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Coarse grid simulation of heterogeneous gas-solid flow in a CFB riser with polydisperse particles

机译:含多分散颗粒的CFB立管中气固两相非均质流的粗网格模拟

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Industrial fluidized beds usually show a wide particle size distribution which significantly affects the performance of gas-solid two-phase reactors. However, in traditional CFD models the particle size distribution is often represented by the Sauter mean diameter no matter whether the distribution is wide or narrow, which cannot reflect the effects of the particle size distribution on its operation. In this study, a simplified population balance model (PBM) is combined with two-fluid model (TFM) and the Energy Minimization Multi-Scale (EMMS) drag model for simulating heterogeneous gas-solid flow. The EMMS drag model is used to characterize the effects of meso-scale clustering structures on the inter-phase drag force. The current model is compared with the model with the assumption of single particle diameter, and is used to study the segregation and mixing characteristics in a riser. It was shown that (i) for the specific cases we studied, particle polydispersity has a negligible effect on the time-averaged axial solid concentration profiles but has a notable effect tin the particle velocity distributions, (ii) the experimental hydrodynamics as well as segregation and mixing patterns in a riser with a continuous particle size distribution can be predicted reasonably well by present combined TFM-EMMS-PBM method.
机译:工业流化床通常显示出较宽的粒度分布,这极大地影响了气固两相反应器的性能。但是,在传统的CFD模型中,无论粒度分布是宽还是窄,粒度分布通常都用索特平均直径表示,这无法反映粒度分布对其操作的影响。在这项研究中,简化的人口平衡模型(PBM)与两流体模型(TFM)和能量最小化多尺度(EMMS)阻力模型相结合,用于模拟非均质气固两相流。 EMMS阻力模型用于表征中尺度聚类结构对相间阻力的影响。将当前模型与假设单个粒径的模型进行比较,并用于研究立管中的偏析和混合特性。结果表明:(i)在我们研究的特定情况下,颗粒的多分散性对时间平均轴向固体浓度分布的影响可忽略不计,但对颗粒速度分布的影响却显着,(ii)实验的流体动力学和偏析用目前的TFM-EMMS-PBM组合方法可以很好地预测具有连续粒径分布的立管中的混合模式。

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