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EFFECT OF END-WALL VORTEX GENERATOR JET PARAMETERS ON FLOW CONTROL IN HIGH SUBSONIC COMPRESSOR CASCADE

机译:端壁涡发生器射流参数对高亚音速压缩机级联流控制的影响

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In order to explore the control mechanism of vortex generator jet, which is located in the passage (PVGJ), on the separation flow, the influence of the pitch angle, skew angle, locations and jet-to-inflow ratio are studied using numerical methods in a high subsonic compressor cascade. The changing of the flow pattern is also analyzed in detail. The results show that the control effect of the end-wall vortex generator jet located in the passage is better than the leading edge one and the aerodynamic performance is effectively improved. The maximum total pressure loss coefficient decreases by 12% and the static pressure coefficient increases by 5.2% while the jet-to-inflow ratio is only 0.3%. The control effect is sensitive to the change of jet parameters. When 0 deg ﹤ β ﹤ 80 deg, 20 deg﹤α﹤50 deg,, x﹤0.5B, y﹤0.15t, the vortex generation jet could acquire an ideal control effect. As the jet mass increases, the total pressure loss coefficient gradually reduces. The VGJ prevent separation mainly by bringing high momentum fluid into the near wall region and by promoting momentum transport through turbulent mixing in previous studies. Both the LVGJ and PVGJ mainly take advantage of jet vortex to prevent the cross flow from interacting with the suction side boundary layer.
机译:为了探索位于通道(PVGJ)中的涡流发生器射流的控制机理,对分离流进行了数值研究,研究了桨距角,偏角,位置和射流比的影响。在高亚音速压缩机级联中还详细分析了流动模式的变化。结果表明,位于通道内的端壁涡流发生器射流的控制效果优于前缘,并有效改善了空气动力学性能。最大总压力损失系数减少12%,静压力系数增加5.2%,而射流比仅为0.3%。控制效果对喷射参数的变化很敏感。当0度﹤β﹤80度,20度α﹤50度,x ﹤0.5B,y ﹤0.15t时,产生涡流的射流可以获得理想的控制效果。随着射流质量的增加,总压力损失系数逐渐减小。 VGJ主要通过将高动量流体引入壁附近区域并通过先前研究中的湍流混合促进动量传输来防止分离。 LVGJ和PVGJ都主要利用射流涡流来防止横流与吸力侧边界层相互作用。

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