Title :
Design improvements on graded insulation of power transformers using transient electric field analysis and visualization technique
Author :
Yamashita, Hideo ; Cingoski, V. ; Nakamae, Eihachiro ; Namera, Akihiro ; Kitamura, Hideo
Author_Institution :
Hiroshima Univ., Japan
fDate :
12/1/1999 12:00:00 AM
Abstract :
This paper deals with design improvements on graded insulation of power transformers using transient electric field analysis and a visualization technique. The calculation method for transient electric field analysis inside a power transformer impressed with impulse voltage is presented: Initially, the concentrated electric network for the power transformer is constructed by dividing transformer windings into several blocks and by computing the electric circuit parameters. Next, the transient electric field analysis is performed. Using the results of the circuit analysis as boundary conditions, a 2D axisymmetrical electric field finite element analysis is performed. Finally, an animated display technique for the transient voltage, the electric field intensity and the tolerance rate of electric field intensity distributions is proposed as an extremely useful tool for design on graded insulation. A successful application of the proposed method for analysis of a model transformer for which the computed results agree very well with measured results is also presented
Keywords :
electric fields; finite element analysis; power transformer insulation; transformer windings; transient analysis; 2D axisymmetrical electric field finite element analysis; animated display technique; boundary conditions; circuit analysis; electric circuit parameters computation; electric field intensity distributions; graded insulation; impulse voltage; power transformer; power transformers; transformer windings; transient electric field analysis; transient voltage; visualization technique; Circuit analysis; Circuit analysis computing; Computer networks; Dielectrics and electrical insulation; Performance analysis; Power transformer insulation; Power transformers; Transient analysis; Visualization; Windings;
Journal_Title :
Energy Conversion, IEEE Transactions on