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Journal Article

Citation

Jia F, Galea ER, Patel MK. J. Fire Prot. Eng. 1998; 9(4): 1-17.

Copyright

(Copyright © 1998, SAGE Publishing)

DOI

10.1177/104239159800900402

PMID

unavailable

Abstract

In this paper, we present some early work concerned with the development of a simple solid fuel combustion model incorporated within a Computational Fluid Dynamics (CFD) framework. The model is intended for use in engineering applications of fire field modeling and represents an extension of this technique to situations involving the combustion of solid cellulosic fuels. A simple solid fuel combustion model consisting of a thermal pyrolysis model, a six flux radiation model and an eddy-dissipation model for gaseous combustion have been developed and implemented within the CFD code CFDS-FLOW3D. The model is briefly described and demonstrated through two applications involving fire spread in a compartment with a plywood lined ceiling. The two scenarios considered involve a fire in an open and closed compartment. The model is shown to be able to qualitatively predict behaviors similar to "flashover"--in the case of the open room--and "backdraft"-- in the case of the initially closed room.


Language: en

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