Overall and local movement speeds during fire drill evacuations in buildings up to 31 stories

演习 工程类 航程(航空) 毒物控制 消防安全 导线 消防工程 人口 运动(音乐) NIST公司 建筑设计 法律工程学 运输工程 建筑工程 土木工程 计算机科学 地理 地图学 机械工程 环境卫生 医学 哲学 人口学 社会学 自然语言处理 航空航天工程 美学
作者
Richard D. Peacock,Bryan L. Hoskins,Erica D. Kuligowski
出处
期刊:Safety Science [Elsevier]
卷期号:50 (8): 1655-1664 被引量:129
标识
DOI:10.1016/j.ssci.2012.01.003
摘要

The time that it takes an occupant population to reach safety when descending a stairwell during building evacuations is typically described by measurable engineering variables such as stairwell geometry, speed, density, and pre-evacuation delay. In turn, engineering models of building evacuation use these variables to predict the performance of egress systems for building design, emergency planning, or event reconstruction. As part of a program to better understand occupant movement and behavior during building emergencies, the Engineering Laboratory at the National Institute of Standards and Technology (NIST) has been collecting stairwell movement data during fire drill evacuations of office buildings. These data collections are intended to provide a better understanding of this principal building egress feature and develop a technical foundation for future codes and standards requirements. To date, NIST has collected fire drill evacuation data in eight office building occupancies ranging from 6 to 62 stories in height that have included a range of stairwell widths and occupant densities. While average movement speeds in the current study of 0.48 m/s ± 0.16 m/s are observed to be quite similar to the range of literature values, local movement speeds as occupants traverse down the stairwell are seen to vary widely within a given stairwell, ranging from 0.056 m/s to 1.7 m/s. These data should provide confirmation of the adequacy of existing literature values typically used for occupant movement speeds or provide updated values for future analyses.

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