首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Surface flow modification of aerofoils for automotive racing car applications
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Surface flow modification of aerofoils for automotive racing car applications

机译:汽车赛车应用机架的表面流动改变

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An aerofoil commonly used in aerospace engineering to produce lift is also employed in the motor sport industry to produce downforce for improving traction during cornering. This paper investigates aerofoil surface modification through 'golf ball dimpling', used to reduce flow separation behind a golf ball. The studies of other researchers have shown that this type of design can have a positive effect on improving aerofoil performance. However, no optimization information of dimple sizing is given in literature. Therefore, three types of dimpling sized at 5, 10 and 15 mm are applied to the surface of a NACA 6615 wing at 25% chord length from the leading edge in this study using Computational Fluid Dynamics (CFD) as an initial design process. Then a physical model, made through 3D printing additive manufacturing (AM), is tested at angles of attack (AoA) ranging from 0 degrees to 20 degrees and wind speed up to 30 m/s in a subsonic wind tunnel. Experimental and CFD results show that the smallest dimple size provides the most significant increase on lift to drag ratio at high AoA above 10 degrees. This ratio increases further with the wind speed, indicating that a high AoA wing favors down force to improve drag reduction performance.
机译:在航空航天工程中常用的翼型也用于生产升力,在汽车运动行业中也采用了在转弯期间改善牵引力的低压。本文通过“高尔夫球凹坑”调查了机翼表面改性,用于减少高尔夫球背后的流动分离。对其他研究人员的研究表明,这种类型的设计可以对改善机动性能产生积极影响。然而,文献中没有给出凹坑尺寸的优化信息。因此,使用计算流体动力学(CFD)作为初始设计过程,将三种类型的凹陷在5,10和15mm处以25%的弦长,其从该研究中的前沿,以25%的弦长。然后通过3D打印添加剂制造(AM)进行的物理模型在亚音风隧道中从0度到20度和风速高达30m / s的攻击角度测试。实验和CFD结果表明,最小的凹度尺寸在高于10度以上的高AOA下升力的升力最显着增加。该比率随着风速而进一步增加,表明高AOA翼源于降低力以提高阻力降低性能。

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