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Morphology of Insect Wings and Airflow Produced by Flapping Insects

机译:拍打昆虫产生的昆虫翅膀的形态和气流

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摘要

This article describes the results of some experiments concerning wing morphology and flight performance of some flying insects: cicadas, dragonflies, and gadflies. First, the wing structures of these insects are measured down to the minutest detail by a three-dimensional curve-shaped measuring system. The surface shapes of the insect wings are mapped by distinct three-dimensional images. From the three-dimensional images, correlation coefficients are calculated by comparisons of the distribution of undulation on the wings. The surface shapes and the correlation coefficients show a difference in functions for flapping flight between each wing. Second, the distribution of velocity fields around a flapping cicada and a flapping dragonfly are visualized with a PIV system to identify the airflow generated by the wings. The distribution of velocity vectors for one stroke of a dragonfly wing is explained in the article. Additionally, the difference of airflow around the wings of a dragonfly and a cicada are revealed. It is found that the flapping forewing of the dragonfly carries out an important motion in its highly efficient flight.
机译:本文介绍了一些有关机翼形态和某些飞行昆虫的飞行性能的实验结果,这些昆虫包括蝉,蜻蜓和g。首先,通过三维曲线形测量系统对这些昆虫的翅膀结构进行最细微的测量。昆虫翅膀的表面形状由不同的三维图像映射。从三维图像中,通过比较机翼上波动的分布来计算相关系数。表面形状和相关系数显示出每个机翼之间拍打飞行的功能有所不同。其次,用PIV系统可视化拍打的蝉和拍打的蜻蜓周围的速度场分布,以识别机翼产生的气流。文章解释了蜻蜓翅膀一冲程的速度矢量分布。此外,还揭示了蜻蜓和蝉翼周围的气流差异。发现蜻蜓扑动的前翅在其高效飞行中起着重要的作用。

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