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Title: Underground evacuation and smoke flow simulation in Guangzhou international financial city during fire
Authors: Liao, L
Li, H
Li, P
Bao, X
Hong, C
Wang, D
Xie, X
Fan, J
Wu, P 
Issue Date: Jul-2023
Source: Fire, July 2023, v. 6, no. 7, 266
Abstract: The underground space in the Starting Area in the Guangzhou International Financial City is being developed to save resources and improve land benefits. However, high-density development has increased the likelihood of fires. Therefore, PyroSim and Pathfinder were used in this study to investigate the fire smoke flow and personnel evacuation in the underground space in the Starting Area. Firstly, the 2D temperature cloud map and the temperature and visibility recorded by sensor A over time of Zone I in the Starting Area were analyzed. Then, the 3D smoke diffusion, the 3D temperature diffusion map, and the value of thermocouple and smoke obscuration recorded by sensors of Zone II were analyzed. Next, smoke flow of Zones III to V in the Starting Area under different fire source positions was simulated. Finally, the personnel evacuation model was established to simulate the personnel flow rate and density. The simulation results show that the available safe evacuation time for people is 530 s when all the firefighting facilities fail and fire breaks out in Zone I. For large public spaces, the overall spread speed of fire is fast, which requires the use of the fire control system in time to control the spread of fire. Fortunately, the space of evacuation time is relatively sufficient; it only takes 143 s to evacuate personnel safely in Zone II, which is sufficient compared to the time for the fire to completely spread. Suggestions were made for fire safety management, such as evacuating personnel to the safety exits of other adjacent areas during a fire and installing linkage fire alarm systems in large public space s.
Keywords: Pathfinder
Personnel evacuation
Personnel flow rate
PyroSim
Smoke flow
Underground space
Underground space
Publisher: MDPI AG
Journal: Fire 
EISSN: 2571-6255
DOI: 10.3390/fire6070266
Rights: © 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
The following publication Liao L, Li H, Li P, Bao X, Hong C, Wang D, Xie X, Fan J, Wu P. Underground Evacuation and Smoke Flow Simulation in Guangzhou International Financial City during Fire. Fire. 2023; 6(7):266 is available at https://doi.org/10.3390/fire6070266.
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