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Investigation of the unsteadiness of a shock-reflection interaction with time-resolved particle image velocimetry

机译:时间分辨粒子图像测速仪对冲击反射相互作用的不稳定性的研究

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摘要

The spatio-temporal dynamics of an impinging shock/boundary layer interaction at Mach 2 and under incipient separation conditions, has been investigated experimentally by means of high-speed particle image velocimetry (PIV). The available PIV acquisition rate of up to 20 kHz permits a time-resolved characterization of the interaction. The dynamics of different flow regions—notably the separation region and the reflected shock—were quantified by means of temporal auto-correlation fields and pseudo-spectral analysis. The PIV data further enable to investigate the relationship between spatially extended flow features, such as shock position and bubble size, as well as the influence of the upstream boundary layer. The results confirm earlier studies that there is an important upstream effect on the present incipient interaction.
机译:借助于高速粒子图像测速仪(PIV),已经在实验上研究了冲击波/边界层相互作用在马赫数2和初始分离条件下的时空动力学。高达20 kHz的可用PIV采集速率允许对时间进行交互表征。通过时间自相关场和伪谱分析对不同流动区域(尤其是分离区域和反射冲击)的动力学进行了量化。 PIV数据还可以研究空间扩展的流动特征(例如激波位置和气泡大小)之间的关系,以及上游边界层的影响。结果证实了较早的研究,即对当前的初期相互作用有重要的上游影响。

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