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Experimental Study of a Mach 3 Compression Ramp Interaction at Re_θ = 2400

机译:Re_θ= 2400时Mach 3压缩斜坡相互作用的实验研究

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Experiments were performed to investigate the flow in a Mach 2.9 shock wave turbulent boundary-layer interaction at a Reynolds number based on momentum thickness of 2400. The flow configuration was a nominally two-dimensional 24 deg compression ramp, which exhibited a separation bubble in the corner region. Mean flow quantities, including the velocity profile upstream and downstream of the corner, and the wall pressure through the interaction were measured. Filtered Rayleigh scattering was used to visualize the flow structure in the interaction and provide quantitative measurements of the turbulent structure angle and the intermittency of the boundary-layer edge turbulence. The shock motion was characterized by measuring the fluctuating wall pressure. The results indicate that, compared to previous measurements obtained at higher Reynolds numbers of 60-80,000, the separation bubble is approximately twice as long, the root mean square of the wall-pressure fluctuations has a relatively smaller peak, and the intermittency of the wall-pressure signal in the shock-foot region is attenuated. As in the high-Reynolds-number case, the shock motion has a broadband frequency distribution with a peak slightly below 1 kHz. The mean flow quantities, root mean square wall-pressure-fluctuation profile, wall-pressure signal, and shock-motion frequency agree well with the direct numerical simulation of a previous study at matching conditions.
机译:进行了实验,以基于2400的动量厚度,以雷诺数研究2.9马赫数激波湍流边界层相互作用中的流动。流动配置为名义上的二维24度压缩坡道,在其内部表现出分离气泡。角落区域。测量了平均流量,包括拐角上游和下游的速度曲线,以及通过相互作用的壁压力。过滤的瑞利散射用于可视化相互作用中的流动结构,并提供湍流结构角和边界层边缘湍流的间歇性的定量测量。通过测量波动的壁压力来表征冲击运动。结果表明,与先前在60-80,000的较高雷诺数下获得的测量值相比,分离气泡的长度大约是其两倍,壁压波动的均方根具有相对较小的峰值,并且壁的间歇性脚底区域的压力信号衰减。与高雷诺数情况一样,冲击运动具有宽带频率分布,其峰值略低于1 kHz。在匹配条件下,平均流量,均方根壁压力波动曲线,壁压力信号和冲击运动频率与先前研究的直接数值模拟非常吻合。

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