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Numerical Simulation Study on Impact of Slope on Smoke Temperature Distribution and Smoke Spread Pattern in Spiral Tunnel Fires

机译:斜坡对汽温分布对螺旋隧道火灾烟雾扩散模式的数值模拟研究

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The spiral tunnel arises as a new form of tunnel, with great differences in fire development pattern when compared with traditional straight line tunnel, this paper takes method of numerical simulation, based on computation fluid dynamics theory and fire-turbulence numerical simulation theory, establishing a full-scale spiral tunnel model, and applies CFX simulation software to research full-scale spiral tunnel fire and its ventilation condition. The results indicate that with increasing tunnel slope, high temperature area gradually extends to downstream area, high temperature mainly distributes near fire source area, and symmetrically distributes among the fire center point; With increasing tunnel slope, the highest temperature underneath tunnel arch rises first followed by a downward trend and then rising again, which strengthens chimney effect, and promotes more fresh cold air flow into the tunnel, suppressing fire smoke backflow and simultaneously accelerating fire smoke spread to downstream area; Fire plume presents vertical slender shape with 1% or 3% tunnel slope, and burning flame hits tunnel arch and then extending all around into the ceiling jet flow, when tunnel slope increases to 5% or 7%, fire plume cross section grows bigger and wider with unstable burning flame swaying in all directions, integrally incline to fire downstream.
机译:螺旋隧道作为一种新形式的隧道,与传统的直线隧道相比,火灾开发模式具有巨大差异,本文采用了数值模拟的方法,基于计算流体动力学理论和灭火器数值模拟理论,建立了全尺寸螺旋隧道模型,并应用CFX仿真软件,以研究全尺寸螺旋隧道火及其通风条件。结果表明,随着隧道坡度的增加,高温面积逐渐延伸到下游区域,高温主要分布在消防源区附近,并对火灾中心点进行对称分布;随着隧道坡度的增加,隧道拱下的最高温度首先上升,然后再次趋于下降,然后再次升起,这加强了烟囱效应,并促进了更新鲜的冷空气流入隧道,抑制火灾烟雾并同时加速火灾烟雾扩散到下游地区;消防羽流呈现垂直细长形状,隧道坡度为1%或3%隧道坡,燃烧火焰击中隧道拱门,然后隧道斜坡延伸到天花板射流流入,当隧道斜率增加到5%或7%时,火羽毛横截面变大而且在所有方向上摇曳的不稳定燃烧火焰宽,一体地倾向于下游。

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