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Experiment and simulation study on optimized structure of a gravitational air classifier

机译:重力空气分级机优化结构的实验与仿真研究

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摘要

We carried out focusing on the experiments and simulations of a gravitational air classifier, whose classifying chamber is designed into four different dispersion structures. Through the experiments, the classification performance in the classifier chamber was acquired after that feed rate was determined. And then using the Fluent, a two-dimensional computational fluid dynamics was developed. The flow field characteristics and air classification performance were presented and evaluated. We investigated the three important influent factors, including the dispersion structures, the feed rate and the frequency of the fan. Finally, with the experiment and simulation being analyzed, the optimal dispersion structure has been obtained. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们重点研究了重力空气分级机的实验和模拟,该分级机的分级室设计为四种不同的分散结构。通过实验,在确定进料速度之后,获得了分级室中的分级性能。然后使用Fluent开发了二维计算流体动力学。介绍并评估了流场特性和空气分类性能。我们研究了三个重要的影响因素,包括分散结构,进给速度和风扇频率。最后,通过对实验和仿真的分析,获得了最佳的色散结构。 (C)2015 Elsevier B.V.保留所有权利。

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