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Modelling large-scale evacuation of music festivals

机译:模拟音乐节的大规模疏散

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Highlights ? Modelling is suggested to study large-scale evacuation at music festivals. ? A model case study has been simulated with an evacuation model. ? Simulated people-evacuation time curves helps identifying critical factors. Abstract This paper explores the use of multi-agent continuous evacuation modelling for representing large-scale evacuation scenarios at music festivals. A 65,000 people capacity music festival area was simulated using the model Pathfinder. Three evacuation scenarios were developed in order to explore the capabilities of evacuation modelling during such incidents, namely (1) a preventive evacuation of a section of the festival area containing approximately 15,000 people due to a fire breaking out on a ship, (2) an escalating scenario involving the total evacuation of the entire festival area (65,000 people) due to a bomb threat, and (3) a cascading scenario involving the total evacuation of the entire festival area (65,000 people) due to the threat of an explosion caused by a ship engine overheating. This study suggests that the analysis of the people-evacuation time curves produced by evacuation models, coupled with a visual analysis of the simulated evacuation scenarios, allows for the identification of the main factors affecting the evacuation process (e.g., delay times, overcrowding at exits in relation to exit widths, etc.) and potential measures that could improve safety.
机译:强调 ?建议通过建模来研究音乐节上的大规模疏散。 ?使用疏散模型模拟了模型案例研究。 ?模拟人员疏散时间曲线有助于识别关键因素。摘要本文探讨了使用多主体连续疏散模型来代表音乐节上的大规模疏散方案。使用“探路者”模型模拟了可容纳65,000人的音乐节区域。为了探索在这种事件期间进行疏散建模的能力,开发了三种疏散方案,即(1)由于船上发生大火,对节日区域的一部分进行了约15,000人的预防性疏散,(2)由于炸弹威胁而导致整个节日区域(6.5万人)全部撤离的升级情景,以及(3)由于爆炸造成的威胁,整个节日区域(65,000人)全部撤离的级联情景船舶发动机过热。这项研究表明,对疏散模型产生的人员疏散时间曲线的分析以及对模拟疏散场景的可视化分析,可以确定影响疏散过程的主要因素(例如,延误时间,出口处的拥挤情况)有关出口宽度等)以及可以提高安全性的潜在措施。

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