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Planar Laser-Induced Iodine Fluorescence Measurements in Rarefied Hypersonic Flow

机译:稀疏高超声速流中的平面激光诱导的碘荧光测量

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摘要

A planar laser-induced fluorescence (PLIF) technique is discussed and applied to measurement of time-averaged values of velocity and temperature in an I(sub 2)-seeded N(sub 2) hypersonic free jet facility. Using this technique, a low temperature, non-reacting, hypersonic flow over a simplified model of a reaction control system (RCS) was investigated. Data are presented of rarefied Mach 12 flow over a sharp leading edge flat plate at zero incidence, both with and without an interacting jet issuing from a nozzle built into the plate. The velocity profile in the boundary layer on the plate was resolved. The slip velocity along the plate, extrapolated from the velocity profile data, varied from nearly 100% down to 10% of the freestream value. These measurements are compared with results of a DSMC solution. The velocity variation along the centerline of a jet issuing from the plate was measured and found to match closely with the correlation of Ashkenas and Sherman. The velocity variation in the oblique shock terminating the jet was resolved sufficiently to measure the shock wave thickness.
机译:讨论了平面激光诱导荧光(PLIF)技术,并将其应用于I(sub 2)播种的N(sub 2)高超声速自由射流设施中速度和温度的时间平均值的测量。使用这种技术,研究了反应控制系统(RCS)简化模型上的低温,非反应性高超声速流。数据显示了稀有的Mach 12流以零入射流过锋利的前缘平板时的情况,无论有没有从内置在板上的喷嘴发出相互作用的射流。解析了板边界层上的速度分布。从速度剖面数据推断出的沿板的滑移速度从自由流值的近100%下降到10%。将这些测量结果与DSMC解决方案的结果进行比较。测量沿着板的射流中心线的速度变化,发现该速度变化与Ashkenas和Sherman的相关性紧密匹配。终止射流的斜向冲击中的速度变化已得到充分解决,可以测量冲击波的厚度。

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