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Updated: Oct 3, 2025

Simulation of Human-induced Vibrations Based on the Characterized In-field Pedestrian Behavior
Published on: April 13, 2016
Spontaneous emergence of counterclockwise vortex motion in assemblies of pedestrians roaming within an enclosure
Iñaki Echeverría-Huarte1, Alexandre Nicolas2, Raúl Cruz Hidalgo3
1Departamento de Física y Matemática Aplicada, Facultad de Ciencias, Universidad de Navarra, 31080, Pamplona, Spain. iecheverria.13@unav.es.
Abstract:
The emergence of coherent vortices has been observed in a wide variety of many-body systems such as animal flocks, bacteria, colloids, vibrated granular materials or human crowds. Here, we experimentally demonstrate that pedestrians roaming within an enclosure also form vortex-like patterns which, intriguingly, only rotate counterclockwise. By implementing simple numerical simulations, we evidence that the development of swirls in many-particle systems can be described as a phase transition in which both the density of agents and their dissipative interactions with the boundaries play a determinant role. Also, for the specific case of pedestrians, we show that the preference of right-handed people (the majority in our experiments) to turn leftwards when facing a wall is the symmetry breaking mechanism needed to trigger the global counterclockwise rotation observed.
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