Modeling and simulation of fire evacuation considering guiding factors: a case study of Shenyang subway interchange station

Jiaxi Liu, Rui Zhang, Weidong Yan, Qingyan Zhao, Chunbing Guo
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Abstract

In case of fire, effective evacuation guidance can reduce evacuees’ hesitation time and improve evacuation efficiency. In this paper, an improved model of fire evacuation (guided fire cellular automata, GF-CA) is provided. First, the parameters of the improved model are quantified and analyzed to determine the parameter calculation method and variation law. Second, a typical subway interchange station in Shenyang is used as an example for evacuation simulation. Then, a lightweight building information modeling (BIM) is constructed and applied to the example combining the evacuation simulation software of Pathfinder and virtual reality technology for personnel evacuation simulation. Three types of simulation scenarios are examined, including simulation without guiding factors, simulation with guiding factors based on the improved model, and simulation based on the virtual reality experiment with guiding factors. The results show that the evacuation efficiency is increased by 75.63% after effective guidelines through personnel diversion and reasonable exit allocation, noting that the path results of the model are highly similar to those of the virtual reality experiment, which has good validity and rationality. Meanwhile, we analyze the guiding scheme and propose that we should pay attention to the position of the sign and the configuration of the conductor, and flexibly use the composite scheme, which provides effective technical support for improving evacuation safety and evacuation efficiency.
考虑引导因素的火灾疏散建模与模拟:沈阳地铁换乘站案例研究
在火灾情况下,有效的疏散引导可以减少疏散人员的犹豫时间,提高疏散效率。本文提供了一种改进的火灾疏散模型(引导式火灾蜂窝自动机,GF-CA)。首先,对改进模型的参数进行量化分析,确定参数计算方法和变化规律。其次,以沈阳某典型地铁换乘站为例进行疏散模拟。然后,结合探路者疏散仿真软件和虚拟现实技术,构建了轻量级建筑信息模型(BIM),并将其应用于实例中的人员疏散仿真。研究了三种仿真场景,包括无引导因素仿真、基于改进模型的有引导因素仿真和基于虚拟现实实验的有引导因素仿真。结果表明,通过人员分流和合理出口分配进行有效引导后,疏散效率提高了 75.63%,并指出模型的路径结果与虚拟现实实验结果高度相似,具有良好的有效性和合理性。同时,我们对引导方案进行了分析,提出应注意标识的位置和导体的配置,灵活运用复合方案,为提高疏散安全性和疏散效率提供了有效的技术支撑。
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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