Postflashover fires ? an overview of the research at the national research council of Canada (NRCC), 1970?1985
Author(s) -
T. Z. Harmathy
Publication year - 1986
Publication title -
fire technology
Language(s) - French
Resource type - Journals
SCImago Journal Rank - 0.544
H-Index - 43
eISSN - 1572-8099
pISSN - 0015-2684
DOI - 10.1007/bf01043125
Subject(s) - environmental science , flame spread , simple (philosophy) , engineering , fire control , compartment (ship) , fire protection , meteorology , forensic engineering , civil engineering , geology , geography , chemistry , philosophy , oceanography , cartography , organic chemistry , epistemology , combustion
The NRCC model of fully developed compartment fires is discussed. The model offers an explanation for the findings that "ventilation control" is related to the pyrolysis mechanism and is not a result of scarcity of air in the fire compartment, and that thermal feedback is of secondary importance in "burning" (pyrolysis) of cellulosic fuels. The normalized heat load is a scalar quantity that depends on the total heat absorbed by the compartment boundaries during the fire incident, and is practically independent of the temperature history of the fire. The normalized heat load concept offers a simple means for converting fire severities into fire resistance requirements, and makes it possible to design buildings for prescribed levels of structural fire safety. The potential of fires to spread by convection and the expected characteristics of fires of noncharring plastics are also discussed.\uc9tude du mod\ue8le du CNRC pour feux de compartiment en pleine combustion. Il fournit une explication des conclusions voulant que le "contr\uf4le de la ventilation" soit li\ue9 au m\ue9canisme de la pyrolyse et ne r\ue9sulte pas de la raret\ue9 de l'air dans le compartiment en feu, et que la r\ue9troaction thermique joue un r\uf4le secondaire dans la combustion ( pyrolyse) des produits cellulosiques. Il s'agit d'une quantit\ue9 scalaire qui d\ue9pend de la chaleur globale absorb\ue9e par l'enveloppe du compartiment au cours de l'incendie, et est pratiquement ind\ue9pendante de l'\ue9volution des temp\ue9ratures pendant la dur\ue9e du feu. Le concept de charge calorifique normalis\ue9e constitue un moyen simple de convertir les degr\ue9s de gravit\ue9 d'incendies en exigences de r\ue9sistance au feu, et permet de concevoir les b\ue2timents de fa\ue7on \ue0 ce qu'ils respedctent des niveaux prescrits des s\ue9curit\ue9 incendie. Ce document traite aussi des risques de propagation des incendies par convection et des caract\ue9ristiques des feux de plastiques ne carbonisant pas.Reprinted as NRC-IRC report IRC-P-1418R\ue9imprim\ue9 comme NRC-IRC rapport IRC-P-1418Peer reviewed: YesNRC publication: Ye
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