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CFD study of droplet atomisation using a binary nozzle in fluidised bed coating

机译:在流化床涂层中使用双喷嘴对液滴雾化进行CFD研究

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An Eulerian-Lagrangian computational fluid dynamics (CFD) model was built to describe two-fluid atomisation in a tapered fluidised bed coater using the air-blast/air-assisted atomiser model. Atomisation was modelled both with and without the inclusion of the solid phase (i.e. gas-liquid and gas-solid-liquid multiphase modelling). In addition, a multi-fluid flow model (Eulerian-Eulerian framework) combined with a population balance model was used as an alternative approach for modelling the spray produced by a two-fluid nozzle. In this approach, the CFD solver couples the population balance equation along with the Navier-Stokes equations for predicting the droplet diameter and mass fraction distribution. Comparison between simulated spray pattern (gas-liquid model) and that experimentally visualised by means of UV illumination was made and a good agreement was obtained. Parametric studies were done in order to investigate the effects of operating conditions on spray cone and liquid mass fraction inside the reactor. Furthermore, comparison of time-averaged fluidised bed behaviour with the inclusion of sprays obtained by both gas-solid-liquid multiphase modelling methods is presented.
机译:建立了欧拉-拉格朗日计算流体动力学(CFD)模型,以描述使用鼓风/空气辅助雾化器模型的锥形流化床包衣机中的双流体雾化。在有或没有固相的情况下都对雾化进行了建模(即气-液和气-固-液多相建模)。此外,将多流体流模型(欧拉-欧拉框架)与人口平衡模型相结合,作为模拟由双流体喷嘴产生的喷雾的替代方法。在这种方法中,CFD求解器将总体平衡方程与Navier-Stokes方程耦合在一起,以预测液滴直径和质量分数分布。进行了模拟喷雾模式(气-液模型)与通过紫外线照射进行实验可视化的比较,并获得了良好的一致性。为了研究操作条件对反应器内喷雾锥和液体质量分数的影响,进行了参数研究。此外,提出了时间平均流化床行为与包含两种气固液多相建模方法获得的喷雾的比较。

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