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Influence of the Granular Temperature in the Numerical Simulation of Gas-Solid Flow in a Bubbling Fluidized Bed

机译:颗粒温度对鼓泡流化床气固两相流数值模拟的影响

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This article describes a mathematical model and numerical simulation of gas-solid flow in a bubbling fluidized bed (BFB), where the the two-fluid Eulerian-Eulerian model was used and the solid phase stress tensor was modeled considering both the friction between particles and the kinetic theory of granular flows. The code MFIX (Multiphase Flow with Interphase exchanges) developed by NETL (National Energy Technology Laboratory, U. S. Department of Energy) was used for numerical simulations, and the results were obtained through computing the granular temperature by using a partial differential equation (PDE) or an algebraic expression. More realistic results were obtained when a PDE with boundary conditions of the partial slip was used. However, for computing the granular temperature in the case of fine grids, it is recommended to use the algebraic equation because it will save computational effort in simulations. Variation in the diameter of the particles (Group B and Group A/B) was also analyzed, and, consequently, it was observed that in future analysis a term for capturing the influence of cohesive forces should be added for particles of Group A/B. This study has revealed that a smooth transition between the viscous regime and the plastic regime is necessary for simulating a hydrodynamic bubbling fluidized bed.
机译:本文描述了鼓泡流化床(BFB)中气固两相流动的数学模型和数值模拟,其中使用了两种流体的Eulerian-Eulerian模型,并考虑了颗粒之间的摩擦力和固相应力张量进行了建模。颗粒流动的动力学理论。由NETL(美国能源部国家能源技术实验室)开发的代码MFIX(具有相间交换的多相流)用于数值模拟,结果是通过使用偏微分方程(PDE)或通过计算颗粒温度获得的。代数表达式。当使用带有部分滑移边界条件的PDE时,可以获得更现实的结果。但是,对于细网格情况下的颗粒温度计算,建议使用代数方程式,因为这样可以节省模拟计算的工作量。还分析了颗粒(B组和A / B组)直径的变化,因此,可以观察到,在将来的分析中,应为A / B组颗粒添加一个捕获内聚力影响的术语。这项研究表明,模拟流体动力鼓泡流化床必须在粘性状态和塑性状态之间进行平稳过渡。

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