Title :
Study on AC Artificial-Contaminated Flashover Performance of Various Types of Insulators
Author :
Jiang, Xingliang ; Yuan, Jihe ; Zhang, Zhijin ; Hu, Jianlin ; Sun, Caixin
Author_Institution :
Chongqing Univ., Chongqing
Abstract :
Artificial pollution tests have been carried out to study AC flashover performances of various types of porcelain, glass, and polymeric insulators in this paper. The experimental results show that the polluted flashover voltage Uf is affected by equivalent salt deposit density rhoESDD and nonsoluble deposit density rhoNSDD, the influences of which are independent of each other. Based on the analyses of the flashover voltages, the correction formulas of the flashover voltages Uf of various insulators at various rhoESDD and rhoNSDD levels are pointed out. The experimental results also show that there is a distinct difference among the flashover voltages of various types of polluted insulators. At the same pollution degree, the antipollution performance of the fog-type glass insulator is better than those of the outer-rib porcelain insulators. In terms of the effectiveness of creepage distance of insulators, the antipollution performance of polymeric insulators is superior to those of porcelain and glass insulators.
Keywords :
flashover; insulator contamination; insulator testing; polymer insulators; porcelain insulators; AC artificial-contaminated flashover; antipollution performance; artificial pollution tests; equivalent salt deposit density; glass insulators; nonsoluble deposit density; polluted insulators; polymeric insulators; porcelain insulators; Flashover; Glass; Insulator testing; Plastic insulation; Pollution; Polymers; Porcelain; Shape; Surface contamination; Voltage; $rho_{rm ESDD}$ ; $rho_{rm NSDD}$; ac; artificial pollution test; flashover performance; insulator; shape;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2007.899760