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Separation of pedestrian counter flows with an array of obstacles

机译:与一系列障碍物的行人计数器的分离

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In the present paper, we investigate pedestrian counter flows in a straight corridor by means of a molecular dynamics approach with the social force model. We demonstrate that the flow rate of two groups of people walking in the opposite directions is improved by means of an array of geometrically asymmetric obstacles, as a result of flow separations. That is, the obstacles separate groups of pedestrians walking in the opposite directions so that they spontaneously keep to their right or left. In addition, we show that even geometrically symmetric obstacles possess the same ability to induce the self-organization of pedestrian flow if the interaction force between the people and the obstacles is asymmetric. The appropriately designed geometry or interaction force is fully capable of controlling the filtering direction. The present results potentially provide a guideline for industrial design to improve daily human mobility.
机译:在本文中,我们通过与社会力量模型的分子动力学方法调查直线走廊中的行人计数器流动。我们证明,由于流动分离,通过一系列几何不对称障碍物的阵列,改善了两组步行的人们的流量。也就是说,障碍分开了一群行人走在相反的方向上,以便他们自发地保持右侧或左侧。此外,如果人和障碍物之间的相互作用是不对称的,甚至几何对称障碍物甚至具有相同的能力,可以诱导行人自我流量的自组织流量。适当设计的几何形状或相互作用力完全能够控制过滤方向。目前的结果可能为工业设计提供了改善日常人类流动性的工业设计指导。

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