Fire modeling in a nonventilated corridor

Author:

Lulea Marius Dorin,Iordache Vlad,Năstase Ilinca

Abstract

The main objective of this study was to determine the effect of fire in a nonventilated corridor. A real-scale model of a corridor has been modeled in Fire Dynamics Simulator(F.D.S.) in order to determine the evolution of indoor temperatures, the visibility and the oxygen quantities during a fire. The start time of a sprinkler has also been determined. The use of sprinklers in buildings has become a necessity and a requirement imposed by technical norms. The provision of this type of installation has become a common feature in buildings with a high fire risk, with two main effects: fire extinction and protection of structural and partition elements from high temperatures[15]. The ultimate goal is to ensure optimal conditions for saving the building users, intervention teams and maintaining the stability of the building. Low temperatures and good visibility on the escape routes during a fire are the basic conditions to ensure the optimal evacuation of users.

Publisher

EDP Sciences

Reference15 articles.

1. Legea 307:2006, privind Apărarea împotriva incendiilor;

2. P118-99 Normativ de siguranţă la foc a construcţiilor

3. Baldwin R., Thomas P.H., Passive and Active Fire Protection-The optimum Combination, Department of Environment and Fire Offices’ Committee, 1974

4. P118/2: 2013 Normativ privind securitatea la incendiu a construcţiilor. Partea a II-a-Instalaţii de stingere;

5. NFPA 13: 2017, Standard for the Installation of Sprinkler Systems;

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