Kerosene-Water Multiphase Flow in Vertical and Inclined Pipes

F. Hamad, N. Sheikh, Muzaffar Ali
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Abstract

This chapter presents the volume fraction distribution of kerosene-water two-phase flow in vertical and inclined pipes. The study of liquid-liquid two-phase flow is very significant to oil industry and many other processes in industry where two liquids are mixed and flow together. Pitot tube and optical probes are used for the measurement of velocity of water and volume fraction. The experimental measurements of the local parameters demonstrate that the single-phase and two-phase flows reached the fully developed axisymmetric conditions at L/D ≥ 48 ( L , pipe length; D , pipe diameter). The results also showed the severe asymmetry distributions of the volume fraction at the entrance region ( L/D = 1) downstream the bend and in the inclined pipe. The comparison of volume fraction profiles with void fraction profiles indicated a significant difference in their shapes. The results also showed that the kerosene accumulated at the upper wall of the inclined pipe and the distribution improved by increasing the volumetric quality.
垂直和倾斜管道中的煤油-水多相流
介绍了垂直和倾斜管道中煤油-水两相流的体积分数分布。液-液两相流的研究对石油工业和许多其他两种液体混合在一起流动的工业过程具有重要意义。用皮托管和光学探头测量水的流速和体积分数。局部参数的实验测量表明,当L/D≥48 (L,管长)时,单相和两相流动达到充分发展的轴对称条件;D,管径)。结果还表明,弯管下游和斜管入口区域(L/D = 1)的体积分数分布严重不对称。体积分数曲线与孔隙分数曲线的比较表明它们的形状有显著差异。结果还表明,煤油在斜管上壁积聚,并随着体积质量的提高而改善其分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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