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CFD simulation of cyclone separators to reduce air pollution

机译:减少旋风分离器的CFD模拟以减少空气污染

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摘要

The present paper is based on CFD modelling of gas-solid flow in cyclone separators with different dust outlet geometries (with and without down-comer tubes at the cyclone bottom) to analyse the flow characteristics and the cyclone performance. Numerically obtained cyclone performance parameters, collection efficiency, and pressure drop were compared with experimental results. Changes in the particle trajectories due to the variation of the flow field inside the cyclone separators with the effect of the dust outlet section were also analysed in detail. The simulation results largely agreed with the experimental results, and discrepancies were caused by modelling limitations and inconsistencies of the particle tracking model with the real gas-solid flow. However, comparable to the experiments, the CFD simulations also predicted the increments in collection efficiencies by dust outlet geometries modified with down-corners within acceptable pressure drops. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文基于CFD模型,对具有不同粉尘出口几何形状(旋风分离器底部有无降液管)的旋风分离器中的气固流进行分析,以分析流动特性和旋风分离器的性能。将数值获得的旋风分离器性能参数,收集效率和压降与实验结果进行了比较。还详细分析了由于旋风分离器内部流场的变化而受到粉尘出口部分的影响而引起的颗粒轨迹变化。模拟结果与实验结果基本吻合,差异是由于建模的局限性以及颗粒跟踪模型与实际气固流的不一致性所致。但是,与实验相比,CFD模拟还预测了在可接受的压降范围内,通过向下转角修改后的出尘口几何形状,可以提高收集效率。 (C)2015 Elsevier B.V.保留所有权利。

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