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Improving managed environmental water use: Shasta River flow and temperature modeling.

机译:改善可管理的环境用水:沙斯塔河流量和温度模拟。

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Urban, agricultural, and industrial water users actively manage water supplies and demands to increase water use efficiency through conservation, water markets, infrastructure changes, and creative operation and management strategies. Improving water use efficiency is just beginning to be incorporated in the environmental sector to extend benefits and reduce costs. This study explores methods to improve environmental water use efficiency, as well as to reduce competition for water between environmental uses and traditional water resources. California's Shasta River is used as a case-study to evaluate restoration alternatives and efficient use of environmental water allocations. Low instream flow and high water temperature conditions are two factors limiting survival of native salmon in the Shasta River. This study examines the potential to enhance fish habitat conditions by better managing environmental water quantity and quality, using theoretical analysis, field monitoring, simulation, and optimization modeling. Many other potential methods to improve environmental water use efficiency exist. Results suggest that environmental water use efficiency can potentially improve environmental performance and perhaps reduce some water management conflicts, and additional research for managing environmental water use is merited. Modeling results specific to the Shasta River indicate that restoring Big Springs Creek is especially promising to enhance fish habitat in the Shasta River, cold water is necessary in the upper reaches for most restoration measures to be effective, and a combination of restoration alternatives most improve instream habitat for native salmon species in the Shasta River.
机译:城市,农业和工业用水用户通过节约用水,水市场,基础设施变化以及创造性的运营和管理策略积极管理供水和需求,以提高用水效率。提高用水效率刚开始被纳入环境部门以扩大收益和降低成本。这项研究探索了提高环境用水效率以及减少环境使用与传统水资源之间的水竞争的方法。加利福尼亚的沙斯塔河(Shasta River)被用作案例研究,以评估修复方案和环境水分配的有效利用。下游流量低和水温高是限制沙斯塔河本地鲑鱼生存的两个因素。这项研究使用理论分析,现场监测,模拟和优化模型,研究了通过更好地管理环境水的数量和质量来改善鱼类栖息地条件的潜力。存在许多其他潜在的改善环境用水效率的方法。结果表明,环境用水效率可以潜在地改善环境绩效,并可能减少一些水管理冲突,因此有必要进行其他有关管理环境用水的研究。针对沙斯塔河的模拟结果表明,恢复大斯普林斯克里克特别有希望改善沙斯塔河的鱼类栖息地,上游需要冷水才能使大多数恢复措施有效,并且多种恢复措施组合可以最大程度地改善河内河道。 Shasta河中本地鲑鱼物种的栖息地。

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