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Prediction of pressure drop and liquid holdup in trickle bed reactor using relative permeability concept in CFD

机译:利用CFD中的相对渗透率概念预测滴流床反应器中的压降和持液量

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摘要

A Computational Fluid Dynamics (CFD) model based on porous media concept is presented to model the hydrodynamics of two-phase flow in trickle-bed reactors (TBRs). The aim of this study is to develop a comprehensive CFD based model for predicting hydrodynamic parameters in trickle-bed reactors under cold-flow conditions. The two-phase Eulerian model describing the flow domain as a porous region has been used to simulate the macroscale multiphase flow in trickle beds operating under trickle flow regime using FLUENT 6.2 software. The closure terms for phase interactions have been addressed by adopting the relative permeability concept [Suez, A.E., Carbonell, R.G., 1985. Hydrodynamic parameters for gas-liquid cocurrent flow in packed beds. A.I.Ch.E. Journal 31, 52-62]. The model has been evaluated by comparing predictions with the data (collected under a varied set of laboratory conditions) available in the open literature. It is shown that while being relatively simple in structure, this CFD model is flexible and predictive for a large body of experimental data presented in the open literature. (C) 2007 Elsevier Ltd. All rights reserved.
机译:提出了一种基于多孔介质概念的计算流体动力学(CFD)模型,以对滴流床反应器(TBR)中的两相流流体力学进行建模。这项研究的目的是建立一个基于CFD的综合模型,以预测在冷流条件下滴流床反应器中的流体力学参数。使用FLUENT 6.2软件,将流域描述为多孔区域的两相欧拉模型已用于模拟在trick流条件下运行的trick流床中的宏观多相流。通过采用相对渗透率概念[Suez,A.E.,Carbonell,R.G.,1985。填充床中气-液并流的流体动力学参数]已经解决了相相互作用的封闭项。 A.I.Ch.E.期刊31,52-62]。通过将预测与公开文献中提供的数据(在一组不同的实验室条件下收集)进行比较,对模型进行了评估。结果表明,尽管CFD模型的结构相对简单,但它对于公开文献中提供的大量实验数据具有灵活性和预测性。 (C)2007 Elsevier Ltd.保留所有权利。

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