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The Geometry and Mechanics of Insect Wing Deformations in Flight: A Modelling Approach

机译:飞行中昆虫翼变形的几何和力学:一种建模方法

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The nature, occurrence, morphological basis and functions of insect wing deformation in flight are reviewed. The importance of relief in supporting the wing is stressed, and three types are recognized, namely corrugation, an M-shaped section and camber, all of which need to be overcome if wings are to bend usefully in the morphological upstroke. How this is achieved, and how bending, torsion and change in profile are mechanically interrelated, are explored by means of simple physical models which reflect situations that are visible in high speed photographs and films. The shapes of lines of transverse flexion are shown to reflect the timing and roles of bending, and their orientation is shown to determine the extent of the torsional component of the deformation process. Some configurations prove to allow two stable conditions, others to be monostable. The possibility of active remote control of wing rigidity by the thoracic musculature is considered, but the extent of this remains uncertain.
机译:综述了飞行中昆虫翼变形的性质,发生,形态基础和功能。强调救济在支撑机翼的重要性,并识别三种类型,即瓦楞,一个M形和弯曲,如果翅膀在形态学上注中弯曲,则所有这些都需要克服。通过简单的物理模型探索如何实现这一目标,以及轮廓的弯曲,扭转和变化如何机械相互关联,这些模型反映了高速照片和胶片中可见的情况。示出了横向屈曲线的形状来反映弯曲的定时和作用,并且示出了它们的取向来确定变形过程的扭转部件的程度。一些配置证明允许两个稳定的条件,其他稳定的条件是单一的。考虑了胸部肌肉组织主动远程控制翼刚度的可能性,但这仍然不确定。

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