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跳台滑雪早期飞行阶段的数值研究。

Numerical investigation of the early flight phase in ski-jumping.

作者信息

Gardan N, Schneider A, Polidori G, Trenchard H, Seigneur J M, Beaumont F, Fourchet F, Taiar R

机构信息

CAD and CAE R&D Center DINCCS of Micado, France.

URCA/CReSTIC/NUM3D, France.

出版信息

J Biomech. 2017 Jul 5;59:29-34. doi: 10.1016/j.jbiomech.2017.05.013. Epub 2017 May 19.

Abstract

The purpose of this study is to develop a numerical methodology based on real data from wind tunnel experiments to investigate the effect of the ski jumper's posture and speed on aerodynamic forces in a wide range of angles of attack. To improve our knowledge of the aerodynamic behavior of the ski jumper and his equipment during the early flight phase of the ski jump, we applied CFD methodology to evaluate the influence of angle of attack (α=14°, 21.5°, 29°, 36.5° and 44°) and speed (u=23, 26 and 29m/s) on aerodynamic forces in the situation of stable attitude of the ski jumper's body and skis. The standard k-ω turbulence model was used to investigate both the influence of the ski jumper's posture and speed on aerodynamic performance during the early flight phase. Numerical results show that the ski jumper's speed has very little impact on the lift and drag coefficients. Conversely, the lift and drag forces acting on the ski jumper's body during the early flight phase of the jump are strongly influenced by the variations of the angle of attack. The present results suggest that the greater the ski jumper's angle of inclination, with respect to the relative flow, the greater the pressure difference between the lower and upper parts of the skier. Further studies will focus on the dependency of the parameters with both the angle of attack α and the body-ski angle β as control variables. It will be possible to test and optimize different ski jumping styles in different ski jumping hills and investigate different environmental conditions such as temperature, altitude or crosswinds.

摘要

本研究的目的是基于风洞实验的真实数据开发一种数值方法,以研究跳台滑雪运动员的姿势和速度在广泛攻角范围内对空气动力的影响。为了增进我们对跳台滑雪运动员及其装备在跳台滑雪早期飞行阶段空气动力学行为的了解,我们应用计算流体动力学(CFD)方法来评估攻角(α = 14°、21.5°、29°、36.5°和44°)和速度(u = 23、26和29米/秒)对跳台滑雪运动员身体和滑雪板处于稳定姿态时空气动力的影响。采用标准k-ω湍流模型来研究跳台滑雪运动员的姿势和速度在早期飞行阶段对空气动力性能的影响。数值结果表明,跳台滑雪运动员的速度对升力系数和阻力系数的影响很小。相反,在跳跃的早期飞行阶段作用在跳台滑雪运动员身体上的升力和阻力受到攻角变化的强烈影响。目前的结果表明,跳台滑雪运动员相对于相对气流的倾斜角度越大,滑雪者上下部分之间的压力差就越大。进一步的研究将集中在以攻角α和身体与滑雪板的角度β作为控制变量时参数的相关性上。将有可能在不同的跳台滑雪场地测试和优化不同的跳台滑雪风格,并研究不同的环境条件,如温度、海拔或侧风。

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