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Numerical Simulation of Fire in Underground Commercial Street

Haowei Yao, Kefeng Lv, Youxin Li, Jin-Guang Zhang, Zhong-Bin Lv, Dong Wang, Zhenyu Zhan, Xiaoge Wei, Huai-Tao Song, Hengjie Qin

2022Computational Intelligence and Neuroscience15 citationsDOIOpen Access PDF

Abstract

In this study, while aiming at the prevention of fire accidents in underground commercial streets, an underground commercial street is selected as a research object, and the building fire is numerically simulated using the PyroSim software. Fire simulation scenarios are divided according to different fire zones by analyzing the temperature, carbon monoxide (CO) concentration, and visibility in the smoke layer inside a building. The available safe evacuation time is calculated according to the critical fire hazard judgment conditions. We found that the time when the flue gas temperature and CO concentration reached the critical value in the fire site was longer than the time when the visibility reached the critical value reducing or even avoiding the spread of smoke from the fire area to the evacuation stairs can provide effective help for crowd evacuation. Finally, the safety of the building is evaluated, and fire prevention countermeasures are defined based on the actual situation and fire numerical simulation results to reduce fire incidence, casualties, and economic losses.

Topics & Concepts

SmokeVisibilityEnvironmental scienceHazardFire hazardComputer scienceComputer simulationMeteorologySimulationGeographyEnvironmental protectionChemistryOrganic chemistryEvacuation and Crowd DynamicsFire dynamics and safety researchFire Detection and Safety Systems
Numerical Simulation of Fire in Underground Commercial Street | Litcius