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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Single-pixel resolution velocity/convection velocity field of a supersonic jet measured by particle/schlieren image velocimetry
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Single-pixel resolution velocity/convection velocity field of a supersonic jet measured by particle/schlieren image velocimetry

机译:通过粒子/ Schlieren图像测速测量的超音速喷射的单像素分辨率/对流速度场

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摘要

A single-pixel ensemble correlation method was applied to the schlieren and shadowgraph image velocimetry (SIV) and a velocimetry method that can obtain the convection velocity distribution of high spatial resolution without an expensive pulsed laser system being achieved for a laboratory-scale supersonic jet flow. A cold axisymmetric supersonic jet was employed, and the basic characteristics of the convection velocity fields are measured by SIV as well as those of the velocity fields by the particle image velocimetry (PIV) in the single-pixel resolution. The Mach number of a supersonic jet was 2.0, and the Reynolds number based on the diameter of the nozzle exit was 1.0 x 10(6). A pulsed light-emitting-diode light source was used for SIV as a less expensive light source. The single-pixel ensemble correlation method applied to PIV clearly visualizes the potential core and the shear layer development with the high spatial resolution. The axial velocity of SIV at the jet centerline is approximately 0.7-0.8 times of that of PIV which seems to relate to the convection velocity. The velocity calculated from the shadowgraph images agrees well with the convection velocity estimated from the Mach wave emission angle. The comparison between the scale of the visualized turbulent structure and the length scale of large eddies implied that the quantitative discussion of the SIV measurement requires careful consideration of the scale of the visualized turbulent structure on the SIV image.
机译:将单像素整合相关方法应用于Schlieren和影子图图像速度(SIV)和测速方法,该测速方法可以获得高空间分辨率的对流速度分布,而没有为实验室级超声波喷射流动实现昂贵的脉冲激光系统。采用冷轴对称超音速射流,并通过SIV以及单像素分辨率的粒子图像速度(PIV)来测量对流速度场的基本特征。超音速喷射的马赫数为2.0,基于喷嘴出口直径的雷诺数为1.0×10(6)。脉冲发光二极管光源用于SIV作为较便宜的光源。应用于PIV的单像素整合相关方法清楚地通过高空间分辨率明显地可视化潜在的核心和剪切层开发。喷射中心线的SIV的轴向速度约为PIV的0.7-0.8倍,似乎涉及对流速度。从影子图像图像计算的速度与来自马赫波发射角度估计的对流速度很好。可视化湍流结构的比例与大漩涡的长度尺度之间的比较暗示了SIV测量的定量讨论需要仔细考虑SIV图像上的可视化湍流结构的比例。

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