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Experimental Study of an Airplane Accident Evacuation/ Rescue Simulation Using Three-Dimensional Kinematic Diqital Human Models

机译:基于三维运动人体模型的飞机事故疏散/救援仿真实验研究

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The 3D mass evacuation simulation of an airplane accident is experimentally verified. Evacuee motion has been experimentally investigated by building a test field that emulates the interior of an actual regional airliner with a capacity of approximately 100 passengers. The experiment results indicate that the evacuation time tends to be affected by the number of passengers and the evacuee guidance at the emergency exit. The results also indicate that any evacuation delay in exiting by individual passengers only slightly affects the total evacuation time because of evacuee congestion in the aisles. Moreover, the importance of evacuation guidance notification was investigated based on the evacuation-order variance. Finally, the experimental results were compared to the corresponding simulation results. Simulations using appropriate evacuee walking speeds can provide valid evacuation times, which are the most important factor in designing evacuation drills. Consequently, these results should be applied to existing 3D simulations using precise kinematic digital human (KDH) models for more accurate mass evacuation, rescue simulations.
机译:通过飞机验证了飞机事故的3D疏散模拟。疏散运动已经通过建立一个模拟实际区域客机内部的试验场进行了实验研究,该客机可容纳约100名乘客。实验结果表明,疏散时间往往受旅客人数和紧急出口疏散指导的影响。结果还表明,由于过道的疏散拥挤,单个乘客退出的任何疏散延迟只会对总疏散时间产生轻微影响。此外,根据疏散顺序的差异,研究了疏散指导通知的重要性。最后,将实验结果与相应的模拟结果进行比较。使用适当的撤离人员行走速度进行的仿真可以提供有效的撤离时间,这是设计撤离演习时最重要的因素。因此,这些结果应应用于使用精确运动数字人体(KDH)模型的现有3D仿真中,以进行更准确的大规模疏散,救援仿真。

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  • 来源
    《Journal of Computing and Information Science in Engineering》 |2015年第3期|031006.1-031006.10|共10页
  • 作者单位

    Department of Mechanical Engineering, Ninon University, Nakagawara 1, Tokusada, Tamura, Koriyama, Fukushima 963-8642, Japan;

    Department of Mechanical Engineering, Nihon University, Nakagawara 1, Tokusada, Tamura, Koriyama, Fukushima 963-8642, Japan;

    CAS Research, 44-4-105 Shimo, Fussa City, Tokyo 197-0023, Japan;

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