Numerical Studies On the Oil Film Thickness in the Case of Stratified Flow with Different Oil-Water Flow Combinations Through Sudden Contraction Tube

IF 1.8 3区 工程技术 Q3 ENGINEERING, MECHANICAL
Mushtaque Momin, Soham Mahindar, Faisal Rahmani, Mukesh Sharma
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Abstract

Abstract Most of the oil transportation industries deal with liquid-liquid flow considering the adiabatic situation. In such applications, film thickness measurement plays a very significant role in understanding the flow characteristics. The distribution of phases for efficient wall treatment and to understand the phase distribution, measurement of film thickness is very important. Among different flow patterns, stratified flow is most common for low and medium viscous oil-water flow. At lower oil velocities, stratified flow is observed downstream of singularity whereas in the upstream section, stratified flow is observed for low to medium oil velocities and high-water superficial velocity. Variation of oil film thickness for stratified flow has been analyzed in the present study. Results show that oil film thickness decreases with the increase in the superficial velocity of water (Us-Water) for a constant oil superficial velocity (Us-Oil). With the increase in the volume fraction of one phase, the film thickness of that phase increases. As Us-Oil increases, the film thickness of oil also increases for a constant Us-Water. Oil film thickness is directly proportional to the viscosity of oils. This means, the more the viscosity of the oil, the more will be the oil film thickness.
突然收缩管中不同油水流组合分层流的油膜厚度数值研究
大多数石油运输行业在处理液-液流动时都考虑到绝热情况。在这种应用中,膜厚测量在了解流动特性方面起着非常重要的作用。相的分布对于有效的壁处理和了解相的分布,膜厚的测量是非常重要的。在不同的流型中,分层流在中低粘度油水流动中最为常见。在较低油速处,奇点下游出现分层流动,而在上游段,中低油速和高水表速处出现分层流动。本文分析了分层流中油膜厚度的变化规律。结果表明,在一定的油表流速下,油膜厚度随水表流速的增大而减小;随着某一相体积分数的增大,该相的膜厚增大。随着Us-Oil的增加,在Us-Water恒定的情况下,油膜厚度也会增加。油膜厚度与油的粘度成正比。这意味着,油的粘度越大,油膜的厚度也就越大。
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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来源期刊
CiteScore
4.60
自引率
10.00%
发文量
165
审稿时长
5.0 months
期刊介绍: Multiphase flows; Pumps; Aerodynamics; Boundary layers; Bubbly flows; Cavitation; Compressible flows; Convective heat/mass transfer as it is affected by fluid flow; Duct and pipe flows; Free shear layers; Flows in biological systems; Fluid-structure interaction; Fluid transients and wave motion; Jets; Naval hydrodynamics; Sprays; Stability and transition; Turbulence wakes microfluidics and other fundamental/applied fluid mechanical phenomena and processes
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