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A BIM-based simulation framework for fire safety management and investigation of the critical factors affecting human evacuation performance

机译:基于BIM的消防安全管理仿真框架和影响人类疏散性能的关键因素的调查

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Fire hazards are a big threat to human life and property safety. The U.S. fire statistics reveal that, in 2017 alone, 1,319,500 fires caused 3400 deaths and 14,670 injuries, which resulted in a loss of $23 billion [1]. Effective evacuation planning in densely occupied buildings should be primarily put in place if both the number of injuries/fatalities and the level of property loss are to be minimized. However, it is not realistic, and is unethical to study human evacuation performance under a burning building. For this reason, computational tools tend to be the best approach for simulating fire growth as well as human response to fire hazards. This study aims to develop a BIM-based simulation framework that implements the Fire Dynamic Simulator (FDS) and agent-based modeling (ABM) for simulating fire growth and evacuation performance for different building layout scenarios. An experimental implementation is conducted to validate the proposed framework, which verified the benefits of (1) using BIM to offer a platform for conducting simulation design and visualizing the simulation results of (a) hazardous fire zones and (b) effective escape routes; (2) simulating fire growth using the FDS tool; (3) developing an agent-based model that accounts for the critical factors affecting evacuation performance; and (4) applying a statistical analysis for investigating the effects of influential parameters from the proposed model. As a result, the simulation outputs can be used to optimize the building design and to investigate the influential factors on human evacuation efficiency. The proposed framework contributes to building fire safety management by enabling to minimize both injuries/fatalities and property loss.
机译:火灾危害对人类生活和物业安全有很大的威胁。美国火灾统计透露,仅在2017年,1,319,500次火灾造成3400人死亡和14,670次伤害,导致损失为230亿美元[1]。如果伤害/死亡人数和财产损失水平均可最小化,则应在密集地占用建筑物中的有效疏散规划。然而,它是不可立论的,并且在燃烧建筑下研究人的疏散性能是不道德的。因此,计算工具往往是模拟火灾增长以及对火灾危害的人类反应的最佳方法。本研究旨在开发基于BIM的模拟框架,实现了用于模拟不同建筑布局情景的消防生长和疏散性能的消防动态模拟器(FDS)和基于代理的建模(ABM)。进行实验实施以验证所提出的框架,该框架验证了使用BIM提供了使用BIM进行仿真设计的平台和可视化(a)危险的火区和(b)有效逃逸路线的仿真结果的平台; (2)使用FDS工具模拟火灾生长; (3)开发基于代理的模型,占影响疏散性能的关键因素; (4)应用统计分析来调查来自所提出的模型的影响力的影响。结果,仿真输出可用于优化建筑设计,并调查对人类疏散效率的影响因素。拟议的框架通过使伤害/死亡和财产损失最大限度地实现消防安全管理,有助于建立消防安全管理。

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