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A Study of Shuttlecock’s Trajectory in Badminton

机译:羽毛球Shu球运动轨迹研究

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摘要

The main purpose of this study was to construct and validate a motion equation for the flight of the badminton and to find the relationship between the air resistance force and a shuttlecock’s speed. This research method was based on motion laws of aerodynamics. It applied aerodynamic theories to construct motion equation of a shuttlecock’s flying trajectory under the effects of gravitational force and air resistance force. The result showed that the motion equation of a shuttlecock’s flight trajectory could be constructed by determining the terminal velocity. The predicted shuttlecock trajectory fitted the measured data fairly well. The results also revealed that the drag force was proportional to the square of a shuttlecock velocity. Furthermore, the angle and strength of a stroke could influence trajectory. Finally, this study suggested that we could use a scientific approach to measure a shuttlecock’s velocity objectively when testing the quality of shuttlecocks. And could be used to replace the traditional subjective method of the Badminton World Federation based on players’ striking shuttlecocks, as well as applying research findings to improve professional knowledge of badminton player training.Key points class="unordered" style="list-style-type:disc">The motion equation of a shuttlecock’s flying trajectory could be constructed by determining the terminal velocity in aerodynamics.Air drag force is proportional to the square of a shuttlecock velocity. Furthermore, the angle and strength of a stroke could influence trajectory.
机译:这项研究的主要目的是建立和验证羽毛球飞行的运动方程,并找出空气阻力与羽毛球速度之间的关系。该研究方法基于空气动力学的运动定律。它利用空气动力学理论在重力和空气阻力的作用下构造了a球飞行轨迹的运动方程。结果表明,可以通过确定终极速度来构建a球飞行轨迹的运动方程。预测的shuttle球轨迹很好地拟合了测量数据。结果还表明,阻力与羽毛球速度的平方成正比。此外,笔划的角度和强度可能会影响轨迹。最后,这项研究表明,在测试of的质量时,我们可以使用科学的方法客观地测量a的速度。并且可以用来代替传统的主观方法,即基于击球者打羽毛球的世界羽毛球联合会,以及应用研究结果来提高羽毛球运动员训练的专业知识。要点 class =“ unordered” style =“ list -style-type:disc“> <!-list-behavior =无序前缀-word = mark-type = disc max-label-size = 0-> 可以构造a球飞行轨迹的运动方程通过确定空气动力学中的最终速度。 空气阻力与羽毛球速度的平方成正比。此外,笔划的角度和强度可能会影响弹道。

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