首页> 外文期刊>Bulletin of Mathematical Biology >Prey Selection, Vertical Migrations and the Impacts of Harvesting Upon the Population Dynamics of a Predator-Prey System
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Prey Selection, Vertical Migrations and the Impacts of Harvesting Upon the Population Dynamics of a Predator-Prey System

机译:猎物的选择,垂直迁移及其收获对捕食者-猎物系统种群动态的影响

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摘要

A model is developed to describe the interaction between a predator and two prey types located in different regions. Conditions for stability and persistence are analysed. The effects of harvesting the predators are investigated by making the predator mortality rate habitat dependent. Results demonstrate that for any given set of parameter values there is a value of the intrinsic preference of the predator for each prey type at which the system undergoes a Hopf bifurcation. Above this critical value the system evolves towards a stable equilibrium, whereas below it, stable limit cycles arise by Hopf bifurcations. Simulations demonstrate that the presence of demographic stochasticity may destabilise oscillatory populations, thereby causing population extinctions. An application of the model to the foraging behaviour of North Sea cod is described. It is shown that if the preferred prey is more productive, it is likely that the equilibrium will be stable, whereas if the less preferred prey is more productive, populations are likely to display cycles and in the stochastic case become extinct. As cod fishing mortality is increased, the point of bifurcation and region of parameter space for which the system is unstable decreases. An increased understanding of how cod behave may enable fish stocks to be managed more successfully, for example by indicating where marine reserves should be placed.
机译:开发了一个模型来描述捕食者与位于不同区域的两种猎物类型之间的相互作用。分析了稳定性和持久性的条件。通过使捕食者的死亡率与生境有关,来研究捕食捕食者的影响。结果表明,对于任何给定的参数值集,对于系统经历Hopf分支的每种猎物类型,捕食者都有一个固有的偏好值。高于此临界值,系统将朝着稳定的平衡方向发展,而低于此临界值,则霍普夫分叉会产生稳定的极限环。模拟表明,人口随机性的存在可能使不稳定的人口不稳定,从而造成人口灭绝。描述了该模型在北海鳕鱼觅食行为中的应用。结果表明,如果偏好的猎物生产力更高,则均衡很可能会保持稳定;而如果偏好的猎物生产力更高,种群可能会出现周期,并且在随机情况下灭绝。随着鳕鱼捕捞死亡率的增加,系统不稳定的分叉点和参数空间区域减小。进一步了解鳕鱼的行为,可以使鱼类种群得到更成功的管理,例如通过指出应将海洋保护区放置在何处。

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