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A Flapping Airflow Energy Harvester with Flexible Wing Sections

机译:带有柔性翼段的拍打气流能量收割机

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This paper reports a novel method to improve output power of a flapping airflow energy harvester by introducing flexible wing sections. The flapping airflow energy harvester consists of a cantilever beam structure with a wing at its free end. A bluff body is placed in front of the wing to induce aerodynamic instability that leads to up and down oscillation of the wing. By coupling transducers to the oscillating wing, electromagnetic in this case, electrical energy can be generated. In this research, instead of using a commonly used rigid wing, the proposed airflow energy harvester has flexible wing sections that are able to bend, thus reduce the aerodynamic resistance during the wing oscillation. Therefore, the overall mechanical damping can be reduced and output power of the proposed energy harvester is increased. It is found experimentally that the proposed method is able to improve energy harvester performance of flapping airflow energy harvesters under high airflow speeds.
机译:本文通过引入柔性翼段,报道了一种提高拍打气流能量收割机的输出功率的新方法。拍打气流能量收割机包括悬臂梁结构,其自由端具有机翼。虚张声体放置在机翼前面,以诱导空气动力学不稳定,导致机翼上下振荡。通过将换能器耦合到振荡翼,在这种情况下电磁,可以产生电能。在该研究中,代替使用常用的刚性翼,所提出的气流能量收割机具有能够弯曲的柔性翼片,从而降低机翼振荡期间的空气动力学电阻。因此,可以减少整体机械阻尼,并且增加了所提出的能量收割机的输出功率。实验地发现,所提出的方法能够在高气流速度下提高拍打气流能量收割机的能量收割机性能。

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