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Discrete Modeling of Dynamics of Zooplankton Community at the Different Stages of an Antropogeneous Eutrophication

机译:异化富营养化不同阶段浮游动物群落动力学的离散建模

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摘要

Mathematical modeling is a convenient way for characterization of complex ecosystems. This approach was applied to study the dynamics of zooplankton in Lake Sevan (Armenia) at different stages of anthropogenic eutrophication with the use of a novel method called discrete modeling of dynamical systems with feedback (DMDS). Simulation demonstrated that the application of this method helps in characterization of inter- and intra-component relationships in a natural ecosystem. This method describes all possible pairwise inter-component relationships like “plus–plus,” “minus–minus,” “plus–minus,” “plus–zero,” “minus–zero,” and “zero–zero” that occur in most ecosystems. Based on the results, a working hypothesis was formulated. It was found that the sensitivity to weak external influence in zooplanktons was the greatest during the mid period of eutrophication in Lake Sevan, whereas in the final stages of eutrophication, an outbreak in the biomass production of cyanobacteria was evident. To support this approach, a weak external disturbance in the form of magnetic storm was used to see its effect on species Daphnia longispina sevanica. A statistically significant correlation between the frequency of magnetic storms and the number of this species was revealed and an increase in the number of toxic cyanobacteria species as a consequence of eutrophication. This paper, for the first time, suggests a DMDS method, to diagnose impact of anthropogenic eutrophication on environment.
机译:数学建模是表征复杂生态系统的便捷方法。该方法被用于研究塞凡湖(亚美尼亚)不同阶段人为富营养化过程中浮游动物的动态,并使用一种称为动态反馈的离散模型(DMDS)的新方法。仿真表明,该方法的应用有助于表征自然生态系统中组件间和组件内的关系。该方法描述了所有可能的成对的组件间关系,例如“正负”,“负负”,“正负”,“正零”,“负零”和“零零”。大多数生态系统。根据结果​​,提出了有效的假设。研究发现,在塞凡湖富营养化中期,对浮游动物微弱的外部影响的敏感性最大,而在富营养化的最后阶段,蓝细菌的生物量产生明显。为了支持这种方法,使用了磁暴形式的外部弱干扰来观察其对水蚤(Daphnia longispina sevanica)的影响。揭示了电磁风暴的频率与该物种数量之间的统计学显着相关性,并且由于富营养化,有毒蓝细菌物种数量增加。本文首次提出了一种DMDS方法,用于诊断人为富营养化对环境的影响。

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