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Measurements of Instability in Supersonic Flow with Injection by Time-Resolved Flow Visualization

机译:时间分辨流动可视化测量超音速射流的不稳定性

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Experiments were performed in a Mach 4 Ludwieg tube to examine the transition process in flow over a sharp cone with boundary layer injection. Full-field images with nitrogen, helium, and RC-318 injection reveal that transition occurs earlier with higher injection rates and with lighter injected gas. High-speed imaging at 290 kHz allows the measurement of wavelength and convective velocity by auto- and cross-correlation, respectively, in the cases with nitrogen injection. The wavelength is found to be approximately 8 mm with a convective velocity of 515 m/s, resulting in a frequency range of 60-70 kHz. These properties of the instability waves are roughly constant over all injection rates tested even though the thickness of the injection layer varies by a factor of two.
机译:在Mach 4 Ludwieg管中进行了实验,以检查带有边界层注入的尖锥流中的过渡过程。用氮气,氦气和RC-318注入的全场图像显示,在较高的注入速率和较轻的注入气体下,过渡较早发生。在注入氮气的情况下,以290 kHz的高速成像可以分别通过自相关和互相关来测量波长和对流速度。发现波长约为8 mm,对流速度为515 m / s,从而产生60-70 kHz的频率范围。即使注入层的厚度变化了两倍,不稳定性波的这些特性在所有测试的注入速率上也大致恒定。

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