000 01844nab a2200217 4500
005 20260520001111.0
008 260224s2015 xxu ing
041 _aInglés
245 0 0 _aExperimental and Theoretical Study for Tunnel Fires with Natural Ventilation
260 _a
_b
_cmayo 2015
270 _a14/09/2015 ; 14/09/2015
300 _a15 p. ; 691-706
520 _aTranscripción del resúmen realizada por el autor: Natural ventilation mode is a ventilation strategy to control fire-induced hot smoke and provide safe and secure egress routes in subway tunnels. The study was carried out in a 1/15 reduced-scale tunnel using Froude modeling technique to investigate the fire-induced smoke temperature distribution and smoke exhaust through vertical shafts located at the ceiling of the scaled tunnel. A porous bed burner placed on the tunnel floor was used to simulate the fire source and propane was used as the fuel. The temperature distributions under the tunnel ceiling were measured using a series of K-type thermocouples to analyze smoke temperature distribution characteristics. The smoke temperature and velocity in the ventilation shafts were also monitored using hot wire anemometers. The effect of fire size, shaft distance, shaft geometry, train blockage on ceiling temperature distributions and smoke exhaust from shafts were studied. Based on the one-dimensional theory, the ceiling temperature decay characteristics were studied. Finally, empirical equations for predicting ceiling temperature distributions and smoke exhaust in tunnel fires with a natural ventilation mode were derived.
581 _a3
773 0 _tFire Technology
_g51
942 _cARTICULO
100 1 _aYuan, Zhongyuan
_954808
100 1 _aLei, Bo
_954809
100 1 _aKashef, Ahmed
_952421
999 _c189178
_d189178