Safety in residential buildings: Evacuation from residential buildings without fire escape stairs

R. Jevtić
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引用次数: 3

Abstract

Introduction/purpose: Safety in high residential buildings presents a very important and always actual task. In case of some unforeseen and dangerous occurrences, their residents must be evacuated. Fire, earthquakes, and terrorism are only some of such situations. The speed of evacuation from high residential buildings depends on many different factors. A particularly difficult and complex evacuation task concerns buildings without fire escape stairs. Methods: The modeling method was used in this paper. Based on a real object - a residential building, an appropriate simulation model was realized in appropriate simulation software. Results: The results of this paper have shown that, out of four scenarios, the fastest evacuation was for the evacuation speed of 1.75 m/s. The first two scenarios did not report any jams, unlike the third and fourth scenario; in the third scenario, the occupants' speeds were 0.75 m/s and 1.25 m/s while in the fourth scenario, the simulated occupants' speeds were from 0.75 m/s to 1.75 m/s. Conclusion:The usage of appropriate simulation software enables fast, precise, safe and cheap calculation of evacuation times and it can significantly improve evacuation procedures and evacuation strategies.
居民楼安全:从没有消防楼梯的居民楼疏散
前言/目的:高层住宅建筑的安全是一项非常重要且始终切合实际的任务。如果发生不可预见的危险事件,必须疏散居民。火灾、地震和恐怖主义只是其中的一些情况。高层住宅楼的疏散速度取决于许多不同的因素。一个特别困难和复杂的疏散任务涉及没有消防楼梯的建筑物。方法:本文采用建模方法。以住宅楼为实际对象,在合适的仿真软件中实现合适的仿真模型。结果:本文的结果表明,在4种场景中,疏散速度为1.75 m/s时,疏散速度最快。与第三和第四种情况不同,前两种情况没有报告任何堵塞;在第三个场景中,乘员的速度为0.75 m/s和1.25 m/s,而在第四个场景中,模拟乘员的速度为0.75 m/s到1.75 m/s。结论:使用合适的仿真软件可以快速、准确、安全、廉价地计算疏散时间,可以显著改善疏散程序和疏散策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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24
审稿时长
12 weeks
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