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Simulating phytoplankton community dynamics in Lake Constance with a coupled hydrodynamic-ecological model

机译:用耦合水动力学 - 生态模型模拟湖泊湖康斯坦斯植物群落动态

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Lake Constance is among the largest lakes in central Europe and represents the most important drinking water reservoir in southwestern Germany. About 4 million people depend on this lake for their drinking water supply, and considerable efforts have been made to protect its high water quality (STABEL 1998). In addition to a drinking water supply, the lake is the receiving water body of numerous waste-water plants within its catch-ment and is moreover used for recreational purposes and fish-eries. To improve water quality management of the lake, a re-search project (see www.bodenseeonline.de) was initiated to develop a model-based decision support system. The model system consists of a coupled hydrodynamic ecological model that can be either run in a ID-setting (DYRESM-CAEDYM) or a 3D setting (ELCOM-CA EDYM). The establishment of the model systems requires the adaptation of the ecological model CAEDYM to Lake Constance, achieved by long-term simulations and comparison to historical data. The main goal of this study is to adapt the ecological model to reflect the physiological properties of the planktonic community, particularly for phytoplankton, which shows a great functional diversity. This diversity needs to be taken into account (REYNOLDS et al. 2002, SOMMER et al. 1986) for phytoplankton succession to be represented properly.
机译:康斯坦茨湖是中欧最大的湖泊之一,代表德国西南最重要的饮用水水库。大约400万人依赖于这个湖泊,为他们的饮用水供应,并采取了相当大的努力来保护其高水质(稳定1998年)。除了饮用水供应外,湖水还在其捕捞物中接收水体的众多垃圾植物,而且用于娱乐目的和鱼糜。为了提高湖泊的水质管理,启动了重新搜索项目(见www.bodenseeonline.de),以开发基于模型的决策支持系统。模型系统由耦合的流体动力生态模型组成,可以在ID设置(Dyresm-Caedym)或3D设置(Elcom-Ca Edym)中运行。模型系统的建立需要通过长期模拟和与历史数据进行比较实现生态模型Caedym到康斯坦茨。本研究的主要目标是调整生态模型,以反映浮游群落的生理特性,特别是对于浮游植物,这表现出巨大的功能多样性。需要考虑这种多样性(Reynolds等,2002,Sommer等,1986),用于浮游植物的继任。

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