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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Passive control of roll oscillations of low-aspect-ratio wings using bleed
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Passive control of roll oscillations of low-aspect-ratio wings using bleed

机译:利用放气被动控制低纵横比机翼的侧倾振动

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摘要

A passive flow control method, which uses bleed from a slot near the wing tip, has been shown to attenuate self-excited roll oscillations of a low-aspect-ratio (AR = 2) rectangular flat plate wing. This method was found to be successful across the whole range of angle of attack and better than previous active flow control methods. The effectiveness of the slot strongly depends on its location and width. For effective slot geometries, the tip vortex becomes less coherent, almost eliminating the roll oscillations. Nonlinear interactions between the shear layers shed from the tip and the slot, as well as between the shear layer and the counter-rotating vortex may act as excitation, which can modify the response of the self-sustained oscillator. When the slot is located too close to the tip, there is rapid merging of the shear layers and less interaction, and the slot loses its effectiveness. Also, when the slot is narrow, there is insufficient bleed, resulting in less effective attenuation. Force measurements revealed that this technique can be used as an effective method to suppress roll oscillations without sacrificing and possibly improving aerodynamic performance.
机译:一种被动的流量控制方法,该方法利用了机翼尖端附近狭缝的排放,可以减弱低纵横比(AR = 2)矩形平板机翼的自激侧倾振荡。发现该方法在整个迎角范围内都是成功的,并且比以前的主动流量控制方法要好。插槽的有效性在很大程度上取决于其位置和宽度。对于有效的缝隙几何形状,尖端涡旋变得不那么连贯,几乎消除了横摆振荡。从尖端和缝隙脱落的剪切层之间以及剪切层和反向旋转涡旋之间的非线性相互作用可能会激发,从而改变自持振荡器的响应。当狭槽的位置离尖端太近时,剪切层会迅速合并并且相互作用会减少,并且狭槽会失去其有效性。同样,当狭缝狭窄时,渗漏不足,导致衰减效果较差。力的测量表明,该技术可以用作抑制侧倾振荡的有效方法,而不会牺牲或可能改善空气动力性能。

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