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New visions in experimental investigations of a supersonic under-expanded jet into a high subsonic crossflow

机译:超音速超膨胀射流进入高亚音速错流实验研究的新视野

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摘要

A series of experiments was performed to investigate the interaction of an under-expanded axisymmetric supersonic jet exhausted from a flat plate with a high subsonic crossflow. The goal was to study the effect of boundary layer thickness (δ) and jet to freestream dynamic pressure ratio (J) on flow field pressure distributions. The resulting measurements upstream of the jet showed that with increasing boundary layer thickness, the magnitude of the pressure coefficient decreases, whereas downstream of the jet, the recovery of the back-pressure moved closer to the nozzle exit. Flow field measurements indicated that with increasing boundary layer thickness, the jet plume dissipation rate increased, whereas the strength of the counter-rotating vortex pair (CRVP) did not vary significantly. In addition, it was clearly observed that with increasing J, the CRVP penetrated into the crossflow and the magnitude of the pressure coefficient on the surface upstream and downstream of the jet increased.
机译:进行了一系列实验,以研究从平板排出的膨胀不足的轴对称超音速喷射流与高亚音速错流的相互作用。目的是研究边界层厚度(δ)和射流与自由流动​​压比(J)对流场压力分布的影响。射流上游的最终测量结果表明,随着边界层厚度的增加,压力系数的大小减小,而射流下游的背压恢复则更接近喷嘴出口。流场测量表明,随着边界层厚度的增加,射流羽流消散率增加,而反向旋转涡流对(CRVP)的强度没有明显变化。此外,可以清楚地观察到,随着J的增加,CRVP会渗入错流,并且射流上游和下游表面的压力系数的大小会增加。

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