首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >Vortical structures behind a transverse jet in a supersonic flow at high jet to crossflow pressure ratios
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Vortical structures behind a transverse jet in a supersonic flow at high jet to crossflow pressure ratios

机译:在高射流与横流压力比的情况下,在超声速流动中横向射流后面的涡流结构

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A three-dimensional supersonic turbulent flow with symmetric normal injection of circular jets from the channel walls is numerically simulated. The initial Favre-averaged Navier-Stokes equations closed by the k-omega turbulence model are solved by an algorithm based on an ENO scheme. The mechanism of the formation of vortical structures due to the interaction of the jet with the free stream is studied for jet to crossflow total pressure ratios ranging from 3 to 50. It is known from experiments reported in the literature that, for n a (c) 3/4 10, mixing of the jet with the high-velocity flow leads to the formation of a pair of vortices and of an additional separation zone near the wall behind the jet. It is demonstrated that the present numerical results are consistent with such findings and that the pressure distribution on the wall ahead of the jet in the plane of symmetry is also in reasonable agreement with available experimental data.
机译:数值模拟了三维超声速湍流,从通道壁对称地垂直注入圆形射流。用基于ENO方案的算法求解由k-omega湍流模型封闭的初始Favre平均Navier-Stokes方程。对于射流与横流的总压比范围为3至50,研究了由于射流与自由流相互作用而形成旋涡结构的机理。从文献报道的实验中得知,对于na(c) 3/4 10时,射流与高速流的混合会导致形成一对涡流,并在射流后面的壁附近形成一个附加的分离区。结果表明,目前的数值结果与这些发现是一致的,并且在对称平面中射流前方壁上的压力分布也与现有的实验数据合理地吻合。

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