Rinaldi S, Solidoro C
CIRITA, Politecnico di Milano, Milan, I-20133, Italy.
Theor Popul Biol. 1998 Aug;54(1):62-77. doi: 10.1006/tpbi.1998.1368.
A plankton-fish model, comprising phosphorus, algae, zooplankton, and young fish, with light intensity and water temperature varying periodically with the seasons, is analyzed in this paper. For realistic values of the parameters the model behaves chaotically, but its dynamics within the strange attractor can be described by a few one-dimensional maps that allow one to forecast the next yearly peak of plankton or fish from the last peaks. This property is an unambiguous mark of a special form of chaos. Unfortunately, the estimate of such peak-to-peak maps from field data is possible only if plankton or young fish biomass has been sampled accurately and frequently for a paramount number of years. In conclusion, the analysis shows that it might be that plankton dynamics are characterized by an interesting and peculiar form of chaos, but that inferences from recorded data on the existence of these forms of chaos are premature.
本文分析了一个浮游生物-鱼类模型,该模型包含磷、藻类、浮游动物和幼鱼,且光强和水温随季节周期性变化。对于实际参数值,该模型表现出混沌行为,但其在奇异吸引子内的动力学可以用一些一维映射来描述,这些映射允许人们根据上一个峰值预测下一年浮游生物或鱼类的峰值。这一特性是一种特殊形式混沌的明确标志。不幸的是,只有在对浮游生物或幼鱼生物量进行了长达数年的准确且频繁采样的情况下,才有可能根据实地数据估计这种峰-峰映射。总之,分析表明,浮游生物动力学可能具有一种有趣且独特的混沌形式,但从记录数据推断这些混沌形式的存在还为时过早。