首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2008 >NUMERICAL STUDY OF SMOKE PROPAGATION IN A SIMULATED FIRE IN A WAGON WITHIN A SUBWAY TUNNEL
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NUMERICAL STUDY OF SMOKE PROPAGATION IN A SIMULATED FIRE IN A WAGON WITHIN A SUBWAY TUNNEL

机译:地铁隧道内瓦格模拟火中烟气传播的数值研究

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This work deals with the numerical (CFD) analysis of the smoke propagation during fires within closed environments. It is evaluated the capacity of the emergency ventilation system in controlling the smoke propagation and minimizing the deadly impact of an eventual fire in a wagon within the Metro de Caracas subway tunnel on the passengers safety. For the study, it was chosen the tunnel section between Teatros and Nuevo Circo subway stations, which consists of two parallel independent twin tunnels, connected through a transverse passage. The tunnels are provided by a longitudinal ventilation system, integrated by a set of reversible fans located at both ends of the tunnels.Three stages were considered in the study: (a) Model set up; (b) Mesh sensitivity analysis; (c) Validation of the physical-numerical parameters to be used in the numerical model; and (d) Simulation of fire scenarios in Metro de Caracas subway stations. Stages (b)-(c), aimed to testing and calibrating the CFD tool (ANSYS-CFX10™), focused on reproducing experimental data from Vauquelin and Megret [1], who studied the smoke propagation in a fire within a 1:20 scale road tunnel. Stage (d) critical scenarios were established via a preliminary discussion with safety experts from Metro de Caracas, in order to reduce the computer memory and the number of simulations to be performed. The analyses assessed the reliability of escape routes and alternative paths for the evacuation of passengers. Additionally, the smoke front movement was particularly computed, as a function of time, in order to determine the possible presence of the "backlayering" phenomenon [5].Results demonstrate the strengths and weaknesses of the current ventilation system in the event of a fire in the subway tunnel, and suggest new strategies to address this potentially lethal event to minimize the risks for passengers.
机译:这项工作涉及封闭环境中火灾期间烟雾传播的数值分析(CFD)。评估了紧急通风系统控制烟尘传播的能力,并最大程度地减少了加拉加斯大都会地铁隧道内货车车厢中最终起火对乘客安全的致命影响。为了进行研究,选择了Teatros和Nuevo Circo地铁站之间的隧道部分,该部分由两条平行的独立双隧道组成,通过一条横向通道相连。隧道由纵向通风系统提供,纵向通风系统由位于隧道两端的一组可逆风扇组成。 该研究考虑了三个阶段:(a)建立模型; (b)网格灵敏度分析; (c)验证将在数值模型中使用的物理数字参数; (d)模拟加拉加斯大都会地铁站的火灾情况。 (b)-(c)阶段旨在测试和校准CFD工具(ANSYS-CFX10™),其重点是从Vauquelin和Megret [1]再现实验数据,他们研究了火灾在1:20范围内的烟雾传播规模公路隧道。通过与Metro de Caracas的安全专家进行初步讨论,确定了阶段(d)的关键情景,以减少计算机内存和要执行的模拟次数。分析评估了逃生路线和疏散乘客路径的可靠性。另外,特别根据时间来计算烟气的前移,以便确定是否可能存在“背层”现象[5]。 结果证明了地铁隧道发生火灾时当前通风系统的优缺点,并提出了解决这一潜在致命事件的新策略,以最大程度地降低乘客的风险。

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