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Multi-Schlieren CT Measurements of Supersonic Microjets from Circular and Square Micro Nozzles

机译:圆形和方形微喷嘴的超音速微型喷嘴的多谢里伦CT测量

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摘要

Instantaneous three-dimensional (3D) density distributions of a shock-cell structure of perfectly and imperfectly expanded supersonic microjets escaping into an ambient space are measured. For the 3D observation of supersonic microjets, non-scanning 3D computerized tomography (CT) technique using a 20-directional quantitative schlieren optical system with flashlight source is employed for simultaneous schlieren photography. The 3D density distributions data of the microjets are obtained by 3D-CT reconstruction of the projection’s images using maximum likelihood-expectation maximization. Axisymmetric convergent-divergent (Laval) circular and square micro nozzles with operating nozzle pressure ratio 5.0, 4.5, 4.0, 3.67, and 3.5 have been studied. This study examines perfectly expanded, overexpanded, and underexpanded supersonic microjets issued from micro nozzles with fully expanded jet Mach numbers Mj ranging from 1.47 - 1.71, where the design Mach number is Md = 1.5. A complex phenomenon for free square microjets called axis switching is clearly observed with two types “upright” and “diagonal” of “cross-shaped”. The initial axis-switching is 45° within the first shock-cell range. In addition, from the symmetry and diagonal views of square microjets for the first shock-cells, two different patterns of shock waves are viewed. The shock-cell spacing and supersonic core length for all nozzle pressure ratios are investigated and reported.
机译:测量瞬时三维(3D)密度分布的冲击电池结构的完美和不完全扩大的超声波微目亡物集逃逸到环境空间中。对于超音速微目的3D观察,使用具有用于手电筒源的20方向定量Schlieren光学系统的非扫描3D计算机断层扫描(CT)技术用于同时Schlieren Photography。通过使用最大似然预期的最大化,通过投影图像的3D-CT重建获得微进射的3D密度分布数据。轴对称会聚 - 发散(Laval)具有操作喷嘴压力比5.0,4.5,4.0,3.67和3.5的圆形和方形微喷嘴。本研究审查了从微观喷嘴发出的完全扩展,过度的超声波微目型,通过1.47 - 1.71的完全扩展的喷射马赫号MJ,其中设计马赫数为MD = 1.5。用两种“垂直”和“交叉形”的“直立”和“对角线”清楚地观察到被称为轴切换的自由方形微进拍的复杂现象。在第一冲击电池范围内,初始轴切换是45°。另外,从方形微射精的对称和对角视图用于第一冲击电池,观察了两种不同的冲击波图案。研究和报道了所有喷嘴压力比的冲击电池间隔和超音速芯长度。

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