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首页> 外文期刊>Ecological Modelling >Expansion of the model 'Rostherne' for fish and zooplankton: role of top-down effects in modifying the prevailing pattern of ecosystem functioning
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Expansion of the model 'Rostherne' for fish and zooplankton: role of top-down effects in modifying the prevailing pattern of ecosystem functioning

机译:扩大鱼类和浮游生物的模型'rostherne':自上而下效果在修改生态系统功能的普遍模式方面的作用

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This paper presents a new version of the well-established aquatic ecosystem model 'Rostherne', incorporating lake fish and zooplankton. The model currently comprises differential and algebraic equations describing processes and forcing functions most important for a freshwater ecosystem. These include seasonal changes of solar radiation and water temperature, processes of algal and cyanobacterial population dynamics and nutrient uptake, water and chemical budgeting, stratification of the water column and sedimentation of suspended particles, and dynamics of detritus and its chemical constituents. Although it was shown previously for some years that a reasonable simulation of changes in most state variables could be achieved without accounting for fish and zooplankton, in other years, consideration of these compartments improved the fit between observations and model simulations dramatically. This was particularly true for the year 1998, when the high zooplankton numbers in spring appeared to prevent any significant development of the diatom population. The latter, however, bloomed during the first part of the summer (following a decrease in zooplankton counts) causing an unusually delayed major drop in ambient Si levels. As biogoechemical cycles of Si. P and N are interconnected through the dynamics of the primary producers, such a delay has serious implications for the functioning of an aquatic ecosystem model. Since changes in zooplankton dynamics are heavily dependent on the variability in fish recruitment, simultaneous consideration of the two components is helpful both for modelling overall dynamics of the lake ecosystem and for implementation of the biogeochemical regulation proposed previously. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 60]
机译:本文介绍了建立良好的水生生态系统模型'rostherne'的新版本,融入了湖泊和浮游车。该模型目前包括描述对淡水生态系统最重要的过程和强迫功能的差分和代数方程。其中包括太阳辐射和水温的季节变化,藻类和蓝藻种群的过程和营养吸收,水和化学预算,水柱分层和悬浮颗粒的沉降,以及碎屑的动力学及其化学成分。虽然以前显示了多年的几年中,在未占FISH和Zooplant的情况下,可以实现大多数州变量的合理模拟,但在其他几年内,考虑这些隔室的考虑在显着改善了观测和模型模拟之间的适应性。这是1998年尤其如此,当春季的高浮游生物数目似乎防止硅藻人口的任何显着发展时。然而,后者在夏季的第一部分(浮游动物计数减少后)绽放,导致环境SI水平的异常延迟。作为Si的生物缩叶循环。 P和N通过初级生产者的动态互连,这种延迟对水生生态系统模型的运作具有严重影响。由于浮游动物动态的变化严重依赖于鱼类招聘中的可变性,因此两种组件的同时考虑对于建模湖生态系统的整体动态以及实施先前提出的生物地球化学调节,这两者都是有用的。 (c)2001年ELSELVIER Science B.v.保留所有权利。 [参考:60]

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