高速列车密闭车厢内异质乘客的疏散模拟

IF 2.8 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Physica A: Statistical Mechanics and its Applications Pub Date : 2024-11-10 DOI:10.1016/j.physa.2024.130220
Shuchao Cao , Ying Zhou , Weihao Ma , Xiaolian Li , Ming Yao
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引用次数: 0

摘要

高速列车车厢内的乘客疏散是一个关键问题,以往的研究尚未对其进行充分的探索和理解。为了研究乘客从密闭车厢内疏散的过程,本文提出了一种考虑乘客异质性的细网格蜂窝自动机模型。分析了各种情况下乘客属性、携带行李行为、出口宽度和窗口疏散模式对疏散动力学的影响。模拟结果表明,疏散效率随着车厢内老年乘客比例的增加而降低。疏散时间随携带行李比例和领取行李时间的增加而增加。乘客携带行李靠近内门容易堵塞过道。因此,适当增加内门的宽度可以减少出口拥堵,促进疏散过程。此外,在只有一个窗口出口的情况下,当逃生窗位于车厢中部时,疏散效率最高。对于有两个窗口出口的情况,逃生窗均匀分布在车厢中部更有利于疏散。该研究有助于设计客流疏散方案,提高高铁车站应急管理水平。
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Evacuation simulation of heterogeneous passengers in the confined carriage of high-speed train
Passenger evacuation in high-speed train carriages is a critical issue that has not been fully explored and understood in previous research. To investigate the evacuation process of passengers from the confined carriage, a fine-grid cellular automaton model considering passenger heterogeneity is proposed in this paper. The influences of passenger attributes, luggage-carrying behavior, exit width and window evacuation mode on evacuation dynamics are analyzed under various scenarios. The simulation results reveal that the evacuation efficiency decreases with the increase of the proportion of elderly passengers in the carriage. The evacuation time increases with the increment of luggage-carrying proportion and duration time of luggage collection. Passengers carrying luggage near the inner door can easily block the aisle. Therefore, appropriately increasing the width of the inner door can reduce exit congestion and facilitate the evacuation process. Furthermore, the evacuation efficiency is the highest when the escape window is located in the middle of carriage for only one window exit. For the two window exits conditions, the escape windows are uniformly distributed in the middle of carriage is more favorable for evacuation. The study is useful to design evacuation plans for passenger flow and improve the emergency management level of high-speed railway stations.
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来源期刊
CiteScore
7.20
自引率
9.10%
发文量
852
审稿时长
6.6 months
期刊介绍: Physica A: Statistical Mechanics and its Applications Recognized by the European Physical Society Physica A publishes research in the field of statistical mechanics and its applications. Statistical mechanics sets out to explain the behaviour of macroscopic systems by studying the statistical properties of their microscopic constituents. Applications of the techniques of statistical mechanics are widespread, and include: applications to physical systems such as solids, liquids and gases; applications to chemical and biological systems (colloids, interfaces, complex fluids, polymers and biopolymers, cell physics); and other interdisciplinary applications to for instance biological, economical and sociological systems.
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