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Energy extraction characteristic of the flapping wing type vertical axis turbine

机译:扑翼式垂直轴汽轮机的能量提取特性

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摘要

Flapping wings are known to be used not only for propulsion, but also for energy extraction from the surrounding fluid environment. In this work, the authors propose a vertical axis turbine based on flapping wings. Numerical experiments have been conducted. Results show (i) In a certain range of frequency, the vertical axis turbine equipped with flapping wings of circular or reversed-D motion trajectory demonstrates better energy extraction performance when compared to the traditional vertical axis wind turbine. (ii) For the reversed-D motion trajectory, as two airfoils begin to move apart from each other, the downstream flapping-wing takes advantage of the trailing edge vortex of the upstream flapping-wing to enhance its own energy extraction ability. However, for the circular motion trajectory, the two airfoils are usually located far away from each other. This leads to the result that the mutual influence between the two airfoils is very weak. Generally speaking, the application of flapping wings in the vertical axis turbine can improve the energy extraction efficiency in a certain range, which can provide another method for the design of a new type of vertical axis turbine in the research and industry.
机译:已知拍打翅膀不仅用于推进,而且用于从周围的流体环境中提取的能量提取。在这项工作中,作者提出了一种基于拍打翅膀的垂直轴涡轮机。已经进行了数值实验。结果显示(i)在一定的频率范围内,配备有圆形或反向D运动轨迹的型翼翼的垂直轴涡轮机在与传统的垂直轴风力涡轮机相比时更好的能量提取性能。 (ii)对于反向D运动轨迹,由于两个翼型开始彼此分开地移动,下游翼翼利用上游侧翼翼的后缘漩涡来提高其自身的能量提取能力。然而,对于圆形运动轨迹,两个翼型通常位于彼此远离。这导致了两个翼型之间的相互影响非常弱。一般而言,在垂直轴涡轮机中的拍打翼的应用可以提高一定范围内的能量提取效率,这可以为研究和工业中的新型垂直轴涡轮机设计提供另一种方法。

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