Quinn Mike D
Department of Engineering and Mathematics, Sheffield Hallam University, Sheffield, UK.
J Appl Biomech. 2010 May;26(2):171-9. doi: 10.1123/jab.26.2.171.
A mathematical model based on a differential equation of motion is used to simulate the 400-m hurdles race for men and women. The model takes into account the hurdler's stride pattern, the hurdle clearance, and aerobic and anaerobic components of the propulsive force of the athlete, as well as the effects of wind resistance, altitude of the venue, and curvature of the track. The model is used to predict the effect on race times of different wind conditions and altitudes. The effect on race performance of the lane allocation and the efficiency of the hurdle clearance is also predicted. The most favorable wind conditions are shown to be a wind speed no greater than 2 m/s assisting the athlete in the back straight and around the second bend. The outside lane (lane 8) is shown to be considerably faster than the favored center lanes. In windless conditions, the advantage can be as much as 0.15 s for men and 0.12 s for women. It is shown that these values are greatly affected by the wind conditions.
一个基于运动微分方程的数学模型被用于模拟男子和女子400米跨栏比赛。该模型考虑了跨栏运动员的步幅模式、过栏高度、运动员推进力的有氧和无氧成分,以及风阻、比赛场地海拔和跑道曲率的影响。该模型用于预测不同风况和海拔对比赛时间的影响。还预测了跑道分配对比赛成绩的影响以及过栏效率。结果表明,最有利的风况是风速不超过2米/秒,且在运动员跑过直道后半段和第二个弯道附近时顺风。外道(第8道)的速度明显快于被看好的内道。在无风条件下,男子的优势可达0.15秒,女子为0.12秒。结果表明,这些数值会受到风况的极大影响。