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Analysis of evacuation simulation considering crowd density and the effect of a fallen person

机译:考虑人群密度和堕落者影响的疏散模拟分析

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Simulation methods that can overcome the limitations of theory and experiment are widely used to predict disaster situations and analyze evacuation safety. To obtain more accurate and realistic simulation results, various situations that arise when people evacuate must be reflected. In this research, regression analysis is applied to existing research on walking speed changes according to crowd density, and we suggest a new equation for walking speed changes of people during evacuation. The suggested equation is applied to crowd evacuation simulations based on the actual viewing angle of a person. In addition, we developed a fallen person algorithm and applied it to examples from the Society of Fire Protection Engineers (SFPE) to analyze the effect a fallen person has on evacuation. Through this research, evacuation safety analysis can be performed for cases involving falling people, and it will be possible to design buildings that can minimize risk and evacuation time in case of an actual emergency situation by analyzing the optimum measures more strictly.
机译:克服理论和实验局限性的仿真方法被广泛用于预测灾害情况和分析疏散安全性。为了获得更准确和逼真的仿真结果,必须反映人员撤离时出现的各种情况。在这项研究中,将回归分析应用于根据人群密度的步行速度变化的现有研究,并且我们提出了疏散过程中人们步行速度变化的新方程。建议的方程式基于人的实际视角应用于人群疏散模拟。此外,我们开发了下落者算法,并将其应用于消防工程师协会(SFPE)的示例中,以分析下落者对疏散的影响。通过这项研究,可以对涉及下落人员的情况进行疏散安全分析,并且通过更严格地分析最佳措施,可以设计出在实际紧急情况下可以将风险和疏散时间最小化的建筑物。

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