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Effect of ground on flow characteristics and aerodynamic performance of a non-slender delta wing

机译:地面对非苗条三角翼流动特性及空气动力学性能的影响

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摘要

The aerodynamic performance and the structure of vortical flow on a delta wing are affected by the influence of the ground in take-off and landing stages. In this context, the effect of the ground on a delta wing having a sweep angle of 40 degrees was investigated by employing Particle Image Velocimetry (PIV), aerodynamic force measuring system and the dye flow visualization technique. Flow characteristics of delta wing were examined under two different angles of attack, alpha = 8 degrees and 11 degrees and variation of the distance between trailing edge of the wing and ground, h normalized with the root chord length, c of the wing. It was observed that the existence of the ground attenuates the magnitude of peak values of primary and secondary vortices due to incomplete development of vortices. The ground effect caused the outboard movement of the leading-edge vortex in a spanwise direction as well as an increase in the size of vortices. Furthermore, the presence of the ground induced a decrease in Strouhal number, St due to the slowing down of vortex formation. Lift and drag coefficient, C-L, and C-D of the delta wing were observed to increase with descending from unbounded flight region into ground effect region. Finally, it was found that C-L/C-D increases by reducing the distance between ground and wing, h/c, and a rise of C-L/C-D is much more effective under the lower angles of attack, alpha. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:三角翼涡流上涡流的空气动力学性能和结构受到地面在起飞和着陆阶段的影响的影响。在这种情况下,通过采用粒子图像速度(PIV),空气动力测量系统和染料流动可视化技术,研究了地面对具有40度40度的扫掠角度的Delta翼的效果。在两种不同的攻击角度下检查Delta Wing的流动特性,alpha = 8度和11度,以及机翼后缘之间的距离和距离之间的距离,H归一化与机翼的根弦长。观察到,由于涡流的不完全发展,地面的存在衰减了主要和次级涡流的峰值的大小。地面效应导致前缘涡流在翼展方向上的舷外运动以及涡流尺寸的增加。此外,由于涡流形成的减慢,地面的存在诱导了Strouhal数量的降低。观察到Delta翼的升力和拖曳系数,C-L和C-D,以增加从无绑定的飞行区域进入地面效应区域的下降。最后,发现C-L / C-D通过减小地面和翼,H / C之间的距离而增加,C-L / C-D的升高在较低的攻击角度下更有效。 (c)2020 Elsevier Masson SAS。版权所有。

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