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STUDIES ON GAS-PHASE TURBULENCE MODIFICATION IN VERTICAL UPWARD ANNULAR FLOW

机译:垂直向上环形流动气相湍流改性的研究

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Experimental and numerical studies were made to investigate the effects of wavy interface on the liquid film to gas-phase turbulence modification of air-water annular flow in a vertically arranged round tube. By using the constant temperature hotwire anemometer, time-averaged axial velocity profiles, turbulence fluctuation profiles, energy spectrum and auto-correlation coefficient for fluctuation velocity component of gas-phase axial velocity were precisely measured. The liquid film thickness was also measured by using point-electrode resistivity probe to make clear the time-averaged liquid film thickness and wave height moving on the liquid film. Direct observations using high speed video camera were also added to make clear the dynamic behavior and propergating velocity of ripple or disturbance waves on liquid film flow. Numerical simulations for gas-phase turbulence in annular flow considering the effect of wavy interface of liquid film flow were also carried out. Liquid film flow was modeled to be the wall surface roughness of interfacial wave height moving with the interfacial velocity. The roughness and moving velocity of the modeled liquid film for computational condition were provided by the present experimental results. Time-averaged velocity profiles and fluctuation velocity profiles were calculated with standard κ-εmodel. Numerical results were generally consistent with the experimental results obtained in the present study.
机译:实验和数值研究作了调查波状界面上的液体膜在一个垂直布置的圆形管的影响,以空气 - 水环形流的气相湍流修饰。通过使用恒温热线风速计,时间平均轴向速度分布,湍流波动型材,能量谱和气相轴向速度的波动速度分量的自相关系数进行精确地测量。液膜厚度也可以通过使用点电极的电阻率探头,使清除时间平均液体薄膜的厚度和波形高度上移动的液体薄膜测量。还加入使用高速视频摄像机直接观察,使清除动态行为以及对液体薄膜流脉动或干扰波的propergating速度。在环状流为气相湍流数值模拟考虑液体薄膜流的波浪形界面的效果也进行了。液体薄膜流被建模为与界面速度界面波高度移动的壁的表面粗糙度。为了计算状态建模的液体膜的粗糙度和移动速度由本实验结果提供。时间平均的速度分布和脉动速度曲线用标准的κ-ε模型计算。计算结果总体上与本研究中获得的实验结果相吻合。

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