Research Article published by Hindawi International Journal of Mathematics and Mathematical Sciences
Plague is a historic disease which is also known to be the most devastating disease that ever occurred in human history, caused
by gram-negative bacteria known as Yersinia pestis.The disease is mostly affected by variations of weather conditions as it disturbs
the normal behavior of main plague disease transmission agents, namely, human beings, rodents, fleas, and pathogens, in the
environment. This in turn changes the way they interact with each other and ultimately leads to a periodic transmission of plague
disease. In this paper, we formulate a periodic epidemic model system by incorporating seasonal transmission rate in order to
study the effect of seasonal weather variation on the dynamics of plague disease.We compute the basic reproduction number of a
proposed model.We then use numerical simulation to illustrate the effect of different weather dependent parameters on the basic
reproduction number. We are able to deduce that infection rate, progression rates from primary forms of plague disease to more
severe forms of plague disease, and the infectious flea abundance affect, to a large extent, the number of bubonic, septicemic, and
pneumonic plague infective agents. We recommend that it is more reasonable to consider these factors that have been shown to
have a significant effect on 𝑅𝑇 for effective control strategies.