Complexity (Jan 2020)

Pattern Dynamics of Nonlocal Delay SI Epidemic Model with the Growth of the Susceptible following Logistic Mode

  • Zun-Guang Guo,
  • Jing Li,
  • Can Li,
  • Juan Liang,
  • Yiwei Yan

DOI
https://doi.org/10.1155/2020/9217387
Journal volume & issue
Vol. 2020

Abstract

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In this paper, we investigate pattern dynamics of a nonlocal delay SI epidemic model with the growth of susceptible population following logistic mode. Applying the linear stability theory, the condition that the model generates Turing instability at the endemic steady state is analyzed; then, the exact Turing domain is found in the parameter space. Additionally, numerical results show that the time delay has key effect on the spatial distribution of the infected, that is, time delay induces the system to generate stripe patterns with different spatial structures and affects the average density of the infected. The numerical simulation is consistent with the theoretical results, which provides a reference for disease prevention and control.