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Effect of a static pedestrian as an exit obstacle on evacuation

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【作者】 胡杨慧毕钰帛张俊练丽萍宋卫国高伟

【Author】 Yang-Hui Hu;Yu-Bo Bi;Jun Zhang;Li-Ping Lian;Wei-Guo Song;Wei Gao;School of Chemical Engineering, Dalian University of Technology;State Key Laboratory of Fire Science, University of Science and Technology of China;School of Architectural Engineering, Shenzhen Polytechnic;School of Urban Planning and Design, Peking University Shenzhen Graduate School;

【通讯作者】 胡杨慧;张俊;

【机构】 School of Chemical Engineering, Dalian University of TechnologyState Key Laboratory of Fire Science, University of Science and Technology of ChinaSchool of Architectural Engineering, Shenzhen PolytechnicSchool of Urban Planning and Design, Peking University Shenzhen Graduate School

【摘要】 Building exit as a bottleneck structure is the last and the most congested stage in building evacuation. It is well known that obstacles at the exit affect the evacuation process, but few researchers pay attention to the effect of stationary pedestrians(the elderly with slow speed, the injured, and the static evacuation guide) as obstacles at the exit on the evacuation process. This paper explores the influence of the presence of a stationary pedestrian as an obstacle at the exit on the evacuation from experiments and simulations. We use a software, Pathfinder, based on the agent-based model to study the effect of ratios of exit width(D) to distance(d) between the static pedestrian and the exit, the asymmetric structure by shifting the static pedestrian upward, and types of obstacles on evacuation. Results show that the evacuation time of scenes with a static pedestrian is longer than that of scenes with an obstacle due to the unexpected hindering effect of the static pedestrian. Different ratios of D/d have different effects on evacuation efficiency. Among the five D/d ratios in this paper,the evacuation efficiency is the largest when d is equal to 0.75D, and the existence of the static pedestrian has a positive impact on evacuation in this condition. The influence of the asymmetric structure of the static pedestrian on evacuation efficiency is affected by D/d. This study can provide a theoretical basis for crowd management and evacuation plan near the exit of complex buildings and facilities.

【Abstract】 Building exit as a bottleneck structure is the last and the most congested stage in building evacuation. It is well known that obstacles at the exit affect the evacuation process, but few researchers pay attention to the effect of stationary pedestrians(the elderly with slow speed, the injured, and the static evacuation guide) as obstacles at the exit on the evacuation process. This paper explores the influence of the presence of a stationary pedestrian as an obstacle at the exit on the evacuation from experiments and simulations. We use a software, Pathfinder, based on the agent-based model to study the effect of ratios of exit width(D) to distance(d) between the static pedestrian and the exit, the asymmetric structure by shifting the static pedestrian upward, and types of obstacles on evacuation. Results show that the evacuation time of scenes with a static pedestrian is longer than that of scenes with an obstacle due to the unexpected hindering effect of the static pedestrian. Different ratios of D/d have different effects on evacuation efficiency. Among the five D/d ratios in this paper,the evacuation efficiency is the largest when d is equal to 0.75D, and the existence of the static pedestrian has a positive impact on evacuation in this condition. The influence of the asymmetric structure of the static pedestrian on evacuation efficiency is affected by D/d. This study can provide a theoretical basis for crowd management and evacuation plan near the exit of complex buildings and facilities.

【基金】 Project supported by the National Natural Science Foundation of China (Grant Nos. 52104186, 71904006,U1933105, and 72174189);the Fundamental Research Funds for the Central Universities (Grant Nos. DUT21JC01 and DUT2020TB03);the Fundamental Research Funds for the Central Universities (Grant No. WK2320000050)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2023年01期
  • 【分类号】TU998.1
  • 【下载频次】10
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