• DocumentCode
    3536447
  • Title

    FEM approach to design functionally graded transformer bushing

  • Author

    Ganga, S. ; Kanyakumari, M. ; Aradhya, M. Kanyakumari R S Shivakumara

  • Author_Institution
    Central Power Res. Inst., Bangalore, India
  • fYear
    2012
  • fDate
    24-28 July 2012
  • Firstpage
    1
  • Lastpage
    3
  • Abstract
    Porcelain bushings are universally employed for power transformers. However, non-condenser bushings are unsuitable for high voltage applications owing to their extreme non-linearity in potential and electric field distribution. A majority of the transformer failures are due to the flashovers taking place in these bushings. This paper introduces a concept of replacing one of the bushing´s insulation layer, bakelite by functionally graded material FGM, as a solution to the prevailing problem of non-linearity. A 33kV, 250A porcelain non-condenser bushing of 750mm height having Bakelite and transformer oil as the main insulating material and porcelain for the outer shed is modeled using 2-D FEM software Elecnet. The simulation studies indicate that, maximum stress is experienced radially at a height of 35.5cm to 38.5cm from the ground. It is seen that on replacing Bakelite by a 2 layer FGM (each layer of different permittivity), there is significant reduction in electric stress at the triple junction point of the grounded flange. Also, the potential and electric field distribution is found to be linear and uniform as compared to that of a single layer bushing.
  • Keywords
    bushings; ceramic insulation; failure analysis; finite element analysis; flanges; flashover; power transformer insulation; transformer oil; 2D FEM software Elecnet; FEM approach; bakelite; bushing insulation layer; current 250 A; electric field distribution; electric stress; flashovers; functionally graded transformer bushing design; grounded flange; porcelain noncondenser bushing; power transformers; single layer bushing; transformer failures; transformer oil; triple junction point; voltage 33 kV; Dielectrics; Distribution functions; Electric potential; Electron tubes; Finite element methods; Graphical models; Insulators; Non condenser bushing; electric field; functionally graded material; potential distribution;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Properties and Applications of Dielectric Materials (ICPADM), 2012 IEEE 10th International Conference on the
  • Conference_Location
    Bangalore
  • ISSN
    2160-9225
  • Print_ISBN
    978-1-4673-2852-4
  • Type

    conf

  • DOI
    10.1109/ICPADM.2012.6319029
  • Filename
    6319029