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Experimental and Theoretical Study on Energy Harvesting Performance of Galloping-Based Energy Harvester Using Rotationally Oscillating Blade

机译:旋转振动叶片驰骋型能源收割机能量采伐性能的实验与理论研究

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The Hydro-VENUS is an energy harvester exploiting the flow-induced oscillation of a pendulumlike blade. In this study, the effects of the angular amplitude and non-dimensional flow velocity on the energy harvesting performance of the Hydro-VENUS are investigated through water channel tests. A semi-elliptical cross-section blade with the cross-sectional aspect ratio of 6 is employed in these tests. The experimental results revealed that the maximum power coefficient is obtained at specific angular amplitude and non-dimensional flow velocity. The approximate solution for the power coefficient is theoretically provided considering non-linearity of hydrodynamic forces acting on the blade. This theoretical approach revealed that the power coefficient is determined by tip speed ratio of the blade and the maximum power coefficient is obtained at specific tip speed ratio.
机译:水力 - 金星是一种能量收敛,利用流动诱导的摆锤式叶片的振荡。 在该研究中,通过水道试验研究了角振幅和非尺寸流速对水电维护能量收集性能的影响。 在这些试验中采用具有横截面纵横比的半椭圆形横截面叶片。 实验结果表明,在比角幅度和非尺寸流速下获得最大功率系数。 理论上,考虑作用在叶片上的流体动力的非线性,理论上提供了电力系数的近似解。 该理论方法揭示了功率系数通过刀片的尖端速度比确定,并且在特定的尖端速比下获得最大功率系数。

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