DocumentCode :
570434
Title :
End insulation electric field analysis and design optimization of 500kV power transformer based on ANSYS
Author :
Ma, A.Q. ; Zhang, Z.S.
Author_Institution :
Coll. of Electr. Power & Autom. Eng., Shanghai Univ. of Electr. Power, Shanghai, China
fYear :
2012
fDate :
21-24 May 2012
Firstpage :
1
Lastpage :
4
Abstract :
This article uses the finite element method to analysis and calculates the electric field intensity of 500kV power transformer´s HV winding. Through analysis and research the power transformer, the article has simplified the model of power transformer. Using ANSYS software establishes 2-D modeling of 500kV power transformer to analysis and conducted on the model mesh. Through analysis and understanding the power transformer´s data, the boundary conditions are gotten which should be imposed on the various parts of the model. This article gets clear electric potential and electric field distribution by using finite element method to calculate the electric field intensity. The structure of power transformer has been optimized after analyzing the electric field distribution. Changing the radius of the electrostatic ring can decrease the maximum electric field intensity value of insulating layer surface, and the electrical field intensity will be more evenly distributed in the whole domain in power transformer, which is very important to design reasonable insulation structure for power transformer.
Keywords :
electric fields; finite element analysis; power transformer insulation; transformer windings; 2D modeling; ANSYS software; HV winding; boundary conditions; design optimization; electric field distribution; electric potential; electrostatic ring; end insulation electric field analysis; finite element method; insulating layer surface; insulation structure; maximum electric field intensity value; model mesh; power transformer; voltage 500 kV; Electric fields; Electrostatics; Finite element methods; Insulation; Power transformer insulation; Windings; ANSYS; Electric field analysis; Electric field intensity; End insulation; Power transformer;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Smart Grid Technologies - Asia (ISGT Asia), 2012 IEEE
Conference_Location :
Tianjin
Print_ISBN :
978-1-4673-1221-9
Type :
conf
DOI :
10.1109/ISGT-Asia.2012.6303260
Filename :
6303260
Link To Document :
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