• DocumentCode
    1444453
  • Title

    Understanding water treeing mechanisms in the development of diagnostic test methods

  • Author

    Hvidsten, S. ; Ildstad, E. ; Sletbak, J. ; Faremo, H.

  • Author_Institution
    Dept. of Power Eng., Norwegian Univ. of Sci. & Technol., Trondheim, Norway
  • Volume
    5
  • Issue
    5
  • fYear
    1998
  • fDate
    10/1/1998 12:00:00 AM
  • Firstpage
    754
  • Lastpage
    760
  • Abstract
    Recently, several diagnostic methods for measurement of permittivity and dielectric loss have been developed for non-destructive testing of water-tree degraded XLPE cables. Critical degradation is found to be associated with a more than proportional increase of the dielectric properties when increasing the applied test voltage above a certain level. In this paper an explanation for this nonlinearity will be presented, using a mechanical approach to the water treeing phenomenon. The water treed insulation is considered to consist of small water filled voids separated by crazing zones. At relatively low water content and low applied test voltage, several of these crazing zones are likely to be closed and insulating. When increasing the test voltage, Maxwell mechanical stresses will cause water to penetrate into the crazing zones, thus making electric contact between the elongated water droplets. Results from finite element method (FEM) calculations of electric fields and losses show that the effect of this will be to enhance the electric field at the tip of these conductive channels and to increase the dielectric losses of the water treed insulation
  • Keywords
    XLPE insulation; crazing; dielectric loss measurement; finite element analysis; insulation testing; nondestructive testing; permittivity measurement; power cable insulation; power cable testing; trees (electrical); voids (solid); Maxwell mechanical stress; XLPE cable insulation; crazing zone; degradation; diagnostic test method; dielectric loss measurement; dielectric properties; electric field; finite element method; nondestructive testing; nonlinearity; permittivity measurement; void; water droplet; water treeing; Degradation; Dielectric loss measurement; Dielectric losses; Dielectric measurements; Dielectrics and electrical insulation; Loss measurement; Permittivity measurement; Testing; Trees - insulation; Voltage;
  • fLanguage
    English
  • Journal_Title
    Dielectrics and Electrical Insulation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1070-9878
  • Type

    jour

  • DOI
    10.1109/94.729699
  • Filename
    729699