首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Predicting the Agglomeration of Cohesive Particles in a Gas-Solid Flow and its Effect on the Solids Flow
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Predicting the Agglomeration of Cohesive Particles in a Gas-Solid Flow and its Effect on the Solids Flow

机译:APS -70TH流体动力学APS划分的年会 - 事件 - 预测气体固体流动中的内聚颗粒的凝聚及其对固体流动的影响

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In flows of cohesive particles, agglomerates will readily form and break. These agglomerates are expected to complicate how particles interact with the surrounding fluid in multiphase flows, and consequently how the solids flow. In this work, a dilute flow of particles driven by gas against gravity is studied. A continuum framework, composed of a population balance to predict the formation of agglomerates, and kinetic-theory-based balances, is used to predict the flow of particles. The closures utilized for the birth and death rates due to aggregation and breakage in the population balance take into account how the impact velocity (the granular temperature) affects the outcome of a collision as aggregation, rebound, or breakage. The agglomerate size distribution and solids velocity predicted by the continuum framework are compared to discrete element method (DEM) simulations, as well to experimental results of particles being entrained from the riser of a fluidized bed.
机译:在粘性颗粒的流动中,附聚物将容易地形成和破裂。预期这些附聚物将使颗粒与多相流动中的周围流体相互作用,并因此使固体流动的颗粒相互作用。在这项工作中,研究了由气体驱动的颗粒的稀释流动。由人口平衡组成的连续框架预测形成附聚物和基于动力学的余额,用于预测颗粒的流动。由于人口平衡中的聚集和破损而用于出生和死亡率的封闭记录考虑了冲击速度(颗粒温度)如何影响碰撞的结果作为聚集,反弹或破损。将连续框架预测的附聚尺寸分布和固体速度与离散元素法(DEM)模拟进行比较,以及从流化床的提升管夹带的颗粒的实验结果。

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