• DocumentCode
    52922
  • Title

    Development of time- and cost-effective pollution test methods applicable for different station insulation options

  • Author

    Gutman, Igor ; Lundengard, Johan ; Vosloo, Wallace

  • Author_Institution
    STRI AB, Ludvika, Sweden
  • Volume
    21
  • Issue
    6
  • fYear
    2014
  • fDate
    Dec-14
  • Firstpage
    2525
  • Lastpage
    2530
  • Abstract
    The Rapid Flashover pollution test method (RFO) exposes energized polluted insulators to fog and uses step changes of voltage to identify a minimum flashover voltage. The RFO method reduces test time by a factor of three or more compared to up-and-down voltage application method and is thus time- and cost-effective. In this paper the results from RFO on five ceramic and composite station insulators (line, post and hollow) with median 4.7 m leakage distance are compared closely with duplicate tests using up-anddown procedure. The tests on hydrophobic composite insulators used the preconditioning principles from CIGRE Brochure 555. Full-scale withstand testing of the same five but 420-kV class voltage insulators with median leakage distance 13.3 m are also presented. It is indicated that the flashover test results of RTV-coated station insulators should be specially analyzed and treated.
  • Keywords
    ceramic insulators; composite insulators; flashover; insulator contamination; CIGRE Brochure 555; RFO method; RTV-coated station insulators; ceramic insulators; composite station insulators; cost-effective pollution test methods; distance 13.3 m; distance 4.7 m; full-scale withstand testing; hydrophobic composite insulators; preconditioning principles; rapid flashover pollution test method; station insulation options; time-effective pollution test methods; up-and-down voltage application method; voltage 420 kV; Flashover; IEC standards; Insulators; Pollution; Porcelain; Design Engineering; Insulator; Pollution; Polymers; Reliability; Software Tools;
  • fLanguage
    English
  • Journal_Title
    Dielectrics and Electrical Insulation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1070-9878
  • Type

    jour

  • DOI
    10.1109/TDEI.2014.004593
  • Filename
    7031501