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Numerical study of ball behavior in side-foot soccer kick based on impact dynamic theory.

机译:基于冲击动力学理论的侧脚足球踢球行为数值研究。

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This study examined the factors affecting the ball velocity and rotation for side-foot soccer kick using a numerical investigation. Five experienced male university soccer players performed side-foot kicks with various attack angles and impact points using a one-step approach. The kicking motions were captured three-dimensionally by two high-speed cameras at 2500 fps. The theoretical equations of the ball velocity and rotation were derived based on impact dynamic theory. Using the theoretical equations, the relationships of the ball velocity and rotation to the attack angle and impact point were obtained. The validity of the theoretical equations was verified by comparing the theoretical relationships with measurement values. Furthermore, simulations of the ball velocity and rotation were conducted using the theoretical equations. The theoretical relationships were in good agreement with the measurement values. The theoretical results confirmed the previously reported experimental results, and indicated that the impact point is more influential on the ball velocity than the attack angle and the attack angle is more influential on the ball rotation than the impact point. The simulation results indicated the following. The ball velocity produced by impact for all impact patterns is largely affected by the foot velocity immediately before impact but barely affected by the degree of slip between the foot and the ball. The ball rotation produced by an impact with a large attack angle is affected by the foot velocity immediately before impact and the degree of slip between the foot and the ball; however, these factors affect the ball rotation less than the attack angle.
机译:这项研究使用数值研究检查了影响侧脚足球踢的球速度和旋转的因素。五名经验丰富的大学男子足球运动员使用一步法以不同的攻击角度和冲击点进行了侧脚踢。两台高速摄像机以2500 fps的速度捕获了脚踢动作。基于冲击动力学理论推导了球的速度和旋转的理论方程。利用理论方程,得到了球的速度和旋转与攻角和冲击点之间的关系。通过将理论关系与测量值进行比较,验证了理论方程的有效性。此外,使用理论方程对球的速度和旋转进行了仿真。理论关系与测量值非常吻合。理论结果证实了先前报道的实验结果,并指出,撞击点对球速度的影响大于攻角,而撞击角对球旋转的影响则大于撞击点。仿真结果表明如下。对于所有撞击模式,撞击产生的球速很大程度上受撞击前的脚速度影响,而几乎不受脚与球之间的打滑程度的影响。具有大迎角的冲击产生的球旋转受冲击之前的脚速度和脚与球之间的打滑程度的影响。但是,这些因素对球旋转的影响小于迎角。

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