The maximum excess temperature of fire-induced smoke flow beneath an unconfined ceiling at high altitude

Author:

Liu Jiahao1,Zhou Zhihui2,Wang Jian3,Xie Qimiao1,Wang Jinhui1,Yuen Richard4

Affiliation:

1. Shanghai Maritime University, College of Ocean Science and Engineering, Shanghai, China

2. China Waterborne Transport Research Institute, Beijing, China

3. University of Science and Technology of China, State Key Laboratory of Fire Science, Hefei, China

4. City University of Hong Kong, Department of Architecture and Civil Engineering, Hong Kong, China

Abstract

Conventional correlations for the maximum temperature under a ceiling were mainly developed based on the experimental results at atmospheric pressure. For high-altitude environment with lower ambient pressure, their feasibility needs to be reexamined. In this paper, a sequence of pool fires with different dimensions and fuel types was performed under a horizontal unconfined ceiling to measure the maximum excess temperature in a high-altitude city, Lhasa (3650 m / 64.3 kPa). The results show that the maximum smoke temperatures beneath the ceiling at high altitude are significant higher than the predicted values by Alpert?s model. Considering the effects of ambient pressure and entrainment coefficient, a new theoretical model for predicting the maximum excess temperature was proposed based on the ideal plume assumption. The current results together with the data in the literature which conform with Alpert?s model successfully converge by employing the proposed correlation.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

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