A two-phase damping model on tube bundles subjected to two-phase cross-flow

被引:0
作者
Woo Gun Sim
N. W. Mureithi
机构
[1] Hannam University,Department of Mechanical Engineering
[2] Ecole Polytechnique,Department of Mechanical Engineering
来源
Journal of Mechanical Science and Technology | 2014年 / 28卷
关键词
Bubbly flow; Drag coefficient; Drift flux model; Euler number; Homogeneous model; Intermittent flow; Momentum flux of two-phase flow; Two-phase damping ratio; Two-phase friction multiplier; Void fraction;
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中图分类号
学科分类号
摘要
An analytical model is developed to estimate the two-phase damping ratio for upward cross-flow through horizontal tube bundles. The present model is formulated based on Feenstra’s model (2000) for void fraction and various models (homogeneous, Levy, Martinelli-Nelson and Marchaterre) for two-phase friction multiplier. The analytical results of drag coefficient on a cylinder and two-phase Euler number are compared with the experimental results by Sim-Mureithi (2013). The correlation factor between frictional pressure drop and the hydraulic drag coefficient is evaluated by considering the experimental results. The two-phase damping ratios given by the analytical model are compared with existing experimental results. The model based on Marchaterre’s model is suitable for air-water mixture, whereas the Martinelli-Nelson’s model is suitable for steam-water and Freon mixtures. The two-phase damping ratio is independent of pitch mass flux for air-water mixture, but is more or less influenced by the mass flux for steam-water/Freon (134) mixtures. The two-phase damping ratios given by the present model agree well with experimental results for a wide range of pitch mass ratio, quality, and p/d ratios.
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页码:553 / 563
页数:10
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