超大型火车站枢纽候车大厅乘客疏散和热通量的数值模拟

Fire Pub Date : 2024-05-21 DOI:10.3390/fire7060174
Hua Chen, Yujing Feng, Chenyang Zhang, Liuyang Yu, Ya Shu, Yong Zhang, Tianchang Meng, Chaozhe Jiang, Fang Xu
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引用次数: 0

摘要

疫情过后,客流的回升给轨道交通的安全运营带来了巨大挑战。因此,以超大型火车站枢纽候车大厅为例,分别利用火灾动力学模拟器和开拓者进行了热辐射和疏散模拟。众所周知,岛式商店的人群密度高、火灾负荷大,因此将其定义为火源,并通过采用双重验证模型来验证 6 米宽防火隔离带的有效性。通过比较客流恢复后的总疏散人数与各种疏散参数之间的关系,结果表明,在紧急情况下,候车大厅各出口之间的乘客分布并不均匀,导致利用率不均衡。此外,为了全面了解模拟火灾条件下的疏散过程,还进行了一次持续时间为 324.8 秒、涉及 10,000 名疏散人员的疏散模拟。这项研究为优化超大型火车站枢纽的火灾应急疏散方案提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Simulation of Passenger Evacuation and Heat Fluxes in the Waiting Hall of an Ultralarge Railway Station Hub
The resurgence of passenger flows after the pandemic poses a significant challenge to the safe operation of rail transit. Therefore, adopting the waiting hall of an ultralarge railway station hub as an example, thermal radiation and evacuation simulations were conducted by the Fire Dynamics Simulator and Pathfinder, respectively. Island-style shops, known for their high crowd density and fire load, were defined as fire sources, and the effectiveness of a 6 m wide fire isolation zone was validated via the adoption of the dual-validation model. By comparing the relationships between the total evacuation population after passenger flow recovery and various evacuation parameters, it was shown that passengers were not evenly distributed among the exits in the waiting hall during an emergency, leading to uneven utilization. Furthermore, to gain a comprehensive understanding of the evacuation process under simulated fire conditions, an evacuation simulation involving 10,000 evacuees over a duration of 324.8 s was conducted. This study provides a theoretical basis for optimizing fire emergency evacuation plans for ultralarge railway station hubs.
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