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Computational Fluid Dynamics–Discrete Element Method (CFD-DEM)Study of Mass-Transfer Mechanisms in Riser Flow

机译:计算流体动力学离散元方法(CFD-DEM)提升管中传质机理的研究

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摘要

We report a computational fluid dynamics–discrete element method (CFD-DEM) simulation study on the interplay between mass transfer and a heterogeneous catalyzed chemical reaction in cocurrent gas-particle flows as encountered in risers. Slip velocity, axial gas dispersion, gas bypassing, and particle mixing phenomena have been evaluated under riser flow conditions to study the complex system behavior in detail. The most important factors are found to be directly related to particle cluster formation. Low air-to-solids flux ratios lead to more heterogeneous systems, where the cluster formation is more pronounced and mass transfer more influenced. Falling clusters can be partially circumvented by the gas phase, which therefore does not fully interact with the cluster particles, leading to poor gas–solid contact efficiencies. Cluster gas–solid contact efficiencies are quantified at several gas superficial velocities, reaction rates, and dilution factors in order to gain more insight regarding the influence of clustering phenomena on the performance of riser reactors.
机译:我们报告了计算流体动力学离散元方法(CFD-DEM)模拟研究,该研究是在提升管中遇到的并流气体-颗粒流中传质与非均相催化化学反应之间的相互作用。滑移速度,轴向气体弥散,气体旁路和颗粒混合现象已在提升管流动条件下进行了评估,以详细研究复杂的系统行为。发现最重要的因素与颗粒簇的形成直接相关。低的气固通量比导致系统的异质性更强,其中团簇的形成更加明显,传质受到的影响更大。气相可以部分规避掉落的团簇,因此气相无法与团簇颗粒充分相互作用,从而导致气固接触效率低下。集束气-固接触效率在几种气体表观速度,反应速率和稀释系数下进行量化,以便获得更多有关集簇现象对立管反应器性能影响的见解。

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