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A CASCADE OF MODELS TO GUIDE RESERVOIR OPERATIONS: APPLICATION ON THE DEADWOOD RIVER SYSTEM

机译:指导储层作业的模型级联:在DEEDWOOD RIVER系统中的应用

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Adaptive management strategies are increasingly being used by resource managers to optimize complex water delivery systems at the scale of entire watersheds. A variety of models have been proposed to evaluate systems in a piecemeal approach that often times operate at different spatial and temporal scales and prove difficult to integrate with associated field data. In the Deadwood River system of Central Idaho, a series of cascading models was utilized to examine potential impacts of reservoir operations on endangered resident bull trout. Results from integrating limnologic, temperature, nutrient, hyporheic, and hydraulic models show that reservoir operations must remain dynamic depending upon the hydrologic conditions (wet vs. dry) present during any given year. Assimilating models that operate at various levels within a watershed will become increasingly important as climate change affects the regional hydrology and water resources operations must adjust to meet current and future demands.
机译:资源管理者越来越多地采用自适应管理策略,以在整个流域范围内优化复杂的输水系统。已经提出了各种模型来以零碎的方式评估系统,该方法经常在不同的空间和时间尺度上运行,并且证明难以与相关的现场数据集成。在爱达荷州中部的戴德伍德河系统中,使用了一系列级联模型来检查水库运营对濒临灭绝的居民鳟鱼的潜在影响。对湖泊学,温度,养分,流变和水力模型进行综合的结果表明,水库的运行必须保持动态,这取决于在任何一年中存在的水文条件(湿或干)。随着气候变化影响区域水文学,必须在流域内各个级别运行的同化模型变得越来越重要,必须调整水资源运营以满足当前和未来的需求。

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