DocumentCode
868928
Title
Particle Charging in Combined Corona-Electrostatic Fields
Author
Dumitran, Laurentiu Marius ; Blejan, Octavian ; Notingher, Petru V. ; Samuila, Adrian ; Dascalescu, Lucian
Author_Institution
Dept. of Electr. Eng., Politeh. Univ. of Bucharest, Bucharest
Volume
44
Issue
5
fYear
2008
Firstpage
1385
Lastpage
1390
Abstract
The association of several ionizing and nonionizing electrodes generates combined corona-electrostatic fields, characterized by space charge zones of well-defined extensions. In a previous paper, the authors presented an effective numerical method for the computation of such fields. The aim of this present work is to show how these results can be employed for estimating the charge acquired by insulating and conducting particles when passing through the space charge zones generated by various corona-electrostatic electrode geometries. The study is done under several assumptions that authorize the use of Pauthenier´s formula. Diffusion charging can be neglected, the applied electric field is quasi-uniform in the vicinity of particles, and particle speed is low compared with that of air ions. The charging model takes into account the computed spatial distribution of the electric field and charge density. The computations were performed for various values of the geometrical parameters of the electrode system and of the particle transit time through the corona discharge zone. The results can be used for the design of the electrode system of any electrostatic process employing corona discharge fields.
Keywords
charge density waves; corona; electric fields; electrodes; Pauthenier formula; charge density; combined corona-electrostatic fields; conducting particles; corona discharge; diffusion charging; electric field; geometrical parameters; insulating particles; nonionizing electrodes; particle charging; spatial distribution; Character generation; Corona; Electrodes; Electrostatic processes; Finite element methods; Industry Applications Society; Insulation; Laboratories; Particle charging; Space charge; Computational electrostatics; corona discharge; particle charging;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2008.2002935
Filename
4629394
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