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Adjusting a Momentum-Based Golf Clubhead-Ball Impact Model to Improve Accuracy

机译:调整基于动力的高尔夫球杆头球冲击模型,以提高准确性

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In this paper, two simple and physically meaningful adjustments were made to a momentum-based clubhead-ball impact model to predict golf ball launch conditions with better accuracy. These adjustments were motivated by two shortcomings of the momentum-based impact model, namely the absence of shaft effects and golf ball deformation. Kinematic data from a golf impact motion capture experiment was used to empirically determine the parameter adjustments that minimized the ball speed and spin errors. It was found that the original model’s ball speed deficiency could be corrected by adding less than 3 g to the clubhead mass, and the amount of added mass correlated with the mass of the shaft. Additionally, the original model’s backspin and sidespin errors were significantly reduced by making a slight adjustment to the golf ball’s center of mass position relative to the impact location. Specifically, moving the golf ball center of mass approximately 0.5 mm downward and 0.07 mm towards the heel reduced the mean backspin and sidespin errors by approximately 85% each.
机译:在本文中,对一个基于动力的俱乐部冲击模型进行了两种简单而物理上有意义的调整,以预测高尔夫球发射条件,更精确。这些调整受到势头的影响模型的两个缺点,即没有轴效应和高尔夫球变形的缺点。来自高尔夫影响运动捕获实验的运动数据用于经验确定最小化球速和旋转误差的参数调整。结果发现,原始模型和rsquo; S球速度缺乏可以通过向杆头头质量添加小于3g来校正,以及与轴质量相关的添加质量的量。此外,原始模型和rsquo; S backspin和SideSping误差通过对高尔夫球和rsquo的略微调整而显着降低了相对于冲击位置的质量位置。具体地,将高尔夫球的质量向下移动,向下朝向脚后跟0.07mm,减小平均背霉和SIDESPIN误差约为约85%。

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