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Disease contagion models coupled to crowd motion and mesh-free simulation

Authors :
Abdul Salam, Parveena Shamim
Bock, Wolfgang
Klar, Axel
Tiwari, Sudarshan
Abdul Salam, Parveena Shamim
Bock, Wolfgang
Klar, Axel
Tiwari, Sudarshan
Publication Year :
2021

Abstract

Modeling and simulation of disease spreading in pedestrian crowds have recently become a topic of increasing relevance. In this paper, we consider the influence of the crowd motion in a complex dynamical environment on the course of infection of the pedestrians. To model the pedestrian dynamics, we consider a kinetic equation for multi-group pedestrian flow based on a social force model coupled with an Eikonal equation. This model is coupled with a non-local SEIS contagion model for disease spread, where besides the description of local contacts, the influence of contact times has also been modeled. Hydrodynamic approximations of the coupled system are derived. Finally, simulations of the hydrodynamic model are carried out using a mesh-free particle method. Different numerical test cases are investigated, including uni- and bi-directional flow in a passage with and without obstacles.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1416062540
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1142.S0218202521400066