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首页> 外文期刊>Journal of Theoretical Biology >Lift vs. drag based mechanisms for vertical force production in the smallest flying insects
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Lift vs. drag based mechanisms for vertical force production in the smallest flying insects

机译:升降机与拖曳最小飞行昆虫的垂直力量生产机制

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We used computational fluid dynamics to determine whether lift- or drag-based mechanisms generate the most vertical force in the flight of the smallest insects. These insects fly at Re on the order of 4-60 where viscous effects are significant. Detailed quantitative data on the wing kinematics of the smallest insects is not available, and as a result both drag- and lift-based strategies have been suggested as the mechanisms by which these insects stay aloft. We used the immersed boundary method to solve the fully-coupled fluid-structure interaction problem of a flexible wing immersed in a two-dimensional viscous fluid to compare three idealized hovering kinematics: a drag-based stroke in the vertical plane, a lift-based stroke in the horizontal plane, and a hybrid stroke on a tilted plane. Our results suggest that at higher Re, a lift-based strategy produces more vertical force than a drag-based strategy. At the Re pertinent to small insect hovering, however, there is little difference in performance between the two strategies. A drag-based mechanism of flight could produce more vertical force than a lift-based mechanism for insects at Re < 5; however, we are unaware of active fliers at this scale. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们使用了计算流体动力学来确定升力或拖曳机制是否在最小昆虫的飞行中产生最垂直的力。这些昆虫在粘性效果显着的4-60左右飞行。关于最小昆虫的翼运动学的详细定量数据不可用,因此,基于牵引和升力的策略被建议被认为是这些昆虫高枕无章的机制。我们利用浸没的边界方法来解决熔体浸入二维粘性流体中的柔性翼的完全耦合的流体结构相互作用问题,比较三种理想化的悬停动力学:垂直平面中的拖曳行程,基于升力在水平平面中行程,在倾斜平面上进行混合行程。我们的结果表明,在较高的RE处,基于升力的策略产生比基于拖拉的策略更垂直的力量。然而,在与小昆虫徘徊的重新相关,两种策略之间的性能差异很小。基于拖曳的飞行机制可以产生比RE <5在RE <5的昆虫的基于升力机制更多的垂直力。但是,我们在这种规模上没有意识到活跃的传单。 (c)2015 Elsevier Ltd.保留所有权利。

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