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Bending, twisting and flapping leaf upon raindrop impact

机译:雨滴撞击时弯曲,扭曲和拍打叶片

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Dynamics of drop impact on soft surfaces has drawn a lot of attention for its applications and is motivated by natural examples like raindrop impact on a leaf. Previous studies have focused on categorizing the bending motion observed, using cantilever beam theory, but the complex dynamic response shown by a leaf involving other degrees of motions like torsion about the petiole, remains yet to be understood. In this study, we demonstrated that the complex response of a superhydrophobic Katsura leaf upon raindrop impact can be decomposed into simple single degree-of-freedom linear modes of bending and torsion, modeled as damped harmonic oscillators. Our theoretical estimates were in good agreement with experimental measurements of the frequency and maximum amplitude of bending and torsional modes. We also illustrated the energy transfer from the raindrop to these modes as a function of the impact location, which may shed light on the design of potential raindrop energy harvesting devices mimicking a leaf's structure. Finally, we concluded with a brief description of an unresolved mode (i.e. flapping) and the limitations of our approach.
机译:柔软表面的落地撞击的动态对其应用引起了很多人的关注,并且由天然例子是雨滴对叶子的影响。以前的研究专注于使用悬臂梁理论对观察到的弯曲运动进行分类,但是涉及涉及关于叶柄的扭曲等其他运动程度的叶片所示的复杂动态响应仍未理解。在这项研究中,我们证明,超疏水康逊叶对雨滴撞击时的复杂反应可以分解成简单的单一自由度的弯曲和扭转程度,如阻尼谐波振荡器为模型。我们的理论估计与弯曲和扭转模式的频率和最大幅度的实验测量非常一致。我们还将从雨滴的能量转移到这些模式作为冲击位置的函数,这可能阐明了模仿叶结构的潜在雨滴能量收集装置的设计。最后,我们结束了一个未解决的模式(即拍打)和我们方法的局限性。

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