DocumentCode :
1774575
Title :
Analysis on Failure causes of bushing used in 40.5kV metal enclosed air insulation switchgear
Author :
Dongxian Tan ; Hongmei Li ; Dengming Xiao
Author_Institution :
Shanghai ROX Electr. Appliance Co., Ltd., Shanghai Jiao Tong Univ., Shanghai, China
fYear :
2014
fDate :
23-26 Sept. 2014
Firstpage :
1225
Lastpage :
1229
Abstract :
40.5kV metal enclosed air insulation switchgear is a very important electrical device for electrical power system and industry customer. According to the main insulation dielectric used in switchgear, the switchgear can be classified into air-insulated and gas insulated devices. In fact, in the air-insulated switchgear, additional to the air used as insulation dielectric, also there are others insulation parts were applied to strengthening the insulation capability of phase to phase and phase to ground. Among them, the bushing manufactured from organic insulation material is one of the most critical insulation parts in air insulation switchgears. After almost 20 years´ operation experiences, we can find that insulation failures resulted in bushing is very frequent in operation field. The main cause can be verified into three types: 1) bad design can lead to concentrated electrical stress around the mounting plate of bushing, consequently, high electrical stress results in the partial discharge in bushing, finally, insulation aging due to partial discharge lead to the insulation failures.;2) some flaws occur in the process of product manufacturing, these defect can cause the partial discharge, after a long operation time under discharge condition, insulation failure is also possible to appear in bushing; 3) severe operation environment is also an important fact that change the electrical field distribution around bushing and lead to the insulation failures.
Keywords :
air insulation; bushings; electricity supply industry; failure analysis; gas insulated switchgear; air insulated electrical device; bushing failure cause analysis; electrical power industry customer; electrical power system; gas insulated electrical device; insulation dielectric; metal enclosed air insulation switchgear; organic insulation material; phase to ground insulation capability; phase to phase insulation capability; voltage 40.5 kV; Atmospheric modeling; Electricity; Insulators; Irrigation; Resins; Switches; Bushing; Electrical field simulation; Electrical test; Insulation failures;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electricity Distribution (CICED), 2014 China International Conference on
Conference_Location :
Shenzhen
Type :
conf
DOI :
10.1109/CICED.2014.6991902
Filename :
6991902
Link To Document :
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