中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Estimation of Collection Efficiency Depended on Feed Particle Concentration for Axial Flow Cyclone Dust Collector

文献类型:期刊论文

作者Akira Ogawa
刊名JOURNAL OF THERMAL SCIENCE
出版日期1999
卷号8期号:3页码:143,157
关键词Axial Flow Cyclone Dust Collector Collection Efficiency Cut-size Reynolds number Centrifugal Effect Re-entraInment In Dust Bunker Critical Feed Particle Concen tration Fly-ash High Concentration Low Concentration.
英文摘要A cyclone dust collector is applied in many industries. Especially the axial flow cyclone is the most simple construction and it keeps high reliability for maintenance. On the other hand, the collection efficiency of the cyclone depends not only on the inlet gas velocity but also on the feed particle concentration. The collection efficiency increases with increasing feed particle concentration. However until now the problem of how to estimate the collection efficiency depended on the feed particle concentration is remained except the investigation by Muschelknautz & Brunner[6]. Therefore in this paper one of the estimate method for the collection efficiency of the axial flow cyclones is proposed. The application to the geometrically similar type of cyclone of the body diameters Dl-30, 50, 69 and 99 mm showed in good agreement with the experimental results of the collection efficiencies which were described in detail in the paper by Ogawa & Sugiyama[8].
公开日期2013-03-12
源URL[http://ir.etp.ac.cn/handle/311046/53918]  
专题工程热物理研究所_Journal of Thermal Science
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Akira Ogawa. Estimation of Collection Efficiency Depended on Feed Particle Concentration for Axial Flow Cyclone Dust Collector[J]. JOURNAL OF THERMAL SCIENCE,1999,8(3):143,157.
APA Akira Ogawa.(1999).Estimation of Collection Efficiency Depended on Feed Particle Concentration for Axial Flow Cyclone Dust Collector.JOURNAL OF THERMAL SCIENCE,8(3),143,157.
MLA Akira Ogawa."Estimation of Collection Efficiency Depended on Feed Particle Concentration for Axial Flow Cyclone Dust Collector".JOURNAL OF THERMAL SCIENCE 8.3(1999):143,157.

入库方式: OAI收割

来源:工程热物理研究所

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