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Control of VR-7 Dynamic Stall by Strong Steady Blowing

机译:强稳定吹气控制VR-7动态失速

摘要

An experiment was performed in a water tunnel on a Boeing-Vertol VR-7 airfoil to study the effects of tangential blowing over the upper surface. Blowing was applied at the quarter-chord location during sinusoidal pitching oscillations described by alpha = alpha(sub m) + 10 deg sin omega t. Results were obtained for a Reynolds number of 1 x 10(exp 5), mean angles of 10 and 15 deg, reduced frequencies ranging from 0.005 to 0.15, and blowing rates from C(sub mu) = 0.16 to 0.66. Unsteady lift, drag, and pitching moment loads are reported, along with fluorescent-dye flow visualizations. Strong steady blowing was found to prevent the bursting of the leading-edge separation bubble at several test points. When this occurred, the lift was increased significantly, stall was averted, and the shape of the moment response showed a positive damping in pitch. In almost all cases, steady blowing reduced the hysteresis amplitudes present in the loads, but the benefits diminished as the reduced frequency and mean angle of oscillation increased. A limited number of pulsed blowing cases indicated that for low blowing rates, the greatest gains were achieved at F(sup +) = 0.9.
机译:在Boeing-Vertol VR-7机翼的水隧道中进行了一项实验,以研究切向吹在上表面的影响。在由α= alpha(sub m)+ 10度正弦ω表示的正弦音高振荡期间,在四分之一和弦位置施加吹气。雷诺数为1 x 10(exp 5),平均角度为10和15度,降低的频率范围为0.005至0.15,吹塑速率为C(sub mu)= 0.16至0.66,获得了结果。报告了不稳定的升力,阻力和俯仰力矩载荷,以及荧光染料流的可视化。发现强烈的稳定吹气可防止前沿分离气泡在多个测试点破裂。发生这种情况时,升力明显增加,避免了失速,并且力矩响应的形状显示出正的阻尼阻尼。在几乎所有情况下,稳定的吹气都会减小负载中出现的磁滞幅度,但是随着减小的频率和平均振荡角的增加,好处会减弱。数量有限的脉冲吹塑情况表明,对于低吹塑率,在F(sup +)= 0.9时可获得最大的增益。

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