DocumentCode :
1775071
Title :
Influence of paper ageing on space charge dynamics in oil impregnated insulation paper under DC electric field
Author :
Jin Fu ; Jian Hao ; Haibin Liu ; Ke Li ; Huailiang Cui ; Wei Zhang
Author_Institution :
State Grid Chongqing Electr. Power Co. Chongqing Electr. Power Res. Inst., Chongqing, China
fYear :
2014
fDate :
1-5 June 2014
Firstpage :
385
Lastpage :
388
Abstract :
The formation of space charge in oil/paper insulation system can lead to material degradation in the high electric field region and affect system reliability. The solid insulation in transformer is difficult or can not to be replaced. The influence of paper ageing on space charge dynamics in oil/paper insulation system was analyzed in this paper. The accelerated thermal aging experiment of insulation paper was conducted under 130 °C for different times. The aged papers were impregnated with the new oil to form oil/paper insulation samples. Space charge dynamics of oil/paper sample with paper aged for different times are investigated using the PEA technique under dc electric field (30kV/mm) at room temperature. The results show that with paper ageing conducted, more polar or conductive products will lead to charges easier to be injected into the oil/paper sample. The paper ageing increases the total amount of space charge injected into the sample during voltage-on process. Compared with the oil/paper sample with new paper, the maximum values of electrical field strength for oil/paper sample with seriously aged paper are more than 70 higher than its average electric field strength.
Keywords :
acoustic measurement; ageing; impregnated insulation; insulation testing; life testing; paper; power transformer insulation; space charge; transformer oil; DC electric field; PEA technique; electric field strength; high electric field region; oil impregnated insulation paper; oil-paper insulation system; paper ageing; pulsed electro-acoustic technique; solid insulation; space charge dynamics; space charge injection; system reliability; temperature 130 C; temperature 293 K to 298 K; voltage-on process; Chemicals; Insulation; Nitrogen; Space charge; Thermal conductivity; Thermal degradation; charge amount; electric field; oil-paper insulation; paper ageing; space charge;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Insulating Materials (ISEIM), Proceedings of 2014 International Symposium on
Conference_Location :
Niigata
Type :
conf
DOI :
10.1109/ISEIM.2014.6870800
Filename :
6870800
Link To Document :
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