首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Aerodynamics of badminton shuttlecock: Characterization of flow around a conical skirt with gaps, behind a hemispherical dome
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Aerodynamics of badminton shuttlecock: Characterization of flow around a conical skirt with gaps, behind a hemispherical dome

机译:羽毛球shuttle的空气动力学:半球形圆顶后面的带有间隙的锥形裙周围的流动特征

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摘要

The effects of gaps on flow properties were studied for a thin walled conical structure behind a hemispherical dome-badminton shuttlecock. Computational fluid dynamics was applied to six different profiles with differing gap sizes. The gaps increased the drag force over a gapless conical skirt by up to 45.2% using the design dimensions. This is termed the critical gap size. Below the critical gap size, drag increases with as gap widens. Beyond the critical gap size, larger gaps resulted in reduced blunt body effect, reduced drag, and increased skirt porosity. Bleeding caused the formation of air jets that diminished the recirculation typical of wake behind a blunt body. Analysis of the pressure profiles showed that gaps increased the differential pressure between the inner and outer surface, thereby producing more drag. The gaps also resulted in spikes along the pressure profiles. Some of the numerical results were validated against wind tunnel experiments and showed good agreement. Variation of only 3.2-4.7% was observed between the numerical and experimented drag data of the gapless cone.
机译:对于半球形圆顶羽毛球shuttle子后面的薄壁锥形结构,研究了间隙对流动特性的影响。计算流体动力学应用于具有不同间隙尺寸的六个不同轮廓。使用设计尺寸,这些间隙将无间隙圆锥形裙板上的阻力增加了高达45.2%。这被称为临界间隙尺寸。在临界间隙大小以下,随着间隙变大,阻力会增加。除了临界缝隙大小以外,较大的缝隙会导致钝化效果降低,阻力减小以及裙边孔隙率增加。出血导致形成喷气,从而减少了钝体后典型的尾流再循环。对压力分布的分析表明,间隙会增加内外表面之间的压差,从而产生更大的阻力。间隙还导致沿压力分布的峰值。一些数值结果已针对风洞实验进行了验证,并显示出良好的一致性。无间隙锥体的数值和实验阻力数据之间仅观察到3.2-4.7%的变化。

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