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首页> 外文期刊>The Journal of Experimental Biology >The role of drag in insect hovering
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The role of drag in insect hovering

机译:阻力在昆虫盘旋中的作用

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Studies of insect flight have focused on aerodynamic lift, both in quasi-steady and unsteady regimes. This is partly influenced by the choice of hovering motions along a horizontal stroke plane, where aerodynamic drag makes no contribution to the vertical force. In contrast, some of the best hoverers - dragonflies and hoverflies - employ inclined stroke planes, where the drag in the down- and upstrokes does not cancel each other. Here, computation of an idealized dragonfly wing motion shows that a dragonfly uses drag to support about three quarters of its weight. This can explain an anomalous factor of four in previous estimates of dragonfly lift coefficients, where drag was assumed to be small. To investigate force generation and energy cost of hovering flight using different combination of lift and drag, I study a family of wing motion parameterized by the inclined angle of the stroke plane. The lift-to-drag ratio is no longer a measure of efficiency, except in the case of horizontal stroke plane. In addition, because the flow is highly stalled, lift and drag are of comparable magnitude, and the aerodynamic efficiency is roughly the same up to an inclined angle about 60 degrees , which curiously agrees with the angle observed in dragonfly flight. Finally, the lessons from this special family of wing motion suggests a strategy for improving efficiency of normal hovering, and a unifying view of different wing motions employed by insects.
机译:昆虫飞行的研究集中在准稳态和非稳态状态下的气动升力。这部分受到沿水平冲程平面的悬停运动的选择的影响,其中气动阻力对垂直力没有贡献。相比之下,一些最佳的盘旋者-蜻蜓和盘旋蝇-采用倾斜的笔划平面,其中上下笔划中的阻力不会互相抵消。在这里,对理想化的蜻蜓翅膀运动的计算表明,蜻蜓利用阻力来支撑其重量的四分之三。这可以解释以前的蜻蜓升力系数估计中的四个异常因子,其中假定阻力很小。为了研究使用升力和阻力的不同组合而产生的悬停飞行的力和能量成本,我研究了由行程平面的倾斜角参数化的机翼运动族。除水平行程平面外,升阻比不再是效率的度量。此外,由于气流高度失速,升力和阻力的大小相当,直到大约60度的倾斜角,空气动力效率大致相同,这与蜻蜓飞行中观察到的角度很好地吻合。最后,从这种特殊的机翼运动系列中吸取的教训提出了提高正常悬停效率的策略,并统一了昆虫采用的不同机翼运动的观点。

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