论文标题

鱼撤离平稳地尊重社交泡沫

Fish evacuate smoothly respecting a social bubble

论文作者

Larrieu, R., Moreau, P., Graff, C., Peyla, P., Dupont, A.

论文摘要

在不同物种和不同尺度之间,从昆虫到哺乳动物以及非认知系统(例如动向细胞)观察到人群运动。当被迫通过狭窄的开口逃脱时,大多数陆地动物的行为像颗粒状材料和堵塞事件一样降低了疏散的效率。在这里,我们探索了宏观,水生剂,霓虹鱼的疏散行为,并通过迫使学校通过狭窄的经文来挑战其群体行为。使用针对颗粒状物质开发的统计分析方法,并应用于人群疏散,我们的结果清楚地表明,与人群或绵羊的人群不同,瓶颈上没有堵塞。鱼不会碰撞,并且在尊重社交距离的同时,在两个连续的出口之间等待最少的等待时间。当收缩与社交距离相似或小时,该认知距离定义的个体域将变形,鱼密度增加。我们表明,逃脱鱼的电流的行为就像一组可变形的2D-bubbles,它们的2D域,通过收缩。鱼类的学校表明,通过尊重社会规则,即使在紧急情况下,一群人也可以撤离而不会堵塞。

Crowd movements are observed among different species and on different scales, from insects to mammals, as well as in non-cognitive systems, such as motile cells. When forced to escape through a narrow opening, most terrestrial animals behave like granular materials and clogging events decrease the efficiency of the evacuation. Here, we explore the evacuation behavior of macroscopic, aquatic agents, neon fish, and challenge their gregarious behavior by forcing the school through a constricted passage. Using a statistical analysis method developed for granular matter and applied to crowd evacuation, our results clearly show that, unlike crowds of people or herds of sheep, no clogging occurs at the bottleneck. The fish do not collide and wait for a minimum waiting time between two successive exits, while respecting a social distance. When the constriction becomes similar to or smaller than their social distance, the individual domains defined by this cognitive distance are deformed and fish density increases. We show that the current of escaping fish behaves like a set of deformable 2D-bubbles, their 2D domain, passing through a constriction. Schools of fish show that, by respecting social rules, a crowd of individuals can evacuate without clogging, even in an emergency situation.

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