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Characterization of Thermal Striping in Liquid Sodium With Optical Fiber Sensors

机译:光纤传感器液体钠热条纹的表征

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This study characterized the magnitude, spatial profile, and frequency spectrum of thermal striping at a junction using a novel sodium-deployable optical fiber temperature sensor. Additionally, this study revealed for the first time the capability of performing cross correlation velocimetry (CCV) with an optical fiber to acquire fluid flow rates in a pipe. Optical fibers were encapsulated in stainless steel capillary tubes with an inert cover gas for high-temperature sodium deployment. Plots of temperature oscillation range as a function of two-dimensional space highlighted locations prone to mechanical failure for particular flow momentum ratios. The effect of inlet sodium temperature differential and bulk flow rate on thermal striping behavior was also explored. The power spectral density (PSD) revealed that the striping temperature oscillations occurred at frequencies ranging from 0.1 to 6?Hz. Finally, the bulk flow rate of liquid sodium was calculated from thermal striping's periodic temperature oscillations using cross correlation velocimetry for flow rates of 0.25–5.74?L/min.
机译:该研究表征了使用新颖的可展开光纤温度传感器的结合在结处的幅度,空间轮廓和频谱。另外,本研究揭示了第一次用光纤进行递交递质速度(CCV)的能力,以在管道中获取流体流速。光纤用惰性覆盖气体包封在不锈钢毛细管中,用于高温钠展开。温度振荡范围的曲线图作为二维空间的函数,突出显示的位置容易出于特定流动动量比的机械故障。还探讨了入口钠温差和散装流量对热条纹行为的影响。功率谱密度(PSD)显示,条带温度振荡发生在0.1至6ΩHz的频率下。最后,使用横相关速度的热条纹的周期性振荡计算液体钠的散装流速,其流量速率为0.25-5.74Ω·1 / min。

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