基于流场优化的高速列车客室空气颗粒物传播距离抑制效果分析

Analysis of Suppression Effect on Air Particulate Matter Propagation Distance in High-speed Train Passenger Compartments Based on Flow Field Optimization

  • 摘要:
    目的 在密闭的高速列车客室环境中,空气流动受限,污染物会在有限空间内积聚并传播,直接影响到旅客的乘坐舒适性与安全性。污染物的传播不仅受空气流动和通风方式的影响,还受乘客活动、污染源分布、车厢几何结构等因素的影响。客室流场环境的改善,不仅能提高乘坐舒适性,还能有效提升空气质量,减少有害物质在客室内的积聚与扩散,从而改善乘客的乘车安全,有必要对此进行研究。
    方法 系统调研与总结了国内外高速列车及地铁列车客室在乘坐舒适性、流场特性及病毒传播等领域的研究现状。分析了客室不同区域空气速度场与温度场的分布规律。从分区控制的角度出发,在客室底部增设了多个废排出口(共6种增设方案),使得每个区域的污染物能够及时排出,从而减少了污染物在区域内的滞留时间,减小了客室内颗粒物的传播范围,有效抑制了污染物在空间内的扩散。
    结果及结论 在客室底部增设废排出口后,可有效减少污染物的低速滞留区域。多方案仿真对比分析表明:在飞沫纵向传播抑制效果最优的废排出口增设方案下,飞沫在60 s、120 s时的最大纵向扩散距离分别为5.32 m、9.81 m。

     

    Abstract:
    Objective In the enclosed environment of high-speed train passenger compartments, air circulation is restricted, and pollutants may accumulate and spread within the limited space, directly affecting passenger comfort and safety. The propagation of pollutants is influenced not only by air movement and ventilation modes, but also by factors such as passenger activities, pollution sources distribution, and compartment geometric structure. Improving the flow field environment within the passenger compartment can not only enhance ride comfort but also effectively improve air quality and reduce the accumulation and diffusion of harmful substances inside the compartment, thereby improving passenger safety during travel. Therefore, it is necessary to conduct research on this issue.
    Method The current research status in the fields of ride comfort, flow field characteristics, and virus transmission in passenger compartments of high-speed trains and metro trains in the world is systematically investigated and summarized. The distribution patterns of temperature fields and airflow fields in different passenger compartment areas are analyzed. From the perspective of zonal control, multiple exhaust outlets are added at the bottom of the passenger compartment (a total of six additional schemes), enabling pollutants in each area to be discharged in a timely manner, reducing the residence time of pollutants within each zone, thus decreases the propagation range of particulate matter inside the compartment, and effectively suppresses the spatial diffusion of pollutants.
    Result & Conclusion  After adding exhaust outlets at the bottom of the passenger compartment, the residence time of pollutant in low-velocity residence zones can be effectively reduced. A comparative simulation analysis of multiple schemes shows that under the exhaust outlet configuration that achieves the optimal suppression effect on the longitudinal propagation of droplets, the maximum longitudinal diffusion distance of droplets is 5.32 m at 60 s, and 9.81 m at 120 s.

     

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