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  1. Рассматривается вертикально-распределенная трехкомпонентная модель морской экосистемы. Состояние планктонного сообщества с учетом питательных веществ анализируется в условиях активных перемещений зоопланктона в вертикальном столбе воды. Аналитически получены условия ДС-неустойчивости системы в окрестности пространственно-однородного равновесия. Численно определены области параметров, при которых пространственнооднородное равновесие устойчиво к небольшим пространственно-неоднородным возмущениям, неустойчиво по Тьюрингу и колебательно неустойчиво. Исследовано влияние параметров, определяющих биологические характеристики зоопланктона и пространственные перемещения планктона, на возможность образования пространственных структур. Показано, что при малой скорости потребления фитопланктона на пространственную неустойчивость существенно влияет убыль зоопланктона, а при больших значениях этого параметра имеют значение перемешивание фитопланктона и пространственные перемещения зоопланктона.

    Giricheva E.E.
    Modeling of plankton community state with density-dependent death and spatial activity of zooplankton
    Computer Research and Modeling, 2016, v. 8, no. 3, pp. 549-560

    A vertically distributed three-component model of marine ecosystem is considered. State of the plankton community with nutrients is analyzed under the active movement of zooplankton in a vertical column of water. The necessary conditions of the Turing instability in the vicinity of the spatially homogeneous equilibrium are obtained. Stability of the spatially homogeneous equilibrium, the Turing instability and the oscillatory instability are examined depending on the biological characteristics of zooplankton and spatial movement of plankton. It is shown that at low values of zooplankton grazing rate and intratrophic interaction rate the system is Turing instable when the taxis rate is low. Stabilization occurs either through increased decline of zooplankton either by increasing the phytoplankton diffusion. With the increasing rate of consumption of phytoplankton range of parameters that determine the stability is reduced. A type of instability depends on the phytoplankton diffusion. For large values of diffusion oscillatory instability is observed, with a decrease in the phytoplankton diffusion zone of Turing instability is increases. In general, if zooplankton grazing rate is faster than phytoplankton growth rate the spatially homogeneous equilibrium is Turing instable or oscillatory instable. Stability is observed only at high speeds of zooplankton departure or its active movements. With the increase in zooplankton search activity spatial distribution of populations becomes more uniform, increasing the rate of diffusion leads to non-uniform spatial distribution. However, under diffusion the total number of the population is stabilized when the zooplankton grazing rate above the rate of phytoplankton growth. In general, at low rate of phytoplankton consumption the spatial structures formation is possible at low rates of zooplankton decline and diffusion of all the plankton community. With the increase in phytoplankton predation rate the phytoplankton diffusion and zooplankton spatial movement has essential effect on the spatial instability.

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