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Flow Structure Generation by Multiple Jets in Supersonic Cross-Flow

机译:超声速横流中多喷流产生的流结构

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摘要

The flow structure generation by multiple jets impinging a supersonic crossflow in the divergent section of a Convergent-Divergent (C-D) duct is investigated using compressible Large Eddy Simulations (LES). The supersonic flow-field in the C-D duct is mainly characterized by the evolving shock-structure. The effect of increasing the compressible jet to crossflow velocity ratio R to the generation of flow structures and the ability to modify the shock-pattern in the duct was studied. Traversing R, the shock-pattern can be significantly altered. This paper demonstrates that for close located jets in crossflow the vortical structures generated by the jets can interact and give rise to vortical structures in the interspace plane between the jets. The spectra for different probes are shown illustrating the characteristic flow frequencies. For all simulated cases the spectra show peaks for a defined Strouhal-number of 0.5. The jets choke in the crossflow above an R of about 0.65, which results in a faster disruption of the coherent flow structures induced by the jets. The flow field is analyzed using Proper Orthogonal Decomposition (POD).
机译:使用可压缩的大涡模拟(LES)研究了多束射流在会聚-发散(C-D)管道的发散段中撞击超音速横流的流动结构产生。 C-D管道中的超音速流场的主要特征是不断演变的冲击结构。研究了增加可压缩射流与横流速度之比R对流动结构生成的影响,以及改变风道中冲击波模式的能力。遍历R,可以显着改变震动模式。本文证明,对于错流中位置较近的射流,由射流产生的涡旋结构可以相互作用,并在射流之间的空间平面内产生涡旋结构。显示了不同探针的光谱,说明了特征流动频率。对于所有模拟情况,谱图均显示定义的Strouhal数为0.5的峰。射流在约0.65的R之上的横流中cho流,这导致了由射流引起的相干流动结构的更快破坏。使用适当的正交分解(POD)分析流场。

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