Simulation of Two Phase Flow Mixing Co – Current in T Junction Using Comsol

Q4 Chemical Engineering
W. A. Noori, D. A. H. Al-Timimi, B. J. Kadhim
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引用次数: 0

Abstract

The analysis, behavior of two-phase flow incompressible fluid in T-juction is done by using "A Computational Fluid Dynamic (CFD) model" that application division of different in industries. The level set method was based in “Finite Element method”. In our search the behavior of two phase flow (oil and water) was studed. The two-phase flow is taken to simulate by using comsol software 4.3. The multivariable was studying such as velocity distribution, share rate, pressure and the fraction of volume at various times.  The velocity was employed at the inlet (0.2633, 0.1316, 0.0547 and 0.0283 m/s) for water and (0.1316 m/s) for oil, over and above the pressure set at outlet as a boundary condition. It was observed through the program that the shear rate increased in the mixing area and begins to decrease after the mixing area, for the pressure suddenly decreases in the mixing area and after this area begins to decrease linearly with the length of the tube.
用Comsol模拟T型结两相流混流共电流
采用不同行业应用划分的“计算流体动力学(CFD)模型”对t型结中两相流不可压缩流体的行为进行了分析。水平集法的基础是“有限元法”。在我们的搜索中,研究了两相流(油和水)的行为。采用comsol软件4.3对两相流进行模拟。研究了不同时刻的流速分布、占比、压力、体积分数等多变量。水的入口速度分别为0.2633、0.1316、0.0547和0.0283 m/s,油的入口速度分别为0.1316 m/s,均高于出口压力作为边界条件。通过程序可以观察到,剪切速率在混合区增大,在混合区之后开始减小,这是由于混合区压力突然减小,并且在混合区之后开始随管长线性减小。
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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CiteScore
1.20
自引率
0.00%
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0
审稿时长
8 weeks
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