A Numerical Study for the Operation of Partial Smoke Extraction System in Tunnel Fire
Yong-Ho Yoo, Eui-Ju Lee, Hyun-Jun Shin, Shin Han-Chol
Abstract
Yong-Ho Yoo, Eui-Ju Lee, Hyun-Jun Shin, Shin Han-Chol
Abstract
The objective of this study is to analyze the smoke extraction efficiency using by the partial extraction system with CFD simulation for case of tunnel fire. The Comparison of CFD results with the preceding scaled model test results, it is equal to the smoke extraction efficiency and smoke stratification in tunnel by the partial smoke extraction system (distributed damper). It shows that the smoke extraction efficiency is increased about 7% by the distributed damper which is opened near fire, compare with the distributed damper which is all opened. The case of the fire occurs on a traffic jam in a tunnel, it is proposed that the operating method of partial smoke extraction system for the escaping passengers.
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The objective of this study is to analyze the smoke extraction efficiency using by the partial extraction system with CFD simulation for case of tunnel fire. The Comparison of CFD results with the preceding scaled model test results, it is equal to the smoke extraction efficiency and smoke stratification in tunnel by the partial smoke extraction system (distributed damper). It shows that the smoke extraction efficiency is increased about 7% by the distributed damper which is opened near fire, compare with the distributed damper which is all opened. The case of the fire occurs on a traffic jam in a tunnel, it is proposed that the operating method of partial smoke extraction system for the escaping passengers.
Key concepts: Smoke, Damper, Extraction (chemistry), Stratification (seeds), Engineering, Computational fluid dynamics, Environmental science, Marine engineering