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首页> 外文期刊>Optics and Spectroscopy >Reconstruction of the Structural Characteristic of the Refractive Index and Average Air Density in a Shock Wave Arising in a Supersonic Flow Past Obstacles from Optical Measurements
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Reconstruction of the Structural Characteristic of the Refractive Index and Average Air Density in a Shock Wave Arising in a Supersonic Flow Past Obstacles from Optical Measurements

机译:超声测量中越过障碍物引起的冲击波中折射率和平均空气密度的结构特征的重建

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摘要

Average and fluctuation parameters of a shock wave that arises in a supersonic air flow around bodies are studied based on numerical simulation using FLUENT 6.0 models of computational fluid dynamics. A series of closed numerical experiments show that distributions of the structural characteristic of the refractive index and average air density in the region of shock wave localization can be reconstructed from measurements of parameters of the laser beam intersecting the flow.
机译:基于使用流体动力学计算的FLUENT 6.0模型进行的数值模拟,研究了超声速气流围绕物体产生的冲击波的平均值和波动参数。一系列封闭的数值实验表明,可以通过测量与流相交的激光束的参数来重建冲击波定位区域中折射率和平均空气密度的结构特征分布。

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