DocumentCode :
3526684
Title :
Modified Finite Element Method to Consider the Singularity of the Electric Field Using a Singularity Function
Author :
Oh, Yeon-Ho ; Song, Ki-Dong ; Kim, Hong-Kyu ; Park, Sung-Kwan
Author_Institution :
Korea Electrotechnol. Res. Inst.
fYear :
2006
fDate :
15-18 Oct. 2006
Firstpage :
688
Lastpage :
691
Abstract :
In the insulation design of an electric power apparatus, the triple junction which is a joining point of conductor, insulator, and gas should be considered carefully. At this point, three different materials are connected and the electric field intensity is not smooth. Local concentration of the electric field at this point can result in the surface flashover. Therefore, the accurate analysis of the electric field is necessary to design the apparatus with a triple junction. The conventional electric field analysis method such as the FEM (finite element method) can not take into account the triple junction problem accurately. In this paper, the singularity function is introduced and combined with the FEM to solve the triple junction problem. A discrete stress intensity factor is employed to prove the convergence of the proposed method. Several numerical tests show that the method can give an accurate solution around the triple junction and is very promising in solving the problem with the geometric singularity.
Keywords :
electric fields; finite element analysis; flashover; gas insulated switchgear; gaseous insulation; power apparatus; discrete stress intensity factor; electric field analysis; electric field intensity; electric field singularity; electric power apparatus; finite element method; insulation design; singularity function; surface flashover; triple junction problem; Dielectrics and electrical insulation; Finite element methods;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Insulation and Dielectric Phenomena, 2006 IEEE Conference on
Conference_Location :
Kansas City, MO
Print_ISBN :
1-4244-0547-5
Electronic_ISBN :
1-4244-0547-5
Type :
conf
DOI :
10.1109/CEIDP.2006.312025
Filename :
4105526
Link To Document :
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