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Schlieren-based techniques for investigating instability development and transition in a hypersonic boundary layer

机译:基于Schlieren的技术研究高超声速边界层中的不稳定性发展和过渡

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摘要

Three variants of schlieren techniques are employed to investigate the development of second-mode instability waves in the hypersonic boundary layer of a slender cone in a reflected shock tunnel. First, a previously proposed technique using high frame rate (i.e., at least as high as the dominant instability frequency) schlieren visualization with a continuous light source is shown to provide repeatable measurements of the instability propagation speed and frequency. A modified version of the technique is then introduced whereby a pulsed light source allows the use of a higher-resolution camera with a lower frame rate: this provides significant benefits in terms of spatial resolution and total recording time. A detailed picture of the surface-normal intensity distribution for individual wave packets is obtained, and the images provide comprehensive insight into the unsteady flow structures within the boundary layer. Finally, two-point schlieren deflectometry is implemented and shown to be capable of providing second-mode growth information in the challenging shock tunnel environment.
机译:使用schlieren技术的三种变体来研究反射激波隧道中细长圆锥体的高超声速边界层中第二模式不稳定性波的发展。首先,示出了先前提出的技术,该技术使用具有连续光源的高帧频(即,至少与主导的不稳定性频率一样高)的席利尔可视化来提供对不稳定性传播速度和频率的可重复测量。然后引入了该技术的改进版本,其中脉冲光源允许以较低的帧频使用高分辨率的相机:这在空间分辨率和总记录时间方面具有明显优势。获得了单个波包的表面法线强度分布的详细图片,并且这些图像提供了对边界层内非稳定流动结构的全面了解。最后,实现了两点schlieren挠度法,并证明了它能够在具有挑战性的冲击隧道环境中提供第二模式的增长信息。

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