An experimental study on the impact of motivation and gender on pedestrian movement characteristics in a bottleneck flow

IF 2.2 3区 物理与天体物理 Q2 MECHANICS
Hongliu Li, Xudong Li, Weiguo Song, Jun Zhang, Jacqueline TY Lo
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Abstract

The influence of different motivations on pedestrian evacuation efficiency, like whether incentivizing faster moving or encouraging polite behaviors is beneficial to evacuation, and the potential existence of gender-based differences, still lacks clear answers. This study aims to narrow this gap by conducting a laboratory bottleneck evacuation experiment to investigate the influence of movement motivation and gender of pedestrians on evacuation efficiency. Our findings reveal that both bottleneck width and pedestrian motivation significantly impact the flow. For men, when the bottleneck width surpasses a threshold, high motivation increases the flow; below this threshold, it reduces the flow. For women, high motivation consistently leads to higher evacuation efficiency than normal motivation regardless of the bottleneck width. The time interval is significantly influenced by the bottleneck width, pedestrians’ gender and their interaction term. Increasing bottleneck width does not always lead to a decrease in density when men are highly motivated; while for women, wider bottlenecks alleviate congestion around the exit.
关于动机和性别对瓶颈人流中行人移动特征影响的实验研究
不同的动机对行人疏散效率的影响,如激励更快的移动或鼓励礼貌行为是否有利于疏散,以及性别差异的潜在存在,仍然缺乏明确的答案。本研究旨在通过开展实验室瓶颈疏散实验,研究行人的行动动机和性别对疏散效率的影响,从而缩小这一差距。我们的研究结果表明,瓶颈宽度和行人动机都会对人流产生重大影响。对于男性来说,当瓶颈宽度超过临界值时,高动机会增加人流量;低于临界值时,高动机会减少人流量。对于女性来说,无论瓶颈宽度如何,高积极性始终会比普通积极性带来更高的疏散效率。时间间隔受瓶颈宽度、行人性别及其交互项的影响很大。当男性的积极性较高时,增加瓶颈宽度并不总是导致密度下降;而对于女性来说,较宽的瓶颈可以缓解出口周围的拥堵。
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来源期刊
CiteScore
4.50
自引率
12.50%
发文量
210
审稿时长
1.0 months
期刊介绍: JSTAT is targeted to a broad community interested in different aspects of statistical physics, which are roughly defined by the fields represented in the conferences called ''Statistical Physics''. Submissions from experimentalists working on all the topics which have some ''connection to statistical physics are also strongly encouraged. The journal covers different topics which correspond to the following keyword sections. 1. Quantum statistical physics, condensed matter, integrable systems Scientific Directors: Eduardo Fradkin and Giuseppe Mussardo 2. Classical statistical mechanics, equilibrium and non-equilibrium Scientific Directors: David Mukamel, Matteo Marsili and Giuseppe Mussardo 3. Disordered systems, classical and quantum Scientific Directors: Eduardo Fradkin and Riccardo Zecchina 4. Interdisciplinary statistical mechanics Scientific Directors: Matteo Marsili and Riccardo Zecchina 5. Biological modelling and information Scientific Directors: Matteo Marsili, William Bialek and Riccardo Zecchina
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