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Numerical evaluation of ventilation efficiency in underground metro rail transport systems

机译:地铁铁路运输系统通风效率的数值评价

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Ventilation system is the most important component of the subway systems when events involving heavy smoke occur. Consequently, the objective of this study is to analyse the ventilation efficiency in one of the most dangerous scenario: train on fire and stopped in the tunnel, the incident demanding immediate passenger evacuation. The ventilation strategy taken into account is based on mid-tunnel fan plant located in separate construction in conjunction with stations mechanical ventilation. The analysis is performed using Computational Fluid Dynamics (CFD) modeling. The approach is based on the introduction of source terms in conservation equations for energy and dioxide carbon (CO2), in order to deal with the heat and CO2 due to fire. The equation expressing the conservation of CO2 is added to the basic equations governing a turbulent non-isothermal air flow in the CFD model. This method allowed achieving values of velocity, temperature and CO2 concentrations all over the computational domain. The results show that the ventilation system taken into account provides the secure evacuation of passengers all over the simulation time. The evacuation process toward the nearest station is not at all disturbed by too high air velocities, high temperatures or dangerous CO2 concentrations.
机译:通风系统是涉及沉重烟雾的事件时,地铁系统最重要的组成部分。因此,本研究的目的是分析最危险的场景之一:火车在隧道中停车,事件要求立即乘客疏散。考虑的通风策略是基于中隧道风扇工厂,该工厂与机械通风相结合。使用计算流体动力学(CFD)建模进行分析。该方法基于引入能量和二氧化碳碳(CO2)的保护方程中的源术语,以便由于火灾而应对热量和二氧化碳。表达CO2保存的等式被添加到CFD模型中的湍流非等温空气流动的基本方程中。该方法允许在计算域中实现速度,温度和CO2浓度的值。结果表明,考虑的通风系统提供了在模拟时间内全部安全撤离乘客。朝向最近的车站的疏散过程根本不受过高的空气速度,高温或危险的CO2浓度。

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