van Ingen Schenau G J
J Biomech. 1982;15(6):449-58. doi: 10.1016/0021-9290(82)90081-1.
With the use of a wind tunnel the air friction force Fw on six speed skaters of different body builds was measured. The dependence of the drag coefficient CD on air velocity v and the influence of different skating postures on drag were investigated. At an air velocity of v = 12 m/sec, an angle between upper and lower leg of 110 degrees and a horizontal trunk position, the measured air friction constant kn(=Fw/V2) of all subjects was calculated from their height l and weight m according to the formula 0.0205 l3 square root m (standard error 2%). CD and as a consequence k appeared to be strongly dependent on air velocity. Expressions to correct k for other velocities and postures were derived and substituted into a power balance by which the influence of posture, ice condition, wind and altitude on performance was predicted.
利用风洞测量了六名不同体型速滑运动员所受的空气摩擦力Fw。研究了阻力系数CD与风速v的关系以及不同滑行姿势对阻力的影响。在风速v = 12米/秒、大小腿夹角为110度且躯干呈水平姿势的情况下,根据公式0.0205 l3√m(标准误差2%),从所有受试者的身高l和体重m计算出测量的空气摩擦常数kn(=Fw/V2)。结果表明,CD以及k都强烈依赖于风速。推导出了针对其他速度和姿势校正k的表达式,并将其代入功率平衡方程,据此预测姿势、冰面状况、风以及海拔对成绩的影响。