DocumentCode :
2058225
Title :
Research on environmental factors of positive DC corona inception voltage of overhead transmission lines
Author :
Hairui Xu ; Li Wang ; Guangli Zhao ; Wei Zhang ; Zhu Zhan ; Yaxu Cao ; Huidong Jia
Author_Institution :
Zhengzhou Electr. Co., Zhengzhou, China
fYear :
2012
fDate :
10-14 Sept. 2012
Firstpage :
1
Lastpage :
7
Abstract :
The corona discharge effect is one of important problems in the design and operation of transmission lines. The transmission lines pass by the high altitude region with low air pressure, which brings many special problems to the design and operation of the transmission lines. Temperature and humidity also have obvious effect on the corona characteristics of the transmission lines. Consequently, it is significant to study the impact of air pressure, temperature and humidity on the corona characteristics and discharge mechanism of transmission lines. A computation model is adopted for evaluating the corona inception voltage on conductors, which is established according to the gas discharge theory. The charge simulation method is introduced to the computation model to calculate the electric field intensity. Then the criterion of corona inception voltage which considers whether the number of positive ions in the secondary avalanches is greater or equal to that in the primary avalanche is used to calculate the corona inception voltage of conductors. The influence of air pressure, humidity and temperature on the corona inception voltage of conductors is analysed systematically. Corona inception voltage decreases as air pressure is lowered or temperature is raised. It is mainly due to the enlargement of ionization zone as a result of the increase of effective ionization coefficient. Simultaneity, corona inception voltage decreases with humidity increasing for strengthening of collisional ionization intensity.
Keywords :
corona; humidity; ionisation; power overhead lines; charge simulation method; corona characteristics; corona discharge effect; corona inception voltage; discharge mechanism; electric field intensity; environmental factors; gas discharge theory; high altitude region; humidity; ionization coefficient; ionization zone; overhead transmission lines; positive DC corona inception voltage; positive ions; secondary avalanches; air pressure; humidity; inception voltage; positive DC corona; smooth conductors; temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electricity Distribution (CICED), 2012 China International Conference on
Conference_Location :
Shanghai
ISSN :
2161-7481
Print_ISBN :
978-1-4673-6065-4
Electronic_ISBN :
2161-7481
Type :
conf
DOI :
10.1109/CICED.2012.6508494
Filename :
6508494
Link To Document :
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