Department of Human Kinetics, St. Francis Xavier University, Antigonish, NS, Canada.
Sports Biomech. 2012 Jun;11(2):149-64. doi: 10.1080/14763141.2011.638388.
Previous research indicates that the motion of the golf club is not planar and that the plane traced out by the club is different than that of the golfer's hands. The aim of the present study was to investigate how the position of the club, relative to the golfer's swing plane, influences the motion of the club by using a four-segment (torso, upper arm, forearm, and club), three-dimensional forward dynamics model. A genetic algorithm optimized the coordination of the model's four muscular torque generators to produce the best golf swings possible under six different conditions. The series of simulations were designed to demonstrate the effect of positioning the club above, and below, the golfer's swing plane as well as the effect of changing the steepness of the golfer's swing plane. The simulation results suggest that positioning the club below the golfer's swing plane, early in the downswing, will facilitate the squaring of the clubface for impact, while positioning the club above the plane will have the opposite effect. It was also demonstrated that changing the steepness of the golfer's swing plane by 10 degrees can have little effect on the delivery of the clubhead to the ball.
先前的研究表明,高尔夫球杆的运动不是平面的,球杆所描绘的平面与球手的手不同。本研究的目的是通过使用四节(躯干、上臂、前臂和球杆)、三维前向动力学模型来研究球杆相对于球手挥杆平面的位置如何影响球杆的运动。遗传算法优化了模型的四个肌肉扭矩发生器的协调,以在六种不同条件下产生最佳的高尔夫挥杆。一系列模拟旨在演示将球杆定位在球手挥杆平面上方和下方的效果,以及改变球手挥杆平面陡峭程度的效果。模拟结果表明,在挥杆的下杆早期将球杆定位在球手挥杆平面下方,将有助于在击球时使杆面方正,而将球杆定位在平面上方则会产生相反的效果。还表明,将球手挥杆平面的陡峭程度改变 10 度对球杆头部向球的传递几乎没有影响。