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Interfacial shear in adiabatic downward gas/liquid co-current annular flow in pipes

机译:管道中绝热向下的气/液并流环形流动的界面剪切

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摘要

Interfacial friction is one of the key variables for predicting annular two-phase flow behaviours in vertical pipes. In order to develop an improved correlation for interfacial friction factor in downward co-current annular flow, the pressure gradient, film thickness and film velocity data were generated from experiments carried out on Cranfield University's Serpent Rig, an air/water two-phase vertical flow loop of 101.6 mm internal diameter. The air and water superficial velocity ranges used are 1.42-28.87 and 0.1-1.0 m/s respectively. These correspond to Reynolds number values of 8400-187,000 and 11,000-113,000 respectively. The correlation takes into account the effect of pipe diameter by using the interfacial shear data together with dimensionless liquid film thicknesses related to different pipe sizes ranging from 10 to 101.6 mm, including those from published sources by numerous investigators. It is shown that the predictions of this new correlation outperform those from previously reported studies. (C) 2015 Elsevier Inc. All rights reserved.
机译:界面摩擦是预测垂直管道中环形两相流动特性的关键变量之一。为了建立向下并流环形流动中界面摩擦系数的改进相关性,通过在克兰菲尔德大学的蛇形钻机(空气/水两相垂直流)上进行的实验生成了压力梯度,膜厚和膜速度数据环的内径为101.6毫米。所使用的空气和水的表面速度范围分别为1.42-28.87和0.1-1.0 m / s。这些分别对应于雷诺数值8400-187,000和11,000-113,000。通过使用界面剪切数据以及与10至101.6 mm范围内的不同管径相关的无因次液膜厚度(包括众多研究人员从公开来源获得的数据),相关性考虑了管径的影响。结果表明,这种新的相关性的预测优于先前报道的研究。 (C)2015 Elsevier Inc.保留所有权利。

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