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Liquid spreading in trickle-bed reactors: Experiments and numerical simulations using Eulerian-Eulerian two-fluid approach

机译:滴流床反应器中的液体扩散:使用欧拉-欧拉二流体方法的实验和数值模拟

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Liquid spreading in gas-liquid co-current trickle-bed reactors is simulated using an Eulerian two-fluid CM approach. In order to propose a model that describes exhaustively all interaction forces acting on each fluid phase with an emphasis on dispersion mechanisms, a discussion on closure laws available in the literature is proposed. Liquid dispersion is recognized to result from two main mechanisms: capillary and mechanical. The proposed model is then implemented in two trickle-bed configurations matching with two experimental setups: in the first configuration, simulations of a 2D axisymmetric geometry are considered and the model is validated upon a new set of experimental data. Overall pressure drop and liquid distribution obtained from gamma-ray tomography are provided for different geometrical and operating conditions. In the second configuration, a 3D simulation is considered and the model is compared to experimental liquid flux patterns at the bed outlet. A sensitivity analysis of liquid spreading to bed geometrical characteristics (bed void-fraction and particles diameter) as well as to gas and liquid flow rates is proposed. The model is shown to achieve very good agreement with experimental data and to predict, accurately, tendencies of liquid spreading for various geometrical bed characteristics and/or phases flow rates. (C) 2015 Elsevier Ltd. All rights reserved.
机译:气-液并流滴流床反应器中的液体扩散是使用欧拉二流体CM方法进行模拟的。为了提出一个模型,该模型详尽地描述了作用在每个流体相上的所有相互作用力,并着重于分散机理,提出了对文献中可用的闭合定律的讨论。液体分散被认为是由两个主要机制引起的:毛细管和机械。然后,在与两个实验设置匹配的两个two流床配置中实施提出的模型:在第一个配置中,考虑了二维轴对称几何形状的仿真,并根据一组新的实验数据对模型进行了验证。从伽马射线断层扫描获得的总压降和液体分布可用于不同的几何和操作条件。在第二种配置中,考虑了3D模拟,并将模型与床出口处的实验液体通量模式进行了比较。提出了液体扩散对床几何特性(床空隙率和粒径)以及气体和液体流速的敏感性分析。该模型显示出与实验数据非常吻合,并准确预测了各种几何床特性和/或相流速下液体扩散的趋势。 (C)2015 Elsevier Ltd.保留所有权利。

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