The Effect of Thermal Radiation on the Dynamics of Flashover in a Compartment Fire(<Special Issue>Emerging Fields in Thermal Engineering)

    • YUEN Walter Wah
    • Department of Mechanical and Environmental Engineering, University of California at Santa Barbara
    • HAN Shousuo
    • Department of Building Services Engineering, The Hong Kong Polytechnic University
    • CHOW Wan Kit
    • Department of Building Services Engineering, The Hong Kong Polytechnic University

Abstract

Flashover is a phenomenon describing a room fire changed from the growth stage to the development stage. There is a rapid increase in size and intensity. The radiant heat flux back to the fuel surface and the floor of the room is known to be one of the key parameters leading to flashover. Indeed, a heat flux (largely due to radiation) of 20 kW/m^2 to the room floor is often taken to be the condition of flashover. To understand the importance of radiation, a zone model is developed to simulate the transient fire growth in a compartment. Heat and mass transfer correlations available in the literature are used to simulate the non-radiative effect. A three-dimensional non-gray soot radiation model is used to simulate the radiative exchange between the fuel surface, the hot gas/particulate layer and the surrounding wall. Results show that the hot layer temperature alone may not be an effective indicator for flashover. Other parameters such as particulate volume fraction in the hot layer, venting area and heat transfer to the surrounding wall are also important in determining the occurrence of flashover.

Journal

JSME international journal. Ser. B, Fluids and thermal engineering   [List of Volumes]

JSME international journal. Ser. B, Fluids and thermal engineering 46(4), 528-538, 2003-11-15  [Table of Contents]

The Japan Society of Mechanical Engineers

References:  24

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Codes

  • NII Article ID (NAID) :
    110003479181
  • NII NACSIS-CAT ID (NCID) :
    AA10888815
  • Text Lang :
    ENG
  • Article Type :
    REV
  • ISSN :
    13408054
  • NDL Article ID :
    6745078
  • NDL Source Classification :
    ZN11(科学技術--機械工学・工業)
  • NDL Call No. :
    Z53-Y271
  • Databases :
    CJP  NDL  NII-ELS  J-STAGE