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CE-QUAL-W2 Water Quality and Fish-bioenergetics Model of Chester Morse Lake and the Cedar River

机译:切斯特莫尔斯湖和雪松河的CE-QUaL-W2水质和鱼类生物能量学模型

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摘要

Many communities are currently seeking to balance urban water needs with preservation of sensitive fish habitat. As part of that effort, CE-QUAL-W2, a hydrodynamic and temperature model, was developed for Chester Morse Lake and the lower Cedar River, WA. Chester Morse Lake is approximately 10 km long with a maximum depth at full pool of 40 m. The Cedar River model started immediately downstream of the Chester Morse dam and ended 21 km downstream at Landsburg, where drinking water is diverted for the City of Seattle. This water quality model was coupled with a fish habitat and bioenergetics model for bull trout and was calibrated to temperature data between 2005 and 2008. Bull trout fish bioenergetics parameters were provided by the USGS. The CE-QUAL-W2 model was found to be highly accurate in modeling temperature variation in the lake - at most locations having an average absolute mean error of between 0.5 and 0.8 oC. The Cedar River model had an average absolute mean error of 0.7oC. This tool is designed to allow managers and operators to estimate the impact to fish habitat and growth potential from various management decisions including extent of drawdown, timing/volume of flows, and various pumping operations. Future studies could include incorporating further water quality parameters such as nutrients, algae, and zooplankton as they relate to fish productivity.
机译:当前,许多社区都在寻求平衡城市用水与保护敏感鱼类栖息地之间的关系。作为这项工作的一部分,开发了CE-QUAL-W2(一种流体动力学和温度模型),用于切斯特莫尔斯湖和华盛顿州锡达河下游。切斯特莫尔斯湖长约10公里,最大深度为40 m。雪松河模型在切斯特·莫尔斯(Chester Morse)大坝下游立即开始,并在兰兹斯堡(Landsburg)下游21公里处终止,那里的饮用水被转移到西雅图市。该水质模型与牛鳟鱼的生境和生物能学模型相结合,并根据2005年至2008年之间的温度数据进行了校准。USGS提供了牛鳟鱼的生物能学参数。发现CE-QUAL-W2模型在模拟湖中温度变化方面非常准确-在大多数位置,平均绝对平均误差在0.5至0.8 oC之间。雪松河模型的平均绝对平均误差为0.7oC。此工具旨在使管理人员和操作人员可以根据各种管理决策(包括水位下降,流量的时间/流量以及各种抽水作业)估算对鱼类栖息地和生长潜力的影响。未来的研究可能包括纳入与鱼类生产力相关的其他水质参数,例如营养物质,藻类和浮游动物。

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    Wells Vanessa I.;

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  • 年度 2011
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