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Friction effects and clogging in a cellular automaton model for pedestrian dynamics - art. no. 056122

机译:用于行人动力学的元胞自动机模型中的摩擦效应和堵塞没有。 056122

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摘要

We investigate the role of conflicts in pedestrian traffic, i.e., situations where two or more people try to enter the same space. Therefore a recently introduced cellular automaton model for pedestrian dynamics is extended by a friction parameter mu. This parameter controls the probability that the movement of all particles involved in a conflict is denied at one time step. It is shown that these conflicts are not an undesirable artifact of the parallel update scheme, but are important for a correct description of the dynamics. The friction parameter mu can be interpreted as a kind of an internal local pressure between the pedestrians which becomes important in regions of high density, occurring, e.g., in panic situations. We present simulations of the evacuation of a large room with one door. It is found that friction has not only quantitative effects, but can also lead to qualitative changes, e.g., of the dependence of the evacuation time on the system parameters. We also observe similarities to the flow of granular materials, e.g., arching effects. [References: 24]
机译:我们调查了冲突在行人交通中的作用,即两个或两个以上的人试图进入同一空间的情况。因此,最近引入的用于行人动力学的元胞自动机模型通过摩擦参数μ扩展。此参数控制一次冲突中拒绝参与冲突的所有粒子运动的可能性。结果表明,这些冲突不是并行更新方案的不希望有的假象,但是对于正确描述动态特性很重要。摩擦参数μ可以解释为行人之间的内部局部压力的一种,其在例如在紧急情况下发生的高密度区域中变得重要。我们目前对一扇大房间的疏散进行模拟。已经发现,摩擦不仅具有定量作用,而且还可以导致定性变化,例如,疏散时间对系统参数的依赖性。我们还观察到了与颗粒状材料流动的相似性,例如拱形效应。 [参考:24]

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