English

Dimensionless Numbers Reveal Distinct Regimes in the Structure and Dynamics of Pedestrian Crowds

Statistical Mechanics 2024-03-12 v2 Physics and Society

Abstract

In fluid mechanics, dimensionless numbers like the Reynolds number help classify flows. We argue that such a classification is also relevant for crowd flows by putting forward the dimensionless Intrusion and Avoidance numbers.Using an extensive dataset, we show that these delineate regimes that are characterized by distinct structural signatures, best probed in terms of distances at low Avoidance number and times-to-collision at low Intrusion number.These findings prompt a perturbative expansion of the agent-based dynamics; the generic models thus obtained perform well in (and only in) the regime in which they were derived.

Keywords

Cite

@article{arxiv.2307.12786,
  title  = {Dimensionless Numbers Reveal Distinct Regimes in the Structure and Dynamics of Pedestrian Crowds},
  author = {Jakob Cordes and Andreas Schadschneider and Alexandre Nicolas},
  journal= {arXiv preprint arXiv:2307.12786},
  year   = {2024}
}

Comments

PNAS Nexus, In press