DocumentCode :
2080038
Title :
Artificial pollution tests on porcelain-housed metal-oxide surge arresters for 275 kV power systems
Author :
Kado, H. ; Izumi, K. ; Shirakawa, S. ; Komatsu, K. ; Watanabe, H. ; Yamaguchi, M. ; Nakajima, M. ; Kobayashi, M. ; Nishimura, S.
Author_Institution :
Central Res. Inst. of Electr. Power Ind., Kanagawa, Japan
Volume :
3
fYear :
2000
fDate :
23-27 Jan 2000
Firstpage :
2087
Abstract :
As the thermal performance of elements of porcelain-housed metal-oxide surge arresters varies greatly depending upon contamination of the insulator surface, it is important to establish a rational pollution testing method for porcelain-housed arresters. The authors have conducted pollution tests on three types of two-unit porcelain-housed metal-oxide surge arrester for 275 kV power systems. These tests includes two slurry test methods, conducted under the condition of equivalent salt deposit density, which are in approximate in compliance with JEC-217-1984 and one slurry test in accordance with IEC-60099-4 Annex F. The leakage current pulses and quantity of electricity on the insulator surface and element and temperature of element at the time of the tests were measured. This paper describes the test results and analyzed results of the temperature rise of the elements under artificial polluted conditions
Keywords :
arresters; electric breakdown; electric current measurement; insulator contamination; insulator testing; leakage currents; porcelain insulators; power system protection; switchgear testing; 275 kV; artificial pollution tests; equivalent salt deposit density; insulator surface contamination; leakage current pulses; pollution testing method; porcelain-housed metal-oxide surge arresters; power systems; slurry test methods; thermal performance; Arresters; Insulator testing; Metal-insulator structures; Pulse measurements; Pulse power systems; Slurries; Surface contamination; Surges; Temperature; Thermal pollution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering Society Winter Meeting, 2000. IEEE
Print_ISBN :
0-7803-5935-6
Type :
conf
DOI :
10.1109/PESW.2000.847675
Filename :
847675
Link To Document :
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