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Coupling the Hydrodynamic and Water Quality Model CE-QUAL-W2 With a Multi-Trophic Fish Bio-Energetics Model for Lake Roosevelt, Washington

机译:将水动力和水质模型CE-QUaL-W2与华盛顿罗斯福湖的多营养鱼类生物能量模型相结合

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摘要

Grand Coulee Dam created Franklin D. Roosevelt Lake as part of the Columbia Basin Project. Located in northeastern Washington State, the Project provides economically important hydropower (19 billion kilowatt hours per year), irrigation (225,000 ha), flood control, and sport fishing ($5 to 20 million annually). A good system understanding aids in balancing these beneficial uses for the 230 km long reservoir. The reservoiru27s atypical 45-day mean residence time is much shorter than a typical lake, and much longer than for a riverine dam. The spring freshet requires drawdowns of 15 to 20 m for flood control—the driving characteristic of reservoir operations.A physically based two-dimensional hydrodynamic and water quality model, CE-QUAL-W2 Version 3.5 (Cole and Wells, 2006), is coupled with a fish bioenergetics model based on the Stockwell and Johnson model (1997, 1999) to examine the effects of hydrodynamics on the reservoir algae-zooplankton-kokanee food web. This model was applied and calibrated to Lake Roosevelt with model improvements of multiple zooplankton compartments and zooplankton omnivory. Calibration parameters included temperature, dissolved oxygen, nutrients, algae, and zooplankton. The fish bioenergetics model is applied over the entire reservoir model space to generate a spatial and temporal fish growth potential distribution. The fish model refinements include sub-daily time-steps and an optimized vertical foraging strategy.The linked model suggests that kokanee fish growth potential is seasonally limited by both warm water and prey densities. While the lake ecology is significantly affected by the reservoir operations in general, the pelagic fish growth potential did not appear sensitive to minor changes in reservoir operations. However, the model suggests that the advantageous foraging locations shift seasonally and that optimal foraging strategies are dependent on fish size.
机译:大库里大坝创建了富兰克林·罗斯福湖,这是哥伦比亚盆地项目的一部分。该项目位于华盛顿州东北部,提供具有重要经济意义的水力发电(每年190亿千瓦时),灌溉(22.5万公顷),防洪和体育捕鱼(每年5到2000万美元)。良好的系统理解有助于平衡230公里长的水库的这些有益用途。该水库的非典型45天平均停留时间比典型的湖泊要短得多,而比河流大坝要长得多。春季新生期需要15至20 m的水位来控制洪水,这是水库运行的驱动特性。耦合了基于物理的二维水动力和水质模型CE-QUAL-W2版本3.5(Cole and Wells,2006年)基于斯托克韦尔和约翰逊模型(1997,1999)的鱼类生物能学模型,研究了流体动力学对水库藻类-浮游生物-科卡尼食物网的影响。通过对多个浮游动物隔室和浮游动物杂食动物的模型进行改进,将该模型应用于罗斯福湖并进行了校准。校准参数包括温度,溶解氧,营养物,藻类和浮游动物。将鱼类生物能学模型应用于整个水库模型空间,以生成空间和时间上的鱼类生长潜力分布。鱼类模型的改进包括次日时间步长和优化的垂直觅食策略。链接的模型表明,科卡尼鱼的生长潜力在季节性上受到温水和猎物密度的限制。总体而言,虽然湖泊生态受到水库运行的影响很大,但远洋鱼类的生长潜力似乎对水库运行的微小变化并不敏感。但是,该模型表明,有利的觅食位置随季节而变化,并且最佳觅食策略取决于鱼的大小。

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    McKillip Michael Lee;

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