Numerical Study on Evolution Characteristics of Vortices in Supersonic Mixing Layers

Guangming Guo, Hong Liu, Bin Zhang
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引用次数: 3

Abstract

Vortices inside mixing layers impose remarkable aero-optical distortions on a beam even at moderate subsonic speeds. However, with knowledge about vortices evolution in this mixing layer flow field, especially for evolution characteristics of vortices in supersonic mixing layer flow field is limited because the supersonic flow has very high speed. In this study, the large eddy simulation (LES) was used to simulate the supersonic mixing layer flow field. The growth rate of supersonic mixing layer and site of vortex rolling up acted as two evaluation parameters to quantitatively investigate the evolution characteristics of vortices in supersonic mixing layers. Subsequently, three suits of cases, in which the compressibility of flow field, initially normal disturbance, and compositions of the two incoming streams making up a supersonic mixing layer were taken into account, were performed to investigate the evolution characteristics of vortices in supersonic mixing layer in detail. The results indicated that the evolution characteristics of vortices were obviously affected by the compressibility of flow field, initially normal disturbance, and compositions of the two incoming streams. Finally, several conclusions drawn from this study were presented.
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超声速混合层涡旋演化特性的数值研究
即使在中等亚音速下,混合层内的涡流也会对光束产生显著的气动光学畸变。然而,由于超声速流动速度非常快,人们对该混合层流场中涡旋的演化,特别是超声速混合层流场中涡旋的演化特征了解有限。本文采用大涡模拟(LES)方法对超声速混合层流场进行了模拟。以超声速混合层生长速度和涡旋卷起位置为评价参数,定量研究超声速混合层内涡旋的演化特征。随后,考虑了流场的可压缩性、初始法向扰动和组成超声速混合层的两股来流组成三种情况,详细研究了超声速混合层涡旋的演化特征。结果表明,流场的可压缩性、初始法向扰动和两股来流的组成对涡旋的演化特征有明显的影响。最后,给出了本研究的几个结论。
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