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Prediction of the entrained liquid fraction in vertical annular gas-liquid two-phase flow

机译:垂直环形气液两相流中夹带液体分数的预测

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The study considers the prediction of the entrained liquid fraction in adiabatic gas-liquid annular two-phase flow in vertical pipes. Nine empirical correlations have been tested against an experimental data bank drawn together in this study containing 1504 points for 8 different gas-liquid combinations and 19 different tube diameters from 5.00 mm to 57.1 mm. The correlation of Sawant, Ishii and Mishima and the one of Oliemans, Pots and Trompe were found to best reproduce the available data. A new correlating approach, derived from both physical intuition and dimensional analysis and capable of providing further physical insight into the liquid film atomization process, was proposed and worked better than any of the existing methods. This new correlation is based on the core flow Weber number that is also a controlling dimensionless group in determining the wall shear stress and associated frictional pressure gradient of annular flows.
机译:该研究考虑了垂直管中绝热气液环形两相流中夹带液体分数的预测。已针对本研究中汇总的实验数据库测试了九种经验相关性,其中包含针对8种不同的气液组合和19种不同的管直径(从5.00毫米到57.1毫米)的1504个点。发现Sawant,Ishii和Mishima以及Oliemans,Pots和Trompe之一的相关性可以最好地再现可用数据。提出了一种新的相关方法,该方法从物理直觉和尺寸分析中获得,并且能够提供对液膜雾化过程的进一步物理见解,并且比任何现有方法都更有效。这种新的相关性基于岩心流动韦伯数,该数在确定壁面剪应力和环形流动的相关摩擦压力梯度时也是控制无量纲的组。

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