Effect of dispersal in two-patch environment with Richards growth on population dynamics

Bilel Elbetch
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引用次数: 1

Abstract

In this paper, we consider a two-patch model coupled by migration terms, where each patch follows a Richards law. First, we prove the global stability of the model. Second, in the case when the migration rate tends to infinity, the total carrying capacity is given, which in general is different from the sum of the two carrying capacities and depends on the parameters of the growth rate and also on the migration terms. Using the theory of singular perturbations, we give an approximation of the solutions of the system in this case. Finally, we determine the conditions under which fragmentation and migration can lead to a total equilibrium population which might be greater or smaller than the sum of two carrying capacities and we give a complete classification for all possible cases. The total equilibrium population formula for a large migration rate plays an important role in this classification. We show that this choice of local dynamics has an influence on the effect of dispersal. Comparing the dynamics of the total equilibrium population as a function of the migration rate with that of the logistic model, we obtain the same behavior. In particular, we have only three situations that the total equilibrium population can occur: it is always greater than the sum of two carrying capacities, always smaller, and a third case, where the effect of dispersal is beneficial for lower values of the migration rate and detrimental for the higher values. We end by examining the two-patch model where one growth rate is much larger than the second one, we compare the total equilibrium population with the sum of the two carrying capacities.
理查兹生长双斑块环境中分散对种群动态的影响
在本文中,我们考虑了一个由迁移项耦合的双补丁模型,其中每个补丁遵循理查兹定律。首先,证明了模型的全局稳定性。其次,在迁移速率趋于无穷大的情况下,给出了总承载力,它通常不同于两种承载力的总和,它取决于增长率的参数,也取决于迁移项。利用奇异摄动理论,给出了这种情况下系统解的近似。最后,我们确定了破碎化和迁移可能导致总平衡种群大于或小于两种承载能力之和的条件,并对所有可能的情况进行了完整的分类。大迁移率下的总平衡人口公式在这种分类中起着重要作用。我们表明,这种局部动力学的选择对扩散的效果有影响。将总平衡种群作为迁移率的函数的动态与logistic模型的动态进行比较,我们得到了相同的行为。特别是,总平衡种群可能出现的情况只有三种:总平衡种群总是大于两个承载能力的总和,总平衡种群总是小于两个承载能力的总和,以及第三种情况,在这种情况下,扩散的影响对迁移速率的较低值有利,对迁移速率的较高值有害。最后,我们考察了两个斑块模型,其中一个增长率远大于另一个增长率,我们将总均衡人口与两个承载能力的总和进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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