超市疏散中不同人员类型人口密度的实验研究

Guowei Zhang, Guoqing Zhu, Lili Huang
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摘要

不同居住类型的人口密度是影响超市行人疏散的最关键因素。不幸的是,实验人口密度,特别是工作日和节假日的人口密度,可供参考的数据非常少。为了得到准确的实验人员密度,在一个家乐福超市进行了6次工作日和节假日的调查和实验。在6天内分别记录了男性、女性、老人和儿童四种乘客类型,约154,327名客户。利用本文构建的人口密度黑箱模型对实验数据进行分析,发现女性占比52.3%,男性占比38.4%,老年人占比5.1%,儿童占比7.2%。儿童比例在工作日约为3.6%,节假日迅速上升至10.9%,而老年人数量相对稳定,每天约为1200人。高峰时段市场人口密度平均峰值约为0.15人/m2,出现在工作日的16:00~20:00,而节假日的13:00~19:00出现在约0.32人/m2。最后,在实验数据的基础上,对超市疏散过程进行了两次数值模拟。通过模拟,我们发现节假日的总疏散时间大约是工作日的两倍。本实验得到的数据和结论将为市场疏散模型、疏散模拟和消防设计提供有价值的参考。
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Experimental study on population density of different occupant types in supermarket evacuation
Population density of different occupant types is the most critical factor affecting pedestrian evacuation in supermarket. Unfortunately, the experimental population density, especially on weekdays and holidays, is very scarce for reference. In order to obtain exact experimental occupant density, six investigations and experiments have been conducted in a Carrefour supermarket on workdays and holidays. Four occupant types (male, female, elderly and child), about 154,327 customers, were separately recorded in 6 days. By analyzing the experiment data with black-box model of occupant density built in this article, we found that the proportion of female, male, elderly, and child are 52.3%, 38.4%, 5.1%, and 7.2% respectively. Proportion of child on weekdays is about 3.6% but it rapidly rises to 10.9% on holidays while the number of the elderly is relatively stable, which is about 1,200 each day. Furthermore, the average peak value of occupant density in the market at the rush hours is about 0.15 persons/m2 appearing at 16:00~20:00 on weekdays while it is about 0.32 persons/m2 emerging at 13:00~19:00 on holidays. At last, based on the experimental data, two numerical simulations on supermarket evacuation are conducted. By simulating, we find that the total evacuation time on holidays is about twice as long as that on weekdays. These data and conclusions obtained from this experiment would provide valuable reference to evacuation model, evacuation simulation, and fire protection design of market.
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