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Inclined Neutral Plane and Smoke Temperature Spatial Distribution in Z-Shaped Passages Under Fire Scenarios

  • 11-10-2025

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Abstract

This study delves into the complexities of smoke movement in Z-shaped passages, a common feature in underground infrastructures like subway entrances and mine laneways. The research focuses on four key areas: the inclined neutral plane (NP), smoke temperature spatial distribution, the influence of passage geometry and heat release rate (HRR) on NP location, and the development of a predictive model for NP locations under various fire scenarios. The study reveals that the NP in Z-shaped passages is inclined due to vertical temperature gradients, which significantly affects smoke flow patterns and evacuation safety. Through theoretical analysis and numerical simulations using the Fire Dynamics Simulator (FDS), the research quantifies the relationship between smoke temperature distribution and NP inclination. It also assesses the effects of passage geometry and HRR, providing a predictive model that enhances the understanding of smoke behavior in these complex structures. The findings are crucial for designing effective fire safety systems and ensuring safe evacuation routes in underground infrastructures.

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Title
Inclined Neutral Plane and Smoke Temperature Spatial Distribution in Z-Shaped Passages Under Fire Scenarios
Authors
Zekun Li
Miaocheng Weng
Fang Liu
Publication date
11-10-2025
Publisher
Springer US
Published in
Fire Technology
Print ISSN: 0015-2684
Electronic ISSN: 1572-8099
DOI
https://doi.org/10.1007/s10694-025-01812-z
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