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A Diffusion Model of Protected Population on Bilocal Habitat with Generalized Resource

机译:广义资源双胞胎栖息地保护人群的扩散模型

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A model of population distribution in a two-dimensional area divided by an ecological barrier, i.e. the boundaries of natural reserve, is considered. Distribution of the population is defined by diffusion, directed migrations and areal resource. The exchange of specimens occurs between two parts of the habitat. The mathematical model is presented in the form of a boundary value problem for a system of non-linear parabolic equations with variable parameters of diffusion and growth function. The splitting space variables, sweep method and simple iteration methods were used for the numerical solution of a system. A set of programs was coded in Python. Numerical simulation results for the two-dimensional unsteady non-linear problem are analyzed in detail. The influence of migration flow coefficients and functions of natural birth/death ratio on the distributions of population densities is investigated. The results of the research would allow to describe the conditions of the stable and sustainable existence of populations in bilocal habitat containing the protected and non-protected zones.
机译:二维区域的人口分布模型除以生态屏障,即自然储备的界限。人口的分布由扩散,定向迁移和区域资源定义。标本的交换发生在栖息地的两部分之间。数学模型以具有扩散和生长函数的可变参数的非线性抛物型方程系统的边值问题的形式。分裂空间变量,扫描方法和简单的迭代方法用于系统的数值解。一组程序在Python中编码。详细分析了二维不稳定非线性问题的数值模拟结果。研究了迁移流量系数的影响和天然诞生/死亡率对人口密度分布的影响。该研究的结果将允许描述含有保护和非保护区的双胞区栖息地群体稳定和可持续存在的条件。

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