When legs and bodies synchronize: Two-level collective dynamics in dense crowds

Fuente: arXiv
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Main Authors: Chatagnon, Thomas, Chraibi, Mohcine, Pettré, Julien, Seyfried, Armin, Tordeux, Antoine
Format: Preprint
Published: 2026
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author Chatagnon, Thomas
Chraibi, Mohcine
Pettré, Julien
Seyfried, Armin
Tordeux, Antoine
author_facet Chatagnon, Thomas
Chraibi, Mohcine
Pettré, Julien
Seyfried, Armin
Tordeux, Antoine
contents Ultra-dense crowds, in which physical contact between people cannot be avoided, pose major safety concerns. Nevertheless, the underlying dynamics driving their collective behaviours remain poorly understood. Existing dense crowd models, mostly two-dimensional and contact-based, overlook biomechanical mechanisms that govern individual balance motion. In this study, we introduce a minimal two-level pedestrian model that couples upper body and legs dynamics, allowing us to capture transitions between balanced and unbalanced states at the individual scale. Whereas previous models fail to achieve it, this coupling gives rise to emergent collective behaviours observed empirically, such as self-organized waves and large-scale rotational motion within the crowd. The model bridges basic individual biomechanical concepts and macroscopic flow dynamics, offering a new framework for modelling and understanding collective motions in ultra-dense crowds.
format Preprint
id arxiv_https___arxiv_org_abs_2601_05867
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle When legs and bodies synchronize: Two-level collective dynamics in dense crowds
Chatagnon, Thomas
Chraibi, Mohcine
Pettré, Julien
Seyfried, Armin
Tordeux, Antoine
Physics and Society
Ultra-dense crowds, in which physical contact between people cannot be avoided, pose major safety concerns. Nevertheless, the underlying dynamics driving their collective behaviours remain poorly understood. Existing dense crowd models, mostly two-dimensional and contact-based, overlook biomechanical mechanisms that govern individual balance motion. In this study, we introduce a minimal two-level pedestrian model that couples upper body and legs dynamics, allowing us to capture transitions between balanced and unbalanced states at the individual scale. Whereas previous models fail to achieve it, this coupling gives rise to emergent collective behaviours observed empirically, such as self-organized waves and large-scale rotational motion within the crowd. The model bridges basic individual biomechanical concepts and macroscopic flow dynamics, offering a new framework for modelling and understanding collective motions in ultra-dense crowds.
title When legs and bodies synchronize: Two-level collective dynamics in dense crowds
topic Physics and Society
url https://arxiv.org/abs/2601.05867