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Lift enhancement and flow structure of airfoil with joint trailing-edge flap and Gurney flap

机译:联合后缘襟翼和格尼襟翼提高机翼升力和流动结构

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The impact of Gurney flaps (GF), of different heights and perforations, on the aerodynamic and wake characteristics of a NACA 0015 airfoil equipped with a trailing-edge flap (TEF) was investigated experimentally at Re = 2.54 × 105. The addition of the Gurney flap to the TEF produced a further increase in the downward turning of the mean flow (increased aft camber), leading to a significant increase in the lift, drag, and pitching moment compared to that produced by independently deployed TEF or GF. The maximum lift increased with flap height, with the maximum lift-enhancement effectiveness exhibited at the smallest flap height. The near wake behind the joint TEF and GF became wider and had a larger velocity deficit and fluctuations compared to independent GF and TEF deployment. The Gurney flap perforation had only a minor impact on the wake and aerodynamics characteristics compared to TEF with a solid GF. The rapid rise in lift generation of the joint TEF and GF application, compared to conventional TEF deployment, could provide an improved off-design high-lift device during landing and takeoff.
机译:实验研究了不同高度和穿孔的格尼襟翼(GF)对配备后缘襟翼(TEF)的NACA 0015机翼的空气动力学和尾流特性的影响,实验条件为Re = 2.54×10 5 < / sup>。将格尼襟翼添加到TEF中,与独立部署的TEF或独立部署的TEF产生的升力,阻力和俯仰力矩相比,平均流量的向下转向进一步增加(后弯度增加),从而导致升力,阻力和俯仰力矩显着增加。 GF。最大升力随着襟翼高度的增加而增加,在最小的襟翼高度处表现出最大的升力增强效果。与独立的GF和TEF部署相比,TEF和GF联合后面的近尾声变得更宽,并且具有更大的速度赤字和波动。与带有固体GF的TEF相比,格尼襟翼穿孔对尾流和空气动力学特性的影响很小。与传统的TEF部署相比,联合TEF和GF应用产生的升力迅速增加,可以在着陆和起飞期间提供一种改进的非设计高升力设备。

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