朱 杰, 杨天佑, 张立龙, 李 俊. 单纯热烟浮力作用下竖井结构内火灾烟气温度变化规律研究[J]. 工程力学, 2011, 28(8): 198-207.
引用本文: 朱 杰, 杨天佑, 张立龙, 李 俊. 单纯热烟浮力作用下竖井结构内火灾烟气温度变化规律研究[J]. 工程力学, 2011, 28(8): 198-207.
ZHU Jie, YANG Tian-you, ZHANG Li-long, LI Jun. TEMPERATURE CHANGE LAW OF FIRE SMOKE IN SHAFT STRUCTURE UNDER MERE HOT SMOKE BUOYANCY[J]. Engineering Mechanics, 2011, 28(8): 198-207.
Citation: ZHU Jie, YANG Tian-you, ZHANG Li-long, LI Jun. TEMPERATURE CHANGE LAW OF FIRE SMOKE IN SHAFT STRUCTURE UNDER MERE HOT SMOKE BUOYANCY[J]. Engineering Mechanics, 2011, 28(8): 198-207.

单纯热烟浮力作用下竖井结构内火灾烟气温度变化规律研究

TEMPERATURE CHANGE LAW OF FIRE SMOKE IN SHAFT STRUCTURE UNDER MERE HOT SMOKE BUOYANCY

  • 摘要: 热烟浮力对高层(超高层)建筑竖井结构内火灾烟气蔓延规律具有较大影响。该文采用现场实验、理论分析及场模拟相结合的研究方法,通过设置8个不同火灾场景,分别测试了不同火源功率条件下不同时间以及不同竖井高度处的温度变化情况,最终总结出单纯热烟浮力作用下竖井结构内的烟气温度变化规律,为高层建筑实际防火设计及人员疏散提供理论基础和实践指导依据。

     

    Abstract: Hot smoke buoyancy has a greater influence on movement law of fire smoke in a shaft structure of high-rise (super high-rise) buildings.This paper respectively tests the processes of change in temperature at different heights of shaft at different times under different ignition source power conditions using a research approach integrated with field experiments, theoretical analysis and field simulation and setting eight different fire scenes, and finally summarizes the movement law of smoke in the shaft structure under mere hot smoke buoyancy, in order to provide theoretical basis and practical guidance in actual fire prevention design and evacuation of high-rise buildings.

     

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