| Literature DB >> 32834818 |
Wei Gao1, Haci Mehmet Baskonus2, Li Shi3.
Abstract
According to the report presented by the World Health Organization, a new member of viruses, namely, coronavirus, shortly 2019-nCoV, which arised in Wuhan, China, on January 7, 2020, has been introduced to the literature. The main aim of this paper is investigating and finding the optimal values for better understanding the mathematical model of the transfer of 2019-nCoV from the reservoir to people. This model, named Bats-Hosts-Reservoir-People coronavirus (BHRPC) model, is based on bats as essential animal beings. By using a powerful numerical method we obtain simulations of its spreading under suitably chosen parameters. Whereas the obtained results show the effectiveness of the theoretical method considered for the governing system, the results also present much light on the dynamic behavior of the Bats-Hosts-Reservoir-People transmission network coronavirus model.Entities:
Keywords: 2019 novel coronavirus (2019-nCoV); Numerical solutions; Variational iteration method
Year: 2020 PMID: 32834818 PMCID: PMC7396933 DOI: 10.1186/s13662-020-02831-6
Source DB: PubMed Journal: Adv Differ Equ ISSN: 1687-1839
Figure 1Two-dimensional surfaces of system (10)
Figure 2Two-dimensional surfaces of susceptible people and exposed people of system (10)
Figure 3Two-dimensional surfaces of symptomatic infected people and asymptomatic infected people of system (10)
Figure 4Two-dimensional surfaces of removed people (recovered or died people) and reservoir (the seafood area) of system (10)