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Badminton shuttlecock aerodynamics: synthesizing experiment and theory

机译:羽毛球shuttle的空气动力学:综合实验与理论

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摘要

In this study, the flight performance of four models of shuttlecocks, two with feather skirts and two with plastic, is investigated. The aerodynamic forces of each shuttlecock at varying air speed and angle of attack are measured in a subsonic wind tunnel. Empirical correlations derived from these data are then incorporated into an adaptive, shuttlecock-specific numerical trajectory simulation. These simulated trajectories are in good agreement with experimental results, with average and maximum errors of 2.5 and 9.1% in vertical distance travelled. The aerodynamically adaptive trajectory model is used to analyse four common types of badminton shot: serve, net, smash and high clear. From these simulations, it is found that the trajectory paths of the higher quality plastic shuttlecock most closely mimic those of the feather shuttlecock of same speed grade. Results of both aerodynamic testing and trajectory simulation provide quantitative support for players’ preference for the ‘feel’ and responsiveness of feather shuttlecocks. It is also observed that plastic shuttlecocks fly faster than do feather shuttlecocks under smash shots, a behaviour explained by a reduction of drag due to skirt deformation observed in wind tunnel experiments at high flight velocity. The results of the study highlight the influence of shuttlecock design and material on shuttlecock flight.
机译:在这项研究中,研究了四种羽毛球模型的飞行性能,两种羽毛球裙和两种塑料球。在亚音速风洞中测量每个羽毛球在变化的空气速度和迎角下的空气动力。然后,将从这些数据得出的经验相关性并入到羽毛球特定的自适应数值轨迹模拟中。这些模拟轨迹与实验结果非常吻合,垂直距离的平均误差和最大误差分别为2.5和9.1%。空气动力学自适应的轨迹模型用于分析四种常见的羽毛球击球类型:发球,发网,击球和高清晰度。从这些模拟中发现,更高质量的塑料shuttle球的轨迹路径最接近于相同速度等级的羽毛shuttle球的轨迹路径。空气动力学测试和轨迹模拟的结果为运动员对羽毛shuttle的“感觉”和响应能力的偏好提供了定量支持。还可以观察到,在羽毛球击打时,塑料羽毛球的飞行速度比羽毛羽毛球的飞行速度快,这是由于风洞实验中以高飞行速度观察到的裙缘变形所引起的阻力减小所致。研究结果突出了of的设计和材料对shuttle飞行的影响。

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