消防科学与技术 ›› 2024, Vol. 43 ›› Issue (9): 1266-1271.
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吴双良
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Wu Shuangliang
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摘要: 为探讨纵坡隧道利用烟囱效应诱导气流进行火灾烟气控制的可行性,系统开展了烟囱效应作用下倾斜隧道火灾烟气流动规律研究。揭示了倾斜隧道中由坡度产生的烟囱效应作用对火灾烟气蔓延规律的影响,分析了自然通风条件下的倾斜隧道火灾烟气非对称流动效应。结果表明,随着高程差的增大,正向流动的烟气、空气质量流量从50%增加至约100%;而负向流动的烟气、空气质量流量从50%衰减至约0%。利用高程差作为特征参数进行定量表征,提出了火灾烟气与新鲜空气的质量流量经验公式,并推导出了烟气最大逆流长度预测公式。
关键词: 倾斜隧道, 非对称流动, 质量流量, 逆流长度
Abstract: In order to study the feasibility of fire smoke control in inclined tunnel by using environmental wind induced by stack effect, a systematic study on smoke flow distribution in inclined tunnel under the effect of environmental wind was carried out. The influence of stack effect caused by tunnel slope on smoke flow distribution in inclined tunnel is revealed, and the asymmetric flow effect of smoke in inclined tunnel under natural ventilation is analyzed. Result shows that as the elevation difference increases,the mass flow rate of smoke and air flowing in the positive direction increases from 50% to a value close to 100%, while that flowing in the negative direction decreases from 50% to a value close to 0%. By using elevation difference as the characteristic parameter, the empirical formula of mass flow rate of outflowing smoke and entraining air is presented. In addition, the prediction formula of maximum smoke back-layering length is proposed.
Key words: inclined tunnel, asymmetric flow, mass flow rate, back-layering length
吴双良. 自然通风倾斜隧道火灾烟气最大逆流长度研究[J]. 消防科学与技术, 2024, 43(9): 1266-1271.
Wu Shuangliang. Study on smoke maximum back-layering length in a ventilated inclined tunnel fire[J]. Fire Science and Technology, 2024, 43(9): 1266-1271.
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