Open AccessMathematicsMedicinePhysics
DOI: 10.1007/978-3-030-96562-4_10

tlooto Summary

A numerical asymptotic preservation scheme to solve the kinetic model of the Susceptible-Exposed-Infectious-Recovered-Died reaction-diffusion system for the COVID-19 pandemic and its derivation from a kinetic model is developed.

Abstract

In this paper, we propose a time-dependent Susceptible-Exposed-Infectious-Recovered-Died (SEIRD) reaction-diffusion system for the COVID-19 pandemic and we deal with its derivation from a kinetic model. The derivation is obtained by mathematical description delivered at the micro-scale of individuals. Our approach is based on the micro-macro decomposition which leads to an equivalent formulation of the kinetic model which couples the microscopic equations with the macroscopic equations. We develop a numerical asymptotic preservation scheme to solve the kinetic model. The proposed approach is validated by various numerical tests where particular attention is paid to the Moroccan situation against the actual pandemic.

Citation format

ZAGOUR, Mohamed. Kinetic derivation of a time-dependent SEIRD reaction-diffusion system for COVID-19 [preprint]. arXiv, 2021. arXiv:2101.10644.