水平管道中三相气液固牛顿流体流动的CFD与实验方法

Rasel A. Sultan, Serag Alfarek, M. A. Rahman, S. Zendehboudi
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引用次数: 3

摘要

采用计算流体力学(CFD)方法,分析了三相气-固牛顿流体在水平管道中的三维流动。通过对实验数据的验证,研究旨在建立一个通用的可接受的仿真模型,可以进一步用于不同的应用案例。在我们的实验室建立了一个实验装置,以确定通过水平管道的段塞流(空气-水)。在这项工作中使用空气作为气体,水作为液体,二氧化硅作为固体颗粒。采用ANSYS Fluent 16.2版本进行仿真。采用带有雷诺应力模型(RSM)湍流闭合的欧拉多相模型来分析多相流体的流动。从实验中选取参数,对仿真结果进行验证。在与实验数据吻合较好后,进行灵敏度分析,通过水平流动观察三相流体的流动特性。压力梯度(单位长度压降)和原位浓度剖面作为主要参数。本文给出了三相流体在水平管道中流动的不同参数之间的明确关系。
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CFD and experimental approach on three phase gas-liquid-solid Newtonian fluid flow in horizontal pipes
This study analyses three dimensional fluid flow through horizontal pipelines with three-phase gasliquid-solid Newtonian fluids by Computational Fluid Dynamics (CFD) simulation. Validating the simulation with experimental data, the study aims to develop a versatile acceptable simulation model that can be used further for different applied cases. An experimental setup is developed in our laboratory to determine slug flow (air-water) through a horizontal pipeline. Air as gas, water as liquid and silica as solid particle is used in this work. ANSYS Fluent version 16.2 is employed to perform the simulation. The Eulerian multiphase model with the Reynolds Stress Model (RSM) turbulence closure is adopted to analyse multiphase fluid flow. Parameters are selected from experimental works to validate the simulation. After a good agreement with experimental data, sensitivity analysis is conducted to observe the three phase fluid flow characteristics through horizontal flow. Pressure gradient (pressure drop per unit length) and in situ concentration profile are used as primary parameters. This article provides a clear relationship between the different parameters of three-phase fluid flow through a horizontal pipeline.
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
24
审稿时长
33 weeks
期刊最新文献
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