• DocumentCode
    2874193
  • Title

    Analysis for Combustion Characteristics of Large-Scale Pool Fire with Wind

  • Author

    Zhen Chen ; Wen-hua Song ; Ling-yue Lv

  • Author_Institution
    Environ. & Chem. Coll., Tianjin Polytech. Univ., Tianjin, China
  • fYear
    2012
  • fDate
    2-4 Nov. 2012
  • Firstpage
    505
  • Lastpage
    508
  • Abstract
    The pool fire with characteristics of high temperature and high radiation intensity, is serious accident in chemical companies, but the research for pool fire of large tank area is relatively scarce. Taking a large crude oil storage tank area for an instance, this paper focuses on large-scale pool fire, and the flame height and heat flux was calculated and analyzed considering the influence of wind speed. Based on the theory of the pool fire, the fire characteristics under different wind speed (V = 0 ~ 20m / s) are simulated and calculated with simulation software FDS. Analyzing and contrasting the calculation, it shows that: Hotfijzer model and Pritchard-Binding model is applicable to the calculation for flame angle and height of large-scale hydrocarbon pool fire, when the wind speed is 20m/s, the radius of death, serious injury and minor injury is respectively 63.8m, 73.4m, 93.4m at down wind, and the adjacent tanks and fire dike will soon be ruined completely by the thermal radiation, when the wind speed is faster than 4m/s, the pumping station will be damaged in the long period of heat radiation, and the metering plant and office, the adjacent road and power lines outside the storage house will have only a slight effect.
  • Keywords
    accidents; combustion; fires; heat radiation; tanks (containers); Hotfijzer model; Pritchard-Binding model; accident; chemical companies; combustion characteristics analysis; crude oil storage tank area; flame height; heat flux; heat radiation; high radiation intensity; large-scale pool fire; power lines; thermal radiation; wind; Combustion; Fires; Injuries; Liquids; Mathematical model; Storage tanks; Wind speed; FDS analogue simulation; combustion characteristics; large scale pool fire; mathematical model; wind speed;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Multimedia Information Networking and Security (MINES), 2012 Fourth International Conference on
  • Conference_Location
    Nanjing
  • Print_ISBN
    978-1-4673-3093-0
  • Type

    conf

  • DOI
    10.1109/MINES.2012.73
  • Filename
    6405732