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Simulation and Experiment of Mass Evacuation to a Tsunami Evacuation Tower

机译:海啸疏散塔大规模疏散的模拟与试验

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A 3D mass evacuation simulation using precise kinematic digital human (KDH) models and an experimental study are discussed. The tidal wave associated with the large tsunami caused by the Great East Japan Earthquake was responsible for more than 90% of the disaster casualties. Unfortunately, it is expected that other huge tsunamis could occur in Japan coastal areas if an earthquake with magnitude greater than 8 occurred along the Nankai Trough. Therefore, recent disaster prevention plans should include evacuation to higher buildings, elevated ground, and construction of tsunami evacuation towers. In the evacuation simulation with 500 KDHs, the mass consists of several subgroups. It is shown that the possible evacuation path of each group should be carefully determined to minimize the evacuation time. Several properties such as evacuee motion characteristics of KDHs, number of evacuees, exit gates and, number of injured persons were carefully considered in the simulation. Evacuee motion was also experimentally investigated by building a test field that simulates the structure of an actual tsunami evacuation tower for accommodating approximately 120 evacuees. The experimental results suggest that an appropriately divided group population may effectively reduce the overall group evacuation time. The results also suggest that the fatigue due to walking during evacuation adversely affect the total evacuation time, especially the ascent of stairways. The experimental data can be used to obtain more accurate simulations of mass evacuation.
机译:讨论了使用精确运动数字人(KDH)模型和实验研究的3D质量抽空模拟。与大东日本地震引起的大海啸相关的潮波负责超过90%的灾害伤亡。不幸的是,如果南开槽发生大于8的地震,预计日本沿海地区可能会发生其他巨大的海啸。因此,最近的防灾计划应包括向更高建筑,升高的地面和海啸疏散塔建设的疏散。在500 KDHS的疏散模拟中,质量由几个子组组成。结果表明,应仔细确定每个组的可能的抽空路径以最小化疏散时间。在模拟中仔细考虑了诸如KDHS的Revacuee运动特性,疏散运动特性,撤离盖茨的数量,退出盖茨的数量,以及伤害人数。通过建立一个测试领域,还通过建立模拟实际海啸疏散塔结构的测试领域进行了实验调查了,以适应大约120个疏散塔。实验结果表明,适当分割的群体群体可以有效降低整体群体疏散时间。结果还表明,疏散期间行走引起的疲劳会对休闲时间产生不利影响,尤其是楼梯的上升。实验数据可用于获得更准确的质量疏散模拟。

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