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Assessing ecosystem effects of reservoir operations using food web-energytransfer and water quality models [Review]

机译:使用食物网能量转移和水质模型评估水库运行的生态系统影响[综述]

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摘要

We investigated the effects on the reservoir food web of a new temperature control device (TCD) on the dam at Shasta Lake, California. We followed a linked modeling approach that used a specialized reservoir water quality model to forecast operation-induced changes in phytoplankton production. A food web-energy transfer model was also applied to propagate predicted changes in phytoplankton up through the food web to the predators and sport fishes of interest. The food web-energy transfer model employed a 10% trophic transfer efficiency through a food web that was mapped using carbon and nitrogen stable isotope analysis. Stable isotope analysis provided an efficient and comprehensive means of estimating the structure of the reservoir's food web with minimal sampling and background data. We used an optimization procedure to estimate the diet proportions of all food web components simultaneously from their isotopic signatures. Some consumers were estimated to be much more sensitive than others to perturbations to phytoplankton supply. The linked modeling approach demonstrated that interdisciplinary efforts enhance the value of information obtained from studies of managed ecosystems. The approach exploited the strengths of engineering and ecological modeling methods to address concerns that neither of the models could have addressed alone: (a) the water quality model could not have addressed quantitatively the possible impacts to fish, and (b) the food web model could not have examined how phyto plankton availability might change due to reservoir operations.
机译:我们研究了加利福尼亚州Shasta湖大坝上新型温度控制装置(TCD)对储层食物网的影响。我们遵循了一种链接建模方法,该方法使用专门的水库水质模型来预测浮游植物生产中由操作引起的变化。还应用了食物网能量转移模型,将预测的浮游植物变化通过食物网传播到感兴趣的捕食者和运动鱼类。食物网-能量转移模型通过食物网采用了10%的营养转移效率,并使用碳和氮稳定同位素分析进行​​了测绘。稳定的同位素分析提供了一种有效而全面的方法,只需最少的采样和背景数据即可估算储层食物网的结构。我们使用了一种优化程序来根据其同位素特征同时估算所有食物网成分的饮食比例。据估计,一些消费者对浮游植物供应的扰动比其他消费者敏感得多。链接的建模方法表明,跨学科的工作可以提高从受管理的生态系统研究中获得的信息的价值。该方法利用工程和生态建模方法的优势来解决以下两个模型无法单独解决的问题:(a)水质模型无法定量解决对鱼类的可能影响,以及(b)食物网模型无法检查由于水库运行而导致植物浮游生物的可用性如何变化。

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