CFD-DEM公司
机械
计算流体力学
离散元法
粒子(生态学)
材料科学
剪应力
欧拉路径
双流体模型
流态化
边值问题
流化床
物理
地质学
热力学
海洋学
量子力学
拉格朗日
数学物理
作者
Dorian Dupuy,Renaud Ansart,Olivier Simonin
摘要
In two-fluid simulations of gas–solid fluidised beds, the gaseous phase and the particulate phase are modelled as continuous media. The stress exerted by the particulate medium on the container walls should be modelled to predict accurately the bed dynamics. This paper addresses the modelling of sliding particle–wall contacts in two-fluid simulations, based on reference simulations coupling computational fluid dynamics with the discrete element method (CFD-DEM), in which the individual movement of the particles is tracked. The analysis of the CFD-DEM highlights the complex near-wall behaviour of the particles, which is not reproduced by two-fluid models. Nevertheless, the particle–wall shear stress can be expressed based on the total granular pressure within the first cell off the wall. The model is validated for the two-fluid simulation of a bubbling gas–solid fluidised bed of olefin particles in the dense-fluidisation regime.
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