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international conference on intelligent computation technology and automation | 2014

Study on Ventilation and Smoke Control System of Subway Transfer Stations

Yanfeng Li; Yi-Xin Zhang; Xinxin Lin; Feng Xiao; Junmei Li

As a representative form of public transportation, subway system is undertaken to satisfy constantly increasing transport needs and developed commonly in many big cities. Among several catastrophes in subway stations, including fire, flood, earthquake, explosion, toxic gas leakage etc., fire is the most threatening hazard to passengers. Subway fires had caused huge casualties and property losses during the past decades. With the development of metro line network, more and more transfer stations appeared. Compared with the general subway station, smoke control system of transfer station has its particularity and complexity. A typical cross-shaped metro transfer station is used as an example for the study. Effect of two different schemes of ventilation and smoke control in extreme conditions in which multiple fires happen simultaneously on both platforms in the transfer station are studied by using numerical simulation method. In fire scenario No.1, air is supplied in underground one while independent smoke control is taken in underground two and three. In scenario No.2, based on scenario No.1, tunnel fans are used to assist in smoke control by opening screen door. Fire source is designed for t2 rapid fire with peak 2MW. The results show that, smoke spread in second underground floor can be controlled effectively by both schemes, the measure used in scenario 2 effectively raises the wind speed downward the stairs while lower temperature around stairs, so that stairs round fire source can be used as emergency evacuation passages for a longer time, guaranteeing a better smoke control performance in interchange station. Connecting the underground third floor with tunnel ventilation system by opening PSD can increase the downward air flow velocity and decrease the air temperature at staircases near the fire. Period during which the staircase near fire can be used for evacuation is increased. Reliable smoke control performance for transfer station can be got.


Procedia Engineering | 2012

Life Safety Evacuation for Cross Interchange Subway Station fire

Yanfeng Li; Xinxin Lin; Xiao Feng; Chao Wang; Junmei Li


Procedia Engineering | 2012

Study on Evacuation in Subway Transfer Station Fire by STEPS

Yanfeng Li; Xiaolong Sun; Xiao Feng; Chao Wang; Junmei Li


Procedia Engineering | 2012

Numerical Studies on Effects of Cavity Width on Smoke Spread in Double-skin Facade

Junmei Li; Xuefei Xing; Cheng Hu; Yanfeng Li; Chenchen Yin; Shanshan Liu


Archive | 2012

Multifunctional building automation system simple experimental table

Yanfeng Li; Jiang Bian; Yuying Sun; Peizhe Tian; Junmei Li; Congcong Xu; Chenchen Yin; Huichen Wang


Tunnelling and Underground Space Technology | 2018

Numerical investigation on the maximum ceiling temperature and longitudinal decay in a sealing tunnel fire

Youbo Huang; Yanfeng Li; Bingyan Dong; Junmei Li; Qiang Liang


Procedia Engineering | 2014

Research on smoke flow in a tunnel fire of subway system

Yanfeng Li; Jiang Bian; Junmei Li


Procedia Engineering | 2012

Experimental Study of Smoke Spread in Titled Urban Traffic Tunnels Fires

Junmei Li; Shanshan Liu; Yanfeng Li; Chao Chen; Xuan Liu; Chenchen Yin


Procedia Engineering | 2014

Numerical studies on smoke spread in urban underground tunnel with horizontal junctions

Junmei Li; Xiao Feng; Yanfeng Li; Peng Xu; Chenchen Yin; Chao Chen; Yan Li


Archive | 2012

Multi-functional urban traffic tunnel fire smoke diffusion model device

Yanfeng Li; Xiaoyang Liu; Mingxing Zhao; Junmei Li; Xiaolong Sun; Xinxin Lin

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Junmei Li

Beijing University of Technology

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Youbo Huang

Beijing University of Technology

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Xiao Feng

Beijing University of Technology

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Chenchen Yin

Beijing University of Technology

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Bingyan Dong

Hebei University of Technology

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Chao Wang

Beijing University of Technology

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Xinxin Lin

Beijing University of Technology

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Chao Chen

Beijing University of Technology

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Jin Zhang

Beijing University of Technology

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Qiwei Dong

Beijing University of Technology

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