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A new static cyclonic classifier: Flow characteristics, performance evaluation and industrial applications

机译:一种新的静态旋风分类器:流动特性,性能评估和工业应用

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摘要

Due to the low particle classification accuracy or powder production of static air classifiers, a new cyclonic classifier with middle primary and secondary tangential inlets and feed tube was designed. The flow field and classification performance of the lab-scale classifier were investigated numerically and experimentally. The industrial cyclonic classifier's performance was also on-site tested. The simulated results show that the classifier has a main flow characterized by an upper upward vortex and a downer reverse-flow. The secondary air forms the other two vortexes with high tangential velocity near the wall and high axial velocity at the center, which helps to wash the fine particles and accelerate their discharge. The primary and secondary air occupies the separated space with a sharp dynamic boundary in the classifier regardless of inlet air velocity. The experimental lab-scale classifier has a maximum Newton efficiency of 88% with coarse product yield of 92%. The industrial classifier has been used to classify the waste microsilica for the reutilization, which well meets the industrial requirements of the classification efficiency and energy consumption. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由于静态空气分类器的低颗粒分类精度或粉末生产,设计了一种新的旋风分类器,设计了中初级和次级切向入口和饲料管。实验和实验研究了实验室规模分类器的流场和分类性能。工业循环分类器的性能也在现场测试。模拟结果表明,分类器具有由上向上涡流的主流,其特征在于上向上涡流和凹下的反向流。二次空气形成另一个具有高切向速度的其他两个涡流,附近的壁和中心高轴向速度,有助于洗涤细颗粒并加速其排放。初级和二级空气在分类器中占据分离的空间,而不管入口空气速度如何。实验实验室规模分类器的最高牛顿效率为88%,粗产率为92%。工业分类器已被用于对Refilization进行分类的废MicrosiLica,这符合分类效率和能耗的工业需求。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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