The Numerical Simulation of Fire Spread Within a Compartment Using an Integrated Gas and Solid Phase Combustion Model

F. Jia, E. Galea, Mayur Patel
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引用次数: 5

Abstract

An integrated fire spread model is presented in this study including several sub-models representing different phenomena of gaseous and solid combustion. The integrated model comprises of the following sub-models: a gaseous combustion model, a thermal radiation model that includes the effects of soot, and a pyrolysis model for charring combustible solids. The interaction of the gaseous and solid phases are linked together through the boundary conditions of the governing equations for the flow domain and the solid region respectively. The integrated model is used to simulate a fire spread experiment conducted in a half-scale test compartment. Good qualitative and reasonable quantitative agreement is achieved between the experiment and numerical predictions.
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基于气固相燃烧综合模型的火灾在室内蔓延的数值模拟
本文提出了一个综合的火灾蔓延模型,该模型包括代表不同气体和固体燃烧现象的几个子模型。该综合模型包括以下子模型:气体燃烧模型、包含烟尘效应的热辐射模型和可燃固体炭化的热解模型。气固两相的相互作用分别通过流区和固区控制方程的边界条件联系在一起。利用该综合模型模拟了在半比例尺试验室内进行的火灾蔓延试验。实验结果与数值预测结果具有较好的定性和定量一致性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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