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Journal Article

Citation

Manzello SL, Gann RG, Kukuck SR, Prasad K, Jones WW. Fire Mater. 2007; 31(5): 297-310.

Affiliation

Building and Fire Research Laboratory (BFRL), National Institute of Standards and Technology (NIST), Gaithersburg, MD 20899, U.S.A.; Weapons and Materials Research Directorate, US Army Research Laboratory, APG, MD 21005, U.S.A

Copyright

(Copyright © 2007, John Wiley and Sons)

DOI

10.1002/fam.939

PMID

unavailable

Abstract

A gypsum wall assembly was exposed to an intense real-scale compartment fire. For the wall assembly, temperatures were measured at the exposed face, within the stud cavity, and at the unexposed face during the fire exposure. Total heat flux gauges were used to measure the temporal variation of the energy incident on the walls, and cameras, both visual and infrared, were used to image the unexposed face of the wall assembly during the fire exposure. The behaviour of the wall assembly under the fire load is discussed as are current model results for a simulation of the fire test.

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