Dimensionless numbers reveal distinct regimes in the structure and dynamics of pedestrian crowds

Author:

Cordes Jakob12ORCID,Schadschneider Andreas2ORCID,Nicolas Alexandre3ORCID

Affiliation:

1. Institute of Advanced Simulation, Forschungszentrum Jülich , 52428 Jülich , Germany

2. Institut für Theoretische Physik, Universität zu Köln, 50937 Köln , Germany

3. Université Claude Bernard Lyon 1, CNRS, Institut Lumière Matière , UMR5306, F-69100 Villeurbanne , France

Abstract

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, which quantify the intrusions into the pedestrians’ personal spaces and the imminency of the collisions that they face, respectively. Using an extensive dataset, we show that these numbers delineate regimes where distinct variables characterize the crowd’s arrangement, namely, Euclidean distances at low Avoidance number and times-to-collision at low Intrusion number. On the basis of these findings, a perturbative expansion of the individual pedestrian dynamics is carried out around the noninteracting state, in quite general terms. Simulations confirm that this expansion performs well in its expected regime of applicability.

Funder

German Research Foundation

French National Research Agency

Publisher

Oxford University Press (OUP)

Reference43 articles.

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3. The flow of human crowds;Hughes;Annu Rev Fluid Mech,2003

4. Modeling, evaluation, and scale on artificial pedestrians: a literature review;Martinez-Gil;ACM Comput Surv,2017

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