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Optical density and velocity measurements in cryogenic gas flows

机译:低温气流中的光密度和速度测量

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This paper presents the application of optical measurement techniques in dense-gas flows in a heavy-gas channel to determine planar two-component (2C) velocity profiles and two-dimensional (2D) temperature profiles. The experimental approach is rather new in this area, and represents progress compared with the traditional techniques based on thermocouple measurements. The dense-gas flows are generated by the evaporation of liquid nitrogen. The optical measurement of both the velocity and density profiles is accomplished by the implementation of particle image velocimetry (PIV) and background-oriented schlieren (BOS) systems. Supplemental thermocouple measurements are used as independent calibrations to derive temperatures from the density data measured with the BOS system. The results obtained with both systems are used to quantify the dilution behavior of the propagating cloud through a global entrainment parameter beta. Its value agrees well with the results obtained by earlier studies.
机译:本文介绍了光学测量技术在重气通道中的稠密气流中的应用,以确定平面两分量(2C)速度分布和二维(2D)温度分布。实验方法在该领域是相当新的,并且与基于热电偶测量的传统技术相比代表了进步。稠密的气流是通过液氮的蒸发产生的。速度和密度分布图的光学测量是通过实施粒子图像测速(PIV)和面向背景的schlieren(BOS)系统来实现的。补充的热电偶测量值用作独立的校准,以从BOS系统测得的密度数据中得出温度。使用这两个系统获得的结果均用于通过全局夹带参数beta来量化传播云的稀释行为。它的价值与早期研究获得的结果非常吻合。

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