Beaumont F, Taiar R, Polidori G, Trenchard H, Grappe F
Laboratoire de Thermomécanique GRESPI-EA4694, Université de Reims, 51687 Reims cedex 2, France.
Independent Researcher, 805 647 Michigan St., Victoria, B.C., Canada.
J Biomech. 2018 Jan 23;67:1-8. doi: 10.1016/j.jbiomech.2017.10.042. Epub 2017 Nov 8.
The aerodynamic drag of three different time-trial cycling helmets was analyzed numerically for two different cyclist head positions. Computational Fluid Dynamics (CFD) methods were used to investigate the detailed airflow patterns around the cyclist for a constant velocity of 15 m/s without wind. The CFD simulations have focused on the aerodynamic drag effects in terms of wall shear stress maps and pressure coefficient distributions on the cyclist/helmet system. For a given head position, the helmet shape, by itself, obtained a weak effect on a cyclist's aerodynamic performance (<1.5%). However, by varying head position, a cyclist significantly influences aerodynamic performance; the maximum difference between both positions being about 6.4%. CFD results have also shown that both helmet shape and head position significantly influence drag forces, pressure and wall shear stress distributions on the whole cyclist's body due to the change in the near-wake behavior and in location of corresponding separation and attachment areas around the cyclist.
针对两种不同的自行车手头部位置,对三种不同的计时赛自行车头盔的空气动力学阻力进行了数值分析。采用计算流体动力学(CFD)方法,在无风条件下以15米/秒的恒定速度研究自行车手周围的详细气流模式。CFD模拟主要关注自行车手/头盔系统壁面剪应力图和压力系数分布方面的空气动力学阻力效应。对于给定的头部位置,头盔形状本身对自行车手的空气动力学性能影响较弱(<1.5%)。然而,通过改变头部位置,自行车手会显著影响空气动力学性能;两个位置之间的最大差异约为6.4%。CFD结果还表明,由于自行车手近尾流行为的变化以及自行车手周围相应分离和附着区域位置的改变,头盔形状和头部位置都会显著影响整个自行车手身体上的阻力、压力和壁面剪应力分布。