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The role of protection zone on species spreading governed by a reaction-diffusion model with strong Allee effect

机译:保护区对具有强大展示模型的物种传播的作用

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摘要

It is known that a species dies out in the long run for small initial data if its evolution obeys a reaction of bistable nonlinearity. Such a phenomenon, which is termed as the strong Allee effect, is well supported by numerous evidence from ecosystems, mainly due to the environmental pollution as well as unregulated harvesting and hunting. To save an endangered species, in this paper we introduce a protection zone that is governed by a Fisher-KPP nonlinearity, and examine the dynamics of a reaction-diffusion model with strong Allee effect and protection zone. We show the existence of two critical values 0 < L-* <= L*, and prove that a vanishing-transition-spreading trichotomy result holds when the length of protection zone is smaller than L-*; a transition-spreading dichotomy result holds when the length of protection zone is between L-* and L*; only spreading happens when the length of protection zone is larger than L*. This suggests that the protection zone works when its length is larger than the critical value L-*. Furthermore, we compare two types of protection zone with the same length: a connected one and a separate one, and our results reveal that the former is better for species spreading than the latter. (C) 2018 Elsevier Inc. All rights reserved.
机译:众所周知,如果其进化遵循双稳态非线性的反应,则在长期的初始数据中始终死于小型初始数据。这种现象被称为强大的植物效应,得到了来自生态系统的许多证据,主要是由于环境污染以及不受管制的收获和狩猎的众多证据。为了节省濒临灭绝的物种,本文介绍了由Fisher-KPP非线性管理的保护区,并检查具有强大的Allee效果和保护区的反应扩散模型的动态。我们展示了两个临界值0

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