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Temperature and Size Measurements of Cryogenic Spray Droplets with Global Rainbow Refractometry

机译:用全局彩虹折射仪测量低温喷雾液滴的温度和尺寸

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摘要

In this study, global rainbow refractometry (GRR) is applied to investigate cryogenic spray droplets (i.e., liquid nitrogen, liquid oxygen, and liquid methane). The refractive index and droplet size probability distribution are retrieved from the global rainbow pattern with inversion methods, using the complex angular momentum (CAM) scattering theory. Results show that temperature retrieved from the rainbow signal agrees well with temperature measured by the thermocouple, with discrepancy less than 7.5% for test sprays at temperatures ranging from 80 to 110 K. The temperature measurement uncertainty of GRR is estimated to lie within +/- 1.0 K. The temperature recorded by the thermocouple is corrected by taking account of the heat transfer effect, which causes a temperature deviation of about 10-2 K. With Saengkaew's methods, the deduced droplet size distribution shows bimodal or even multimodal characteristics in the measurement volume. The present work demonstrates the application of the GRR technique to the cryogenic sprays.
机译:在这项研究中,全球彩虹折射仪(GRR)用于研究低温喷雾液滴(即液氮,液氧和液化甲烷)。使用复角动量(CAM)散射理论,通过反演方法从全局彩虹图案中检索折射率和液滴大小概率分布。结果表明,从彩虹信号中检索到的温度与热电偶测得的温度非常吻合,在80至110 K的温度范围内,测试喷雾的差异小于7.5%。GRR的温度测量不确定度估计在+/-范围内1.0K。通过考虑热传递效应来校正热电偶记录的温度,这会导致大约10-2 K的温度偏差。使用Saengkaew的方法,推导的液滴尺寸分布在测量中显示出双峰甚至多峰特征体积。本工作证明了GRR技术在低温喷雾剂中的应用。

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  • 来源
    《Journal of propulsion and power》 |2019年第2期|359-368|共10页
  • 作者单位

    Tech Univ Munich, D-85748 Bavaria, Germany|Inst Turbomachinery & Flight Prop, Garching, Germany;

    Tech Univ Munich, Dept Elect & Comp Engn, D-80333 Bavaria, Germany;

    Tech Univ Munich, D-85748 Bavaria, Germany|Inst Turbomachinery & Flight Prop, Garching, Germany;

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