College of Transportation Engineering, Chang'an University, Xi'an, China.
School of Humanities, Chang'an University, Xi'an, China.
PLoS One. 2024 Feb 16;19(2):e0298622. doi: 10.1371/journal.pone.0298622. eCollection 2024.
This research establishes an emergency evacuation time model specifically designed for subway stations with complex structures. The model takes into account multiple factors, including passenger flow rate, subway facility parameters, and crowd density, to accurately assess evacuation times. It considers the impact of horizontal walking distance, flow rate, subway train size, and stair parameters on the overall evacuation process. By identifying bottleneck points such as gates, car doors, and stairs, the model facilitates the evaluation of evacuation capacity and the formulation of effective evacuation plans, particularly in multiline subway transfer stations. The good consistency is achieved between the calculated evacuation time and simulated results using the Pathfinder software (with the relative error of 5.4%). To address urban traffic congestion and enhance subway station safety, the study recommends implemented measures for emergency diversion and passenger flow control. Additionally, the research presents characteristic mathematical models for various evacuation routes by considering the structural and temporal characteristics of metro systems. These models provide valuable guidance for conducting large-scale passenger evacuation simulations in complex environments. Future research can further enhance the model by incorporating psychological factors, evacuation signage, and strategies for vulnerable populations. Overall, this study contributes to a better understanding of evacuation dynamics and provides practical insights to improve safety and efficiency in subway systems.
本研究建立了一个专门针对结构复杂的地铁站的应急疏散时间模型。该模型考虑了多个因素,包括客流量、地铁设施参数和人群密度,以准确评估疏散时间。它考虑了水平步行距离、流量、地铁列车大小和楼梯参数对整体疏散过程的影响。通过识别瓶颈点,如门、车门和楼梯,该模型有助于评估疏散能力和制定有效的疏散计划,特别是在多线路地铁换乘站。使用 Pathfinder 软件计算的疏散时间与模拟结果之间达到了良好的一致性(相对误差为 5.4%)。为了解决城市交通拥堵问题,提高地铁站的安全性,本研究建议采取应急分流和客流控制措施。此外,该研究还通过考虑地铁系统的结构和时间特性,为各种疏散路线提供了特征数学模型。这些模型为在复杂环境中进行大规模乘客疏散模拟提供了有价值的指导。未来的研究可以通过纳入心理因素、疏散标志和弱势群体策略来进一步改进模型。总的来说,本研究有助于更好地理解疏散动态,并为提高地铁系统的安全性和效率提供了实用的见解。