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首页> 外文期刊>Journal of nuclear engineering and radiation science >Correlation of Interfacial Friction Coefficients for Predicting Countercurrent Flow Limitation at a Sharp-Edged Lower End of Vertical Pipes
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Correlation of Interfacial Friction Coefficients for Predicting Countercurrent Flow Limitation at a Sharp-Edged Lower End of Vertical Pipes

机译:界面摩擦系数预测垂直管锋刃下端的逆流流动限制的相关性

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摘要

One-region (1-R) sensitivity computations with the annular-flow model were carried out for countercurrent flow limitation (CCFL) at a sharp-edged lower end in vertical pipes to generalize the prediction method for CCFL there (i.e., predicting effects of diameters and fluid properties on CCFL characteristics). In our previous study, we selected a correlation of interfacial friction coefficients, f _( i ) , with a function of average void fraction which gave a good prediction of the trend for air–water CCFL data, and we modified it to get good agreement with steam–water CCFL data under atmospheric pressure conditions, but it failed to predict CCFL reasonably at high pressure conditions. We recently found a Russian report on CCFL data at high pressure conditions, by which we improved the f _( i ) correlation using the dimensionless diameter and the viscosity ratio or density ratio of gas and liquid phases to get good agreement with CCFL data at high pressures. The improved f _( i ) correlation with the viscosity ratio and the improved f _( i ) correlation with the density ratio gave similar computed results, but the number of adjustment functions was one for the density ratio and two for the viscosity ratio (i.e., minimum value of two functions).
机译:具有环形流模型的一个区域(1-R)灵敏度计算对于垂直管道的尖锐边缘下端的逆流流动限制(CCFL)进行,以推广CCFL的预测方法(即预测效果直径和CCFL特性的流体性质)。在我们以前的研究中,我们选择了界面摩擦系数F _(i)的相关性,具有平均空隙率的函数,这对空气水中CCFL数据的趋势进行了良好的预测,我们修改了它以获得良好的一致性随着大气压条件下的蒸汽水CCFL数据,但它未能在高压条件下预测CCFL。我们最近在高压条件下发现了关于CCFL数据的俄语报告,通过其改进了使用无量纲直径和气体阶段的粘度比或液相的粘度比或密度比在高温下与CCFL数据进行了良好的协议压力。与粘度比和改进的F _(i)与密度比相关的改进的f _(i)相关性具有相似的计算结果,但是调节函数的数量是密度比,两个用于粘度比(即,两个函数的最小值)。

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