首页> 外文期刊>The Canadian Journal of Chemical Engineering >EXPERIMENTAL STUDY OF KEROSENE-WATER TWO-PHASE FLOW IN A VERTICAL PIPE USING HOT-FILM AND DUAL OPTICAL PROBES
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EXPERIMENTAL STUDY OF KEROSENE-WATER TWO-PHASE FLOW IN A VERTICAL PIPE USING HOT-FILM AND DUAL OPTICAL PROBES

机译:热膜和双光学探针对垂直管道中煤油-水两相流的实验研究

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摘要

The local parameters for kerosene-water upward flow are measured in a vertical pipe of 77.8 mm inner diameter at 4200 mm from the inlet (L/D=54) using hot-film and dual optical probes. The effect of superficial water velocity and volumetric quality on radial distribution of two-phase flow parameters is investigated. The results show the following: (i) the profiles of volume fraction and drop frequency are very similar, and increasing superficial water velocity at low volumetric qualities (<18.6%) change the profile from a convex shape with peak at the pipe centreline to uniform then to concave shape with peak near the wall; (ii) the profiles of drop cut chord change from a parabolic shape with peak at centreline for low superficial water velocities to a flat shape at higher superficial water velocity, and the area-averaged drop diameter decreases with higher superficial water velocities for all volumetric qualities; (iii) velocity profiles for both phases have shapes similar to single phase flow, flatter at higher values of superficial water velocity and volumetric quality and centreline peaked at low superficial water velocities and volumetric qualities; (iv) the slip velocity decreases with radial distance having a peak at centreline and zero values near the wall; (v) introducing kerosene drops into single phase water flow results in a sharp increase in turbulent intensity, particularly at low water velocity, and the difference between the single phase and two-phase flow turbulence intensities decreases with higher superficial water velocities and (vi) the results show that interfacial area concentration increased with higher volumetric quality and higher number of bubbles thereby increases the contact area between the two phases.
机译:使用热膜和双光学探头,在距入口4200 mm(L / D = 54),内径为77.8 mm的垂直管中测量煤油-水向上流动的局部参数。研究了表层水速度和体积质量对两相流参数径向分布的影响。结果表明:(i)体积分数和下降频率的曲线非常相似,并且在低体积质量(<18.6%)下增加表层水流速,使曲线形状从具有管道中心线峰值的凸形变为均匀。然后变成凹形,在壁附近有峰。 (ii)下降切弦的轮廓从抛物线的形状从中心线的峰值变为低表层水速,在较高的表层水速下变为扁平状,并且在所有体积质量下,面积平均的液滴直径都随表层水速的增加而减小; (iii)两相的速度曲线具有类似于单相流的形状,在较高的表层水速度和体积质量值下较平,在较低的表层水速度和体积质量下达到中心线峰值; (iv)滑移速度随着径向距离的减小而减小,该径向距离在中心线处为峰值,而在壁附近为零; (v)将煤油滴引入单相水流会导致湍流强度急剧增加,尤其是在低水速下,并且随着较高的表层水速,单相和两相流湍流强度之间的差异会减小,并且(vi)结果表明,界面面积浓度随较高的体积质量和较高的气泡数而增加,从而增加了两相之间的接触面积。

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