting performance of flapping foils

  • Online:2023-12-25 Published:2023-12-25

摘要: 基于浸入边界法,本文研究了俯仰运动和升降运动的相位差φp及非简谐俯仰运动参数β对扑翼能量收集性能的影响。研究了不同俯仰运动转角幅值θ0下相位差对能量收集性能的影响,当θ0 = 30°时,有效攻角和升降诱导角的变化规律一致,此时扑翼无法收集到流动能。随着θ0的增加,扑翼的能量收集性能逐步得到改善,当θ0 = 76.3°时,得到的最佳相位差φp = 247.5°,净输出功率系数和能量收集效率分别达到0.8954和40.16%。与现有研究得到的最高效率(35%)相比效率值提高了5.16%。研究了θ0 = 76.3°和φp = 247.5°时非简谐俯仰运动对能量收集性能的影响,研究结果表明,非简谐俯仰运动可以进一步提高扑翼系统的能量收集效率,当β = 1.85时,净输出功率系数最大达到1.09。当β = 1.15时,能量收集效率最高达到45.58%,相对于简谐俯仰运动下效率提高了5.42%,此时的净输出功率系数为1.05。

关键词: 浸入边界法, 扑翼, 相位差, 非简谐俯仰运动, 能量收集性能

Abstract: Based on the immersed boundary method, this study examines the energy harvesting performance of a flapping foil under the effects of the phase difference φp between its pitching motion and heaving motion as well as the parameter β of its nonharmonic pitching motion. Firstly, the effects of phase difference under different pitching amplitudes θ0 on energy harvesting performance are studied. We find that at θ0 = 30°, the foil cannot collect flow energy because its effective attack angle and heaving induced angle have the same trend of variations. As θ0 increases, the foil’s energy collection performance is gradually improved. At θ0 = 76.3°, the optimal phase difference of 247.5° is obtained, and the foil achieves a pure power output of 0.895 W/kW and an energy collection efficiency of 40.2%, which is 5.2% higher than the highest efficiency (35.0%) in previous studies. Then, we examine the effect of non-harmonic pitching motion on the energy harvesting performance at θ0 = 76.3° and φp = 247.5°. The results show that this motion can further improve energy collection efficiency; at β = 1.85, the maximum pure power output coefficient reaches 1.09. And at β = 1.15, the maximum energy harvesting efficiency reaches 45.6%, or an increase of 5.4% compared with the harmonic pitching motion; the pure power output coefficient is 1.05.

Key words: immersed boundary method, flapping foil, phase difference, non-harmonic pitching motion, energy harvesting performance

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