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THE DIFFUSIVE MODEL FOR AEDES AEGYPTI MOSQUITO ON A PERIODICALLY EVOLVING DOMAIN

机译:AEDES AEGYPTI蚊子的扩散模型在周期性地发展域

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This paper deals with a reaction-diffusion model on a periodically and isotropically evolving domain in order to explore the diffusive dynamics of Aedes aegypti mosquito, where we divide it into two sub-populations: the winged population and an aquatic form. The spatial-temporal risk index R-0 (rho) depending on the domain evolution rate rho(t) as well as its analytical properties is investigated. The long-time behaviors of the periodic solutions under the condition R-0 (rho) 1 and R-0 (rho) = 1 are explored, respectively. Moreover, we consider the specific case where rho(t) 1 to better understand the impact of the periodic evolution rate on the persistence and extinction of Aedes aegypti mosquito. Numerical simulations further verify our analytical results that the periodic domain evolution has a significant impact on the dispersal of Aedes aegypti mosquito.
机译:本文在定期和各向同性地演化域上涉及反应扩散模型,以探索AEDES AEGYPTI蚊子的扩散动态,在那里我们将其分为两个子群体:翅膀的人口和水生形式。研究了空间风险指数R-0(RHO),取决于域进化率rhO(t)以及其分析性质。分别探讨了条件R-0(ROO)> 1和R-0(RO-0(ROO)<= 1的周期性溶液的长时间行为。此外,我们认为Rho(t)1更好地了解周期性演化率对AEDYPTI蚊虫持续和灭绝的影响的具体情况。数值模拟进一步验证了我们的分析结果,即周期性域进化对AEDESIPIS蚊子的分散有重大影响。

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