昆虫飞行稳定性和扰动响应的生物力学。

IF 2.2 3区 生物学 Q1 ZOOLOGY Integrative and Comparative Biology Pub Date : 2024-09-17 DOI:10.1093/icb/icae076
Tyson L Hedrick, Emily Blandford, Haithem E Taha
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引用次数: 0

摘要

昆虫必须在充满阵风、涡流和其他瞬态空气动力现象的多变自然环境中飞行,这对飞行稳定性提出了挑战。此外,支持昆虫飞行的空气动力是由方向和构造随时间变化的快速摆动的翅膀产生的。相对于支撑身体重量的平均力,这些翅膀产生的瞬时飞行力很大。这些力的大小及其随时间变化的方向给飞行稳定性带来了另一个挑战,因为即使左右翅膀之间在时间或大小上存在比例上的微小不对称,也足以产生身体方向的巨大变化。然而,这些大振幅的振荡力也提供了一个机会,通过身体方向、对时间变化的惯性力和空气动力做出响应的身体振荡以及振荡机翼本身之间的非线性相互作用,实现意想不到的飞行稳定性。了解飞行昆虫的突发性稳定性是理解拍翼飞行进化要求和解码感觉反馈在飞行控制中的作用的关键一步。在此,我们简要回顾了昆虫的飞行稳定性,重点介绍了振翅带来的稳定性效应,并展示了一些初步的实验数据,以探究自由飞行昆虫飞行稳定性的某些方面。
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Biomechanics of Insect Flight Stability and Perturbation Response.

Insects must fly in highly variable natural environments filled with gusts, vortices, and other transient aerodynamic phenomena that challenge flight stability. Furthermore, the aerodynamic forces that support insect flight are produced from rapidly oscillating wings of time-varying orientation and configuration. The instantaneous flight forces produced by these wings are large relative to the average forces supporting body weight. The magnitude of these forces and their time-varying direction add another challenge to flight stability, because even proportionally small asymmetries in timing or magnitude between the left and right wings may be sufficient to produce large changes in body orientation. However, these same large-magnitude oscillating forces also offer an opportunity for unexpected flight stability through nonlinear interactions between body orientation, body oscillation in response to time-varying inertial and aerodynamic forces, and the oscillating wings themselves. Understanding the emergent stability properties of flying insects is a crucial step toward understanding the requirements for evolution of flapping flight and decoding the role of sensory feedback in flight control. Here, we provide a brief review of insect flight stability, with some emphasis on stability effects brought about by oscillating wings, and present some preliminary experimental data probing some aspects of flight stability in free-flying insects.

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来源期刊
CiteScore
4.70
自引率
7.70%
发文量
150
审稿时长
6-12 weeks
期刊介绍: Integrative and Comparative Biology ( ICB ), formerly American Zoologist , is one of the most highly respected and cited journals in the field of biology. The journal''s primary focus is to integrate the varying disciplines in this broad field, while maintaining the highest scientific quality. ICB''s peer-reviewed symposia provide first class syntheses of the top research in a field. ICB also publishes book reviews, reports, and special bulletins.
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