• DocumentCode
    3603289
  • Title

    Experimental Study of the Discharge Area of Soil Breakdown Under Surge Current Using X-Ray Imaging Technology

  • Author

    Wenxia Sima ; Sanwei Liu ; Tao Yuan ; Donghui Luo ; Peng Wu ; Bin Zhu

  • Author_Institution
    State Key Lab. of Power Transm. Equip. & Syst. Safety & New Technol., Chongqing Univ., Chongqing, China
  • Volume
    51
  • Issue
    6
  • fYear
    2015
  • Firstpage
    5343
  • Lastpage
    5351
  • Abstract
    A penetrating X-ray imaging technology is applied to study the soil ionization under surge current, by which grayscale images are obtained. Based on soil breakdown mechanism, there are series of discharge channels generating in the soil. By comparing the discharge time and imaging time, the filamentary paths, which can be directly observed in these grayscale images, are determined to be discharge air channels. The principle and process of imaging are introduced in detail in this paper. According to the Beer-Lambert law, the relationship between grayscale value and equivalent air thickness of any points in the discharge channel area has been proposed. Image processing technology is used to dispose the grayscale images to make them more distinct for analysis without losing the accurate information of the original images by maintaining their grayscale value percentage. Analyses of experimental imaging results are also presented, and effects of factors, such as configuration of grounding electrode and amplitude of surge current, are considered on the distribution of discharge channels as well. In addition, soil residual resistivity of discharge area was calculated by a finite-element method, according to experiment parameters and 3-D diagram of discharge area.
  • Keywords
    X-ray imaging; earthing; finite element analysis; geophysical techniques; image colour analysis; soil; surge protection; 3D diagram; Beer-Lambert law; X-ray imaging technology; air channels; discharge channels; discharge time; filamentary paths; finite-element method; grayscale images; grayscale value percentage; grounding electrode; image processing technology; imaging time; soil breakdown mechanism; soil ionization; soil residual resistivity; surge current; Discharges (electric); Electrodes; Gray-scale; Grounding; Soil; Surges; X-ray imaging; Discharge channels; Grounding system; X-ray; discharge channels; grayscale images; grounding system; soil ionization; soil residual resistivity;
  • fLanguage
    English
  • Journal_Title
    Industry Applications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-9994
  • Type

    jour

  • DOI
    10.1109/TIA.2015.2448615
  • Filename
    7131507