Theoretical and experimental investigation of a pulsed ESP
被引:18
作者:
Elayyan, HSB
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机构:
Yarmouk Univ, Al Hijjawi Fac Engn Technol, Elect Power Engn Div, Irbid, JordanYarmouk Univ, Al Hijjawi Fac Engn Technol, Elect Power Engn Div, Irbid, Jordan
Elayyan, HSB
[1
]
Bouziane, A
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机构:Yarmouk Univ, Al Hijjawi Fac Engn Technol, Elect Power Engn Div, Irbid, Jordan
Bouziane, A
Waters, RT
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机构:Yarmouk Univ, Al Hijjawi Fac Engn Technol, Elect Power Engn Div, Irbid, Jordan
Waters, RT
机构:
[1] Yarmouk Univ, Al Hijjawi Fac Engn Technol, Elect Power Engn Div, Irbid, Jordan
[2] Univ Wales Coll Cardiff, Sch Engn, Cardiff CF24 3TD, S Glam, Wales
corona;
impulse voltage;
space charge;
electrostatic precipitator;
charge measurement;
D O I:
10.1016/S0304-3886(02)00067-0
中图分类号:
TM [电工技术];
TN [电子技术、通信技术];
学科分类号:
0808 ;
0809 ;
摘要:
The superiority of hybrid pulsed-power/direct-voltage precipitators over conventional designs is now well accepted. In order to maximise the collection efficiency of these devices, a better knowledge of the free-ion charge density and the variation of the inter-electrode electric field is needed. This paper presents the results of an experimental investigation and a theoretical simulation of negative corona discharge in air, under the application of pulsed energisation to a benchscale coaxial electrode configuration. The construction of the experimental apparatus developed for the present study is described. Corona space charge injection and collection are quantitatively investigated under controlled operating conditions of applied voltage magnitude and frequency. The experimental results obtained are used to verify a new corona model that provides quantitative information regarding corona space charge magnitude and collection time, and can account for the effect of electrode dimensions. The model also quantifies the interdependence of corona discharge parameters including the magnitude of direct and impulse voltage components, impulse frequency and space charge and electric field distributions. This yields the magnitude of important parameters such as the frequency of applied voltage for maximum collection, and the minimum direct voltage level required to prevent corona ions from flowing back to the corona wire. (C) 2002 Elsevier Science B.V. All rights reserved.