Numerical Simulation of Smoke Control in Underground Space

Author:

Yao Hao-wei12ORCID,Li You-xin12,Lv Ke-feng12,Zhang Jin-guang3,Lv Zhong-bin3,Wang Dong3,Zhan Zhen-yu3,Wei Xiao-ge12,Song Huai-tao12,Qin Heng-jie12

Affiliation:

1. College of Building Environment Engineering, Zhengzhou University of Light Industry, Zhengzhou 450001, China

2. Zhengzhou Key Laboratory of Electric Power Fire Safety, Zhengzhou 450001, China

3. State Grid Henan Electric Power Company, Zhengzhou 450052, China

Abstract

As the underground space is relatively closed compared to other buildings, the space is hardly connected to the outside world through entrances and exits, which makes it difficult to ventilate and exchange heat with the outside. In this case, it is easy to cause a large number of casualties when a fire breaks out. When the fire happens smoke will be discharged merely by the mechanical exhaust, and air system should work simultaneously to replenish the oxygen inside. By setting four-group models, the paper analyzes the strategies for smoke extraction and air makeup in the underground construction. The paper points out that when the fire happens in a smoke bay, the neighborhood smoke extraction fan should be opened and the air makeup system should not be located at the top to disturb the smoke layer. By comparing and analyzing the performance of the smoke extraction and air conditioning system, the casualties caused by the high temperature toxic smoke from the fire can be reduced as far as possible.

Funder

State Grid Corporation of China

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Reference20 articles.

1. Climatic design principles of underground spaces using CFD simulation;E. S. Darbani;Civil and Environmental Engineering,2020

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3. An enhanced VR system for fire drill in underground space based on FDS;S. H. I. Lai;China Safety Science Journal,2019

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5. Scale modeling experiments of fire-induced smoke and extraction via mechanical ventilation in an underground hydropower plant

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