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首页> 外文期刊>Fluid Dynamics >Controlling the Disturbances in a Hypersonic Flat-Plate Shock Layer by Unsteady Action from the Surface
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Controlling the Disturbances in a Hypersonic Flat-Plate Shock Layer by Unsteady Action from the Surface

机译:通过表面的不稳定作用来控制高超声速平板激波层中的扰动

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摘要

The results of a wind-tunnel experiment on the joint action of periodic acoustic fast-mode disturbances of the outer flow and disturbances generated at the leading edge of a plate on the hypersonic (M{sub}∞ = 21) viscous shock layer on the plate are presented. The possibility of positively controlling the intensity of density fluctuations in the plate shock layer by means of disturbances introduced from the leading edge is shown. Direct numerical simulation of the suppression (enhancement) of disturbances under the simultaneous action on the shock layer of the two-dimensional fast-mode acoustic waves in the outer flow and the source of two-dimensional suction/injection disturbances near the leading edge of the plate is performed under the experimental conditions. The experimental and calculated results are shown to be in good agreement.
机译:风洞实验的结果是,外部流动的周期性声快速模式扰动和板的前缘在高超声速(M {sub}∞= 21)粘性激波层上产生的扰动共同作用。板的介绍。示出了通过从前缘引入的干扰来积极地控制板状冲击层中的密度波动的强度的可能性。二维快速模式声波在外流中激波层的同时作用下扰动抑制(增强)的直接数值模拟,以及二维吸/注入扰动源附近的二维流动。板在实验条件下进行。实验和计算结果显示出很好的一致性。

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