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首页> 外文期刊>Journal of the Royal Society Interface >Deformable wing kinematics in the desert locust: how and why do camber, twist and topography vary through the stroke?
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Deformable wing kinematics in the desert locust: how and why do camber, twist and topography vary through the stroke?

机译:沙漠蝗虫中的可变形机翼运动学:中风,扭曲和地形在整个行程中如何以及为何发生变化?

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摘要

Here, we present a detailed analysis of the wing kinematics and wing deformations of desert locusts (Schistocerca gregaria, Forskal) flying tethered in a wind tunnel. We filmed them using four high-speed digital video cameras, and used photogrammetry to reconstruct the motion of more than 100 identified points. Whereas the hindwing motions were highly stereotyped, the forewing motions showed considerable variation, consistent with a role in flight control. Both wings were positively cambered on the downstroke. The hindwing was cambered through an 'umbrella effect' whereby the trailing edge tension compressed the radial veins during the downstroke. Hindwing camber was reversed on the upstroke as the wing fan corrugated, reducing the projected area by 30 per cent, and releasing the tension in the trailing edge. Both the wings were strongly twisted from the root to the tip. The linear decrease in incidence along the hindwing on the downstroke precisely counteracts the linear increase in the angle of attack that would otherwise occur in root napping for an untwisted wing. The consequent near-constant angle of attack is reminiscent of the optimum for a propeller of constant aerofoil section, wherein a linear twist distribution allows each section to operate at the unique angle of attack maximizing the lift to drag ratio. This implies tuning of the structural, morphological and kinematic parameters of the hindwing for efficient aerodynamic force production.
机译:在这里,我们对风洞中束缚的沙漠蝗虫(Schistocerca gregaria,Forskal)的机翼运动学和机翼变形进行了详细分析。我们使用四个高速数码摄像机对它们进行了拍摄,并使用摄影测量法来重建100多个已识别点的运动。后肢的动作高度定型,而前肢的动作则表现出很大的变化,这与飞行控制中的作用一致。机翼在下冲程时呈积极的弧度。后翼通过“伞效应”弯曲,从而在下降行程中后缘张力压缩了vein静脉。机翼风扇呈波纹状时,后翼在上冲程时倒转,将投影面积减小了30%,并释放了后缘的张力。两个翅膀都从根部到尖端强烈扭曲。沿向下冲程的后翼入射的线性减小恰好抵消了迎角的线性增大,否则迎角的线性增大会在未扭转机翼的根部拉毛中发生。因此,接近恒定的迎角使人联想到恒定翼型截面的螺旋桨的最佳状态,其中线性扭曲分布使每个截面都能以独特的迎角运行,从而最大程度地提高升阻比。这意味着调整后翼的结构,形态和运动学参数,以产生有效的空气动力。

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