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Large-Structure Topology in a Three-Dimensional Supersonic Base Flow

机译:三维超声速基流中的大结构拓扑

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The near wake of a blunt-base cylinder at 10-deg angle of attack to a Mach 2.46 freestream flow is studied using Mie scattering flow visualization. Large-scale structures are clearly evident in side-view images of the windward and lateral parts of the shear layer but not in the leeward shear layer. Autocorrelation analysis shows that the average structures grow substantially in side views as the shear layer develops on the lateral plane and the windward shear layer, but not the leeward shear layer. End-view images show that a septum originates from the leeward part of the shear layer and extends to the windward part of the shear layer during reattachment, dividing the wake into two lobes after reattachment and causing a short reattachment length. The structures in end-view images are largest in the windward part of the shear layer and increase in size as the shear layer develops. The structures are inclined toward the leeward direction in the lateral plane, indicating circumferential flow from windward to leeward in the main shear layer. The appearance of the images suggests that this circumferential flow causes mass buildup on the leeward side of the wake, prompting the formation of the septum.
机译:使用Mie散射流可视化技术研究了钝基圆柱体在10度迎角下对2.46马赫自由流的近尾流。大型结构在剪切层的迎风面和侧面部分的侧视图图像中清晰可见,而在背风剪切层中则没有。自相关分析表明,平均结构在侧视图中随着剪切层在侧面和迎风剪切层而不是背风剪切层上的发展而显着增长。端视图图像显示,隔垫从剪切层的背风部分起源,并在重新连接期间延伸到剪切层的迎风部分,重新​​连接后将尾流分为两个裂片,并导致较短的重新连接长度。端视图像中的结构在剪切层的上风部分最大,并且随着剪切层的发展而增大。这些结构在侧面朝着背风方向倾斜,表示在主剪切层中从上风向下风的周向流动。图像的出现表明,这种周向流动会导致尾流的背风侧积聚质量,从而促使隔膜的形成。

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