Numerical research on the influence of ventilation velocity on fire smoke distribution in bifurcated roadway
DING Cui
Abstract:In order to investigate the influence of ventilation velocity on fire smoke distribution in bifurcated roadway,the computa-tional fluid dynamics(CFD)numerical method was adopted to simulate the fires located in upstream of main-roadway.The influ-ence of ventilation velocity on the length of smoke backflow and the temperature distribution and CO mass concentration distribu-tion in main-roadway and sub-roadway were analyzed.The results showed that the length of smoke backflow decreased linearly as the increasing of ventilation velocity.The average temperature at the height of breathing zone in sub-roadway was little higher than that in main-roadway downstream under different ventilation velocity condition,and the biggest temperature difference is 8℃.The relationship between ventilation velocity and the average temperature at the height of breathing zone in main-roadway downstream and in sub-roadway fitted in power function trend.The CO mass concentration difference between main-roadway downstream and sub-roadway decreased gradually as the increasing of ventilation velocity,and the smallest mass concentration difference was 9.25 mg/m3.The relationship between ventilation velocity and the CO average mass concentration at the height of breathing zone in main-roadway downstream and in sub-roadway fitted in power function trend.When the ventilation velocity is 1-3 m/s,the workers in the sub-roadway are less susceptible to fire smoke and toxic gases,and when the ventilation velocity is 1.5-3 m/s,the workers in the main-roadway downstream are less susceptible to fire smoke and toxic gases
Keywords:mine firebifurcated roadwayventilation velocitysmoke distributionnumerical simulation
Publication Date:2025-01-19
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:7( 93-99 )
