Fay J A
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
J Hazard Mater. 2006 Aug 21;136(2):219-32. doi: 10.1016/j.jhazmat.2005.11.095. Epub 2006 Jan 25.
A two zone entrainment model of pool fires is proposed to depict the fluid flow and flame properties of the fire. Consisting of combustion and plume zones, it provides a consistent scheme for developing non-dimensional scaling parameters for correlating and extrapolating pool fire visible flame length, flame tilt, surface emissive power, and fuel evaporation rate. The model is extended to include grey gas thermal radiation from soot particles in the flame zone, accounting for emission and absorption in both optically thin and thick regions. A model of convective heat transfer from the combustion zone to the liquid fuel pool, and from a water substrate to cryogenic fuel pools spreading on water, provides evaporation rates for both adiabatic and non-adiabatic fires. The model is tested against field measurements of large scale pool fires, principally of LNG, and is generally in agreement with experimental values of all variables.
提出了一种池火的双区卷吸模型来描述火灾的流体流动和火焰特性。该模型由燃烧区和羽流区组成,为开发无量纲缩放参数提供了一个一致的方案,用于关联和推断池火可见火焰长度、火焰倾斜度、表面发射功率和燃料蒸发速率。该模型扩展到包括火焰区中烟尘颗粒的灰气体热辐射,考虑了光学薄区和厚区的发射和吸收。一个从燃烧区到液体燃料池以及从水基底到在水上蔓延的低温燃料池的对流热传递模型,给出了绝热和非绝热火灾的蒸发速率。该模型针对大规模池火(主要是液化天然气池火)的现场测量进行了测试,并且与所有变量的实验值总体上一致。