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Patchiness in a minimal nutrient a€“ phytoplankton model

机译:最小养分浮游植物模型中的斑块

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We present a minimal two-component model that can exhibit various types of spatial patterns including patchiness. The model, comprising nutrients and phytoplankton, includes the effect of nutrient uptake by phytoplankton as a Holling type II functional response, and also includes the effect of zooplankton grazing on phytoplankton as a Holling type II non-dynamical term. The mean-field model without the diffusion and advection terms shows both bistability and limit-cycle oscillations as a few parameters such as the input rate of nutrients and the maximum feeding rate of zooplankton are changed. If the parameter values are chosen from the limit-cycle oscillation region, the corresponding reactiona€“advectiona€“diffusion equations show spatial pattern formations by the combined effects of advection and diffusion by turbulent stirring and mixing, and biological interactions. As the nutrient input is increased, the system behaviour changes from the extinction of the entire phytoplankton to the formation of filamentous patterns, patchiness patterns and homogeneous distributions. These observations suggest that the spatial pattern of phytoplankton can function as an indicator to evaluate the eutrophication level in aquatic ecosystems.
机译:我们提出了一个最小的两部分模型,可以显示各种类型的空间格局,包括斑驳。该模型包括养分和浮游植物,包括作为第二类Holling功能性反应的浮游植物摄取养分的影响,还包括作为第二类Holling非动态项的浮游动物对浮游植物的影响。没有扩散和对流项的平均场模型同时显示了双稳态和极限循环振荡,因为改变了一些参数,例如营养物的输入速率和浮游动物的最大摄食率。如果从极限循环振荡区域中选择参数值,则相应的反应-“对流”-扩散方程显示湍流搅拌和混合以及对流和扩散以及生物相互作用的综合作用所形成的空间模式形成。随着养分输入的增加,系统行为将从整个浮游植物的灭绝变为丝状,斑块状和均匀分布的形成。这些观察结果表明,浮游植物的空间格局可以作为评估水生生态系统富营养化水平的指标。

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