Huppert Amit, Blasius Bernd, Olinky Ronen, Stone Lewi
Department of Zoology and the Porter Super Center for Ecological and Environmental Studies, Tel Aviv University, Ramat-Aviv, Tel Aviv 69978, Israel.
J Theor Biol. 2005 Oct 7;236(3):276-90. doi: 10.1016/j.jtbi.2005.03.012.
We analyse a generic bottom-up nutrient phytoplankton model to help understand the dynamics of seasonally recurring algae blooms. The deterministic model displays a wide spectrum of dynamical behaviours, from simple cyclical blooms which trigger annually, to irregular chaotic blooms in which both the time between outbreaks and their magnitudes are erratic. Unusually, despite the persistent seasonal forcing, it is extremely difficult to generate blooms that are both annually recurring and also chaotic or irregular (i.e. in amplitude) even though this characterizes many real time-series. Instead the model has a tendency to 'skip' with outbreaks often being suppressed from 1 year to the next. This behaviour is studied in detail and we develop analytical expressions to describe the model's flow in phase space, yielding insights into the mechanism of the bloom recurrence. We also discuss how modifications to the equations through the inclusion of appropriate functional forms can generate more realistic dynamics.
我们分析了一个通用的自下而上的营养物-浮游植物模型,以帮助理解季节性反复出现的藻华动态。该确定性模型展示了广泛的动力学行为,从每年触发的简单周期性藻华,到爆发时间和规模都不稳定的不规则混沌藻华。不同寻常的是,尽管存在持续的季节性强迫,但即使许多实际时间序列具有这种特征,要生成每年反复出现且混沌或不规则(即幅度上)的藻华却极其困难。相反,该模型有“跳过”的趋势,爆发常常从一年到下一年受到抑制。我们详细研究了这种行为,并开发了解析表达式来描述模型在相空间中的流动,从而深入了解藻华复发的机制。我们还讨论了通过纳入适当的函数形式对方程进行修改如何能产生更现实的动力学。