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Two-Dimensional Krypton Tagging Velocimetry (KTV-2D) Investigation of Shock-Wave/Turbulent Boundary-Layer Interaction

机译:冲击波/湍流边界层相互作用的二维K标记测速法(KTV-2D)研究

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Preliminary results from a two-dimensional Krypton Tagging Velocimetry (KTV-2D) investigation of a Mach 2.75 turbulent boundary and 24 degree compression corner flow are presented in this paper. KTV-2D is performed by creating a grid of tagged Kr atoms formed by intersecting laser lines and imaging the resulting fluorescence at a write step; then, after a time delay, imaging the translation of the grid by re-exciting the tagged atoms for the read step. The measurements were made in a 99% N_2 and 1% Kr gas mixture. Spatial correlation was used to extract the velocity from the data. It was found that the streamwise component of the velocity in the boundary layer agrees well with the literature; however, a consistent bias was noted in the wall-normal velocity component in the boundary-layer and compression corner flows and we provide an explanation and correction for this bias which will easily be eliminated in future experimentation (the bias was a result of procedure, not inherent in the technique). The turning angle in the compression corner flow matches the result from classical inviscid theory, bringing confidence to the results.
机译:本文提出了二维K标记测速法(KTV-2D)对马赫2.75湍流边界和24度压缩角流的初步研究结果。 KTV-2D是通过创建由相交的激光线形成的标记Kr原子的网格并在写入步骤中成像所得荧光来执行的;然后,在一段时间延迟后,通过重新激发标记的原子进行读取步骤,对栅格的平移进行成像。测量是在99%N_2和1%Kr气体混合物中进行的。使用空间相关性从数据中提取速度。发现边界层中的速度沿流向与文献相吻合。但是,在边界层和压缩角流中的壁法向速度分量中观察到一致的偏差,我们对此偏差提供了解释和修正,在以后的实验中将很容易消除该偏差(该偏差是程序的结果,并非该技术固有的)。压缩角流中的转角与经典无粘性理论的结果相符,使结果充满信心。

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