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Journal Article

Citation

Himoto K, Tsuchihashi T, Tanaka Y, Tanaka T. Fire Safety J. 2009; 44(2): 230-240.

Copyright

(Copyright © 2009, Elsevier Publishing)

DOI

10.1016/j.firesaf.2008.06.005

PMID

unavailable

Abstract

A series of reduced-scale experiments were carried out in order to investigate thermal behaviors of window flame, which exposes the upper floors as well as the adjacent buildings to potential risks of fire spread. A stainless pan filled with alcohol was used as the fire source and was placed inside a cubic compartment of 900 mm side. Temperatures and velocities at various points inside and outside of the compartment were measured. The compartment was pressurized during the experiment by mechanically supplying air at several mass inflow rates through an inlet duct set at the bottom part of the compartment. This was for simulating fire conditions under the effect of external wind pressure. On the basis of the experimental observation, line (i.e., two-dimensional) heat source assumption was adopted for developing a model of window flame behavior. A dimensionless parameter Q′* was derived from the governing differential equations in order to generalize the measurement results. Expressions for temperature rise along the trajectory ΔTm and characteristic flame width bT were developed incorporating the parameter Q′*. Keywords: Fire spread; Window flame; Temperature rise; Reduced-scale experiment; Scale model

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