• DocumentCode
    1733270
  • Title

    Arc-flash energy mitigation by fast energy capture

  • Author

    Roscoe, George ; Papallo, Tom ; Valdes, Marcelo

  • fYear
    2010
  • Firstpage
    1
  • Lastpage
    9
  • Abstract
    The predominant technologies for reducing arc-flash incident energy today rely on the speed of protective devices, remote operation, encapsulating arc-flash energy in arc-resistant enclosures, which channel energy where it is less dangerous, and on crowbars to divert the arc energy into a bolted fault. Though more thoughtfully applied than they may have been in the past, none of these methods has provided a solution for all situations, particularly in existing installations. This paper will describe a method and include test results of an arc-flash energy sequestration that is able to divert an arcing fault´s energy into a specific environment within a half-cycle after initiation of the arc. This is achieved without the need to introduce bolted fault current like a crowbar or for fast current interruption, such as a current-limiting fuse. The system protection provided has the benefits of arc-resistant switchgear without reliance on equipment sheathing and can be added after normal equipment is installed. Further advantages include the protection system and switchgear´s ability for reuse after an arcing event, as well as the ability to easily test without the need for cumbersome high-current test equipment.
  • Keywords
    power system protection; switchgear protection; arc-flash energy mitigation; arc-resistant switchgear; fast energy capture; system protection; Arc discharges; Circuit faults; Electrodes; Impedance; Plasmas; Sensors; Switchgear; Arc-Resistant Switchgear; Arc-flash; Arc-flash Protection; Arcing Fault Diversion; Crow Bar; Fast Arc-flash Protection;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Pulp and Paper Industry Technical Conference (PPIC), Conference Record of 2010 Annual
  • Conference_Location
    San Antonio, TX
  • ISSN
    0190-2172
  • Print_ISBN
    978-1-4244-5676-5
  • Type

    conf

  • DOI
    10.1109/PAPCON.2010.5556524
  • Filename
    5556524