DocumentCode :
1078315
Title :
Computation of the Electric Field in Cable Insulation in the Presence of Water Trees and Space Charge
Author :
Stancu, Cristina ; Notingher, Petru, Jr. ; Ciuprina, Florin ; Notingher, Petru ; Castellon, Jérôme ; Agnel, Serge ; Toureille, Alain
Author_Institution :
Lab. of Electr. Mater., Politeh. Univ. of Bucharest, Bucharest
Volume :
45
Issue :
1
fYear :
2009
Firstpage :
30
Lastpage :
43
Abstract :
The presence of space charge changes locally the electric field distribution in power cable insulation and may play an important role in tree development, thus accelerating the dielectric breakdown. This paper is concerned with the computation of the electric field in polyethylene-insulated power cables affected by water trees which grow from the following: 1) the inner semiconducting layer; 2) the outer semiconducting layer; and 3) the inner and outer semiconducting layers, taking into account the space charge corresponding to the ions present in the treeing area. Space charge in plane samples where trees have been developed in an accelerated manner was estimated using the thermal step method. Average charge values given by space charge measurements were then used for the electric field computation in cable insulation with continuous or/and individual water trees. For the calculation of the electric field, an analytical and a numerical method have been used. This paper shows that the space charge changes the electric field distribution inside and outside the trees (the field increases in some areas and decreases in others) and that the field variations depend on the magnitude and on the polarity of the space charge, as well as on the dimensions of the water trees developed in the cable insulation. The obtained results show that, in the presence of water trees and space charge, the initiation of electric trees is more probable in the case of individual water trees than in the case of continuous water trees.
Keywords :
electric breakdown; electric fields; polyethylene insulation; power cable insulation; space charge; cable insulation; continuous water trees; electric field computation; electric field distribution; numerical method; semiconducting layer; space charge; space charge measurements; thermal step method; Acceleration; Cable insulation; Charge measurement; Current measurement; Dielectric breakdown; Power cable insulation; Power cables; Semiconductivity; Space charge; Trees - insulation; Cable insulation; electric field; polyethylene; space charge; water treeing;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2008.2009659
Filename :
4757409
Link To Document :
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