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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Modified MFIX code to simulate hydrodynamics of gas-solids bubbling fluidized beds: A model of coupled kinetic theory of granular flow and discrete element method
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Modified MFIX code to simulate hydrodynamics of gas-solids bubbling fluidized beds: A model of coupled kinetic theory of granular flow and discrete element method

机译:修改了MFIX代码,用于模拟气体固体鼓泡流化床的流体动力学:粒状流动和离散元件耦合动力学理论模型

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摘要

The coefficient of restitution (CoR) of monodisperse particles used in the kinetic theory of granular flow (KTGF) is predicted using a coupled Euler solid phase-Euler gas phase-Lagrangian discrete particles (CEEL) approach in a bubbling fluidized bed (BFB). In the CEEL model, the CoR is obtained from dynamic information of Lagrangian discrete particles by means of discrete element method (DEM), and used to predict Euler solid phase properties in KTGF. The flow behavior of Euler solid phase, Euler gas phase and Lagrangian discrete particles is predicted in a gas and monodisperse particles BFB. The distributions of velocities and volume fractions using CEEL model are compared to numerical simulations using Euler-Euler two-fluid model (TFM) and Euler gas phase-Lagrangian discrete element method (CFD-DEM) in a BFB. The predicted distributions of granular temperature of Euler solid phase using KTGF are compared to Lagrangian discrete particles granular temperatures by means of DEM. The predicted distributions of velocities of Euler solid phase and volume fractions of Euler gas phase using CEEL model agree with experimental results. (C) 2019 Elsevier B.V. All rights reserved.
机译:使用在鼓泡流化床(BFB)中的耦合的欧拉固体相 - 欧拉气相拉格朗日离散颗粒(CEL)方法预测在粒状流动(KTGF)中使用的单分散颗粒的恢复系数(COR)。在CEL模型中,通过离散元素法(DEM)从拉格朗日离散粒子的动态信息获得COR,并用于预测KTGF中的欧拉固相特性。在气体和单分散颗粒BFB中预测欧拉固相,欧拉气相和拉格朗日离散颗粒的流动性能。使用CEL模型的速度和体积分数的分布与使用Euler-euler双流体模型(TFM)和BFB中的欧拉气相 - 拉格朗日分立元素(CFD-DEM)的数值模拟。通过DEM将预测使用KTGF的欧拉固相的粒状温度分布与拉格朗日离散颗粒颗粒温度进行比较。使用CEL模型的欧拉固相和欧拉气相体积分布的预测分布与实验结果一致。 (c)2019年Elsevier B.V.保留所有权利。

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