Department of Intelligent Mechanical Engineering, Fukuoka Institute of Technology, 3-30-1, Wajiro-higashi, Higashi-ku, Fukuoka, 811-0295, Japan.
Sci Rep. 2013;3:1871. doi: 10.1038/srep01871.
The strange three-dimensional flight behaviour of slowly spinning soccer balls is one of the most interesting and unknown phenomenon associated with the trajectories of sports balls. Many spectators have experienced numerous exciting and emotional instances while observing the curious flight behaviour of these balls. We examine the aerodynamic mechanisms of erratic ball behaviours through real flight observations, unsteady force measurements and flow pattern visualisations. The strange behaviour is elucidated by the relationship between the unsteady forces on the ball and the wake flow. The irregular changes in position for twin longitudinal vortices have already been discovered in the supercritical Reynolds number region of a sphere with a smooth surface. This finding is applicable to the strange behaviour of the flight of soccer balls with this supercritical flow. The players, spectators, and television viewers will gain greater insight into the effects of soccer ball flights.
足球缓慢旋转时呈现出的奇异三维飞行行为是与球类运动轨迹相关的最有趣和最未知的现象之一。许多观众在观察这些球的奇特飞行行为时,都经历过无数令人兴奋和激动的时刻。我们通过真实的飞行观测、非定常力测量和流场可视化来研究不稳定球行为的空气动力学机制。通过球上的非定常力与尾流之间的关系,揭示了这种奇异行为的原因。已经在球体光滑表面的超临界雷诺数区域中发现了双纵向涡的位置不规则变化。这一发现适用于具有超临界流的足球奇异飞行行为。球员、观众和电视观众将对足球飞行的影响有更深入的了解。