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Obstacle Optimization for Panic Flow - Reducing the Tangential Momentum Increases the Escape Speed

机译:紧急流程的障碍物优化-减少切向动量可提高逃逸速度

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摘要

A disastrous form of pedestrian behavior is a stampede occurring in an event involving a large crowd in a panic situation. To deal with such stampedes, the possibility to increase the outflow by suitably placing a pillar or some other shaped obstacles in front of the exit has been demonstrated. We present a social force based genetic algorithm to optimize the best design of architectural entities to deal with large crowds. Unlike existing literature, our simulation results indicate that appropriately placing two pillars on both sides but not in front of the door can maximize the escape efficiency. Human experiments using 80 participants correspond well with the simulations. We observed a peculiar property named tangential momentum, the escape speed and the tangential momentum are found to be negatively correlated. The idea to reduce the tangential momentum has practical implications in crowd architectural design.
机译:行人行为的一种灾难性形式是踩踏事件,这种事件发生在涉及恐慌情况下的大量人群的事件中。为了应对这种踩踏现象,已经证明了通过在出口的前面适当放置一个支柱或一些其他形状的障碍物来增加流出量的可能性。我们提出一种基于社会力量的遗传算法,以优化建筑实体的最佳设计,以应对大量人群。与现有文献不同,我们的模拟结果表明,在门的两侧而不是门的前面适当放置两个支柱可以使逃生效率最大化。使用80名参与者的人体实验与模拟非常吻合。我们观察到一个名为切向动量的奇特属性,发现逃逸速度和切向动量呈负相关。减少切向动量的想法在人群建筑设计中具有实际意义。

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