Whisker-like geometries and their force reduction properties

H. Hans, J. Miao, G. Weymouth, M. Triantafyllou
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引用次数: 26

Abstract

This paper studies the effects of geometrical features on harbor seal whiskers on its force reduction ability. Each feature in the seal whisker is sequentially stripped from the original whisker shape. Four whisker-like geometries are created from such methodology. 3D simulations of flow around the structures are performed and the resulting forces on the structures are non-dimensionalized. The lift and drag coefficients of these structures are compared to the real whisker case. The undulations on minor and major axes are found to be necessary in reducing the lift forces. Existence of only one of the undulations fails to weaken the flow and break the vortex tubes and braids in the wake. The offset angle between leading edge and trailing edge are found to have slight effects on the lift and drag coefficients. The reduction in drag coefficient is found to be dependent on the existence of undulations in minor axis. The force responses of whisker-like geometries with undulations on one of their axes are found to be periodic. When the force response on whisker-like geometries with both undulations are found to be chaotic. Vortex shedding frequency of the structure is observed to decrease considerably when no offset angle is introduced into the geometry. This may result in longer lifespan of the structure.
晶须状几何形状及其减力特性
本文研究了海豹须的几何特征对其减力能力的影响。密封晶须中的每个特征都从原始晶须形状中依次剥离。用这种方法创造了四个须状几何形状。对结构周围的流动进行了三维模拟,结果表明结构上的作用力是无量纲化的。将这些结构的升力和阻力系数与实际晶须情况进行了比较。长、小轴上的波动是减小升力的必要条件。只有其中一个波动的存在不能减弱流动,也不能破坏尾迹中的涡管和辫状结构。发现前缘和尾缘之间的偏移角对升力和阻力系数的影响很小。发现阻力系数的减小依赖于小轴波动的存在。在其中一个轴上具有波动的须状几何结构的力响应被发现是周期性的。当发现具有两种波动的须状几何上的力响应是混沌的。当不引入偏置角时,结构的旋涡脱落频率显著降低。这样可以延长结构的使用寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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