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Post-Tsunami Evacuation Simulation Using 3D Kinematic Digital Human Models and Experimental Verification

机译:使用3D运动数字人体模型进行海啸后疏散模拟和实验验证

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摘要

A post-tsunami evacuation simulation using 3D kinematic digital human models (KDHs) and its experimental verification are addressed in the present study. Methods for carrying or assisting (transporting) injured people were experimentally investigated and the results were used for KDH data calibration to increase the accuracy of the simulations. It was found that, on flat ground, both the transit speed and the amount of time spent on intermittent rests were strongly affected by the load on the transporters. During ascent of stairways, the transit speed depended on the type of carry method being used and decreased in the order saddleback carry, two-person arm carry and slightly injured walking. Several KDH evacuee motion primitives were developed for stairway ascent to a tsunami evacuation tower. The simulation results show that the evacuation time was affected by the number of evacuees and the congestion due to the transportation of injured people. The developed simulation techniques can be effectively utilized in the planning of tsunami tower evacuation and predicting related crowd behavior.
机译:本研究解决了使用3D运动数字人体模型(KDH)进行的海啸后疏散模拟及其实验验证。通过实验研究了携带或协助(运输)受伤人员的方法,并将结果用于KDH数据校准,以提高模拟的准确性。结果发现,在平坦的地面上,运输速度和运输者在间歇性休息时所花费的时间都受到运输车负荷的强烈影响。在上楼梯期间,运输速度取决于所使用的运载方法的类型,并以鞍背运载,两人手臂运载和轻微受伤的行走顺序减小。开发了几种KDH撤离运动原语,用于楼梯上的海啸撤离塔。仿真结果表明,疏散时间受疏散人数和伤员运输造成的交通拥挤的影响。所开发的模拟技术可以有效地用于海啸塔撤离的规划和预测相关人群的行为。

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  • 来源
    《Journal of Computing and Information Science in Engineering》 |2014年第2期|021010.1-021010.9|共9页
  • 作者单位

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

    CAS Research Inc., 44-4-105, Fussa, Tokyo 197-0023, Japan;

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

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