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Chirality-dependent flutter of Typha blades in wind

机译:香蒲叶片在风中的手征性扑动

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摘要

Cattail or Typha, an emergent aquatic macrophyte widely distributed in lakes and other shallow water areas, has slender blades with a chiral morphology. The wind-resilient Typha blades can produce distinct hydraulic resistance for ecosystem functions. However, their stem may rupture and dislodge in excessive wind drag. In this paper, we combine fluid dynamics simulations and experimental measurements to investigate the aeroelastic behavior of Typha blades in wind. It is found that the chirality-dependent flutter, including wind-induced rotation and torsion, is a crucial strategy for Typha blades to accommodate wind forces. Flow visualization demonstrates that the twisting morphology of blades provides advantages over the flat one in the context of two integrated functions: improving wind resistance and mitigating vortex-induced vibration. The unusual dynamic responses and superior mechanical properties of Typha blades are closely related to their biological/ecosystem functions and macro/micro structures. This work decodes the physical mechanisms of chirality-dependent flutter in Typha blades and holds potential applications in vortex-induced vibration suppression and the design of, e.g., bioinspired flight vehicles.
机译:香蒲或香蒲,一种广泛分布在湖泊和其他浅水地区的新兴水生植物,叶片细长,具有手性形态。防风的Typha叶片可为生态系统功能产生明显的水力阻力。但是,它们的茎可能在过度的风中破裂并脱落。在本文中,我们结合流体动力学模拟和实验测量来研究香蒲叶片在风中的气动弹性行为。发现手性相关的颤动,包括风引起的旋转和扭转,是香蒲叶片适应风力的关键策略。流动可视化表明,叶片的扭曲形态在两个集成功能的上下文中提供了优于扁平叶片的优势:提高抗风性和减轻涡流诱发的振动。香蒲叶片的异常动态响应和出色的机械性能与其生物学/生态系统功能以及宏观/微观结构密切相关。这项工作解释了香蒲叶片中手性依赖扑动的物理机理,并在涡流诱导的振动抑制和例如生物启发飞行器的设计中具有潜在的应用。

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