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Prediction of the onset of flooding in an inclined tube at cryogenic temperatures

机译:预测低温下倾斜管中溢流的开始

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摘要

Prediction of the onset of flooding in the cryogenic temperatures still primarily relies on the empiricism and semi-empirical correlations obtained from the room temperature fluids due to the lack of cryogenic experimental data. In order to probe the mechanism of flooding for cryogenic fluids, this study aims to predict the onset of flooding of liquid nitrogen and its vapor in an inclined tube. A theoretical model for the critical relative velocity of the interfacial instability was derived based on the linear stability analysis, in which the pressure disturbances in both directions are taken into account. The model solution was extended to obtain a correlation to predict the onset of flooding by assuming the disturbed wave length proportional to the unperturbed liquid film thickness. A visualization experimental facility for flooding using liquid nitrogen and its vapor was built to validate the feasibility of the correlation. Some distinctive phenomena for cryogenic flooding, such as mist flow and the much lower flooding velocities, were observed, which are different from the room temperature fluids. The comparisons of flooding velocity between the calculations and the experiments show that the proposed correlation agrees well with the data for both room-temperature and cryogenics.
机译:由于缺乏低温实验数据,对低温温度下的洪水开始的预测仍然主要依赖于从室温流体中获得的经验和半经验相关性。为了探究低温流体驱油的机理,本研究旨在预测斜管中液氮及其蒸气驱油的开始时间。基于线性稳定性分析,推导了界面不稳定性临界相对速度的理论模型,其中考虑了两个方向的压力扰动。通过假设干扰波长与未扰动的液膜厚度成正比,对模型解进行了扩展,以获得了一种相关性,以预测溢流的发生。建立了使用液氮及其蒸气驱油的可视化实验设备,以验证相关性的可行性。观察到一些低温驱油的独特现象,例如雾流和较低的驱油速度,这与室温流体不同。计算和实验之间的驱替速度的比较表明,所提出的相关性与室温和低温的数据非常吻合。

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