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首页> 外文期刊>Journal of Fluids and Structures >Two noncircular cross-section bodies and a high wing-body configuration at incidence in a low subsonic free stream
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Two noncircular cross-section bodies and a high wing-body configuration at incidence in a low subsonic free stream

机译:在低亚音速自由流中入射时有两个非圆形截面物体和高机翼构型

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This experimental study examines the flow characteristics over a square cross-section body with sharp edges, a rectangular one with rounded edges, and a high wing-body configuration, in a low subsonic free stream. Pressure, velocity, force measurements and flow visualization provide a picture of the flow behaviour, locally and globally. Flow visualization and velocity measurements clearly depict the presence of two axial counter-rotating vortices in the leeside of the first two bodies, being mainly responsible for the asymmetric loading at nonzero roll angles, maximizing the side-force at a roll angle of about 25°. For all body orientations there is always a recirculation region at the nose-after body junction leeside area, the extent of which depends mainly on the roll angle. Pressure gradients take high values at the corners of the after body cross-section, even when these are rounded. No asymmetries were practically detected for a zero roll angle and pitch angles up to 20° for the examined three models. The wing-body configuration exhibits a higher lift slope and a more negative zero lift angle, compared to the wing-alone case, and the side-force increases monotonically with the roll angle, without showing any maximum in contrast to the other two models.
机译:这项实验研究在低亚音速自由流中研究了具有尖锐边缘的方形横截面,具有圆边的矩形横截面以及高机翼构型的流动特性。压力,速度,力测量和流量可视化提供了局部和全局流量行为的图片。流量可视化和速度测量清楚地描述了在前两个物体的后侧存在两个轴向反向旋转涡流,这主要是造成非零侧倾角下的不对称载荷,从而在侧倾角约为25°时最大化了侧向力。对于所有身体方位,在鼻子后部身体交汇处的背风区域始终有一个回流区域,其范围主要取决于侧倾角。即使是圆形的,压力梯度在主体横截面的拐角处也具有较高的值。对于所检查的三个模型,对于零侧倾角和最大20°的俯仰角,实际上没有检测到不对称性。与仅机翼的情况相比,机翼构型具有更高的升力斜率和更大的负零升力角,并且侧向力随侧倾角单调增加,而与其他两种机型相比则没有任何最大值。

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