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Economic Analysis of Restoration Practices of a Large River Floodplain: A Case Study of the Willamette River, Oregon

机译:大型河洪水恢复实践的经济分析 - 以俄勒冈州威拉米河河案例研究

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This paper examines restoration practices that focus on the reduction of water temperatures in the upper mainstem Willamette River, Oregon, for the benefit of salmonid species. Economic information is developed to determine the costeffectiveness of water temperature reduction strategies. The CE-QUAL-W2 water temperature model is used to simulate the effects of upstream combinations of riparian shading and flow increments on downstream water temperatures. Costs associated with these strategies are estimated. These costs consist of the opportunity costs of losing agricultural production and recreation due to flow releases from upstream reservoirs. Hyporheic temperature reduction is also examined. Restoration practices associated with this type of cooling are done through removal/reconnection of the obstacles that are necessary to allow the process of re-creating dynamic channel complexity. The observed reduction of summer water temperatures associated with channel complexity indicates that this approach is more flexible in reducing temperature than approaches that rely on flow increments or/and shade. Although the costs associated with the hyporheic approach are substantial, the effects of such a long-term ecological improvement of floodplain habitat may substantially benefit salmonid populations.
机译:本文审查了专注于减少对俄勒冈州上部主干潮流河上的水温减少的恢复实践,以达到鲑鱼类。开发了经济信息以确定水温降低策略的成本效益。 CE-Qual-W2水温模型用于模拟河岸阴影和流量增量上游组合对下游水温的影响。估计与这些策略相关的成本。这些成本包括由于来自上游水库的流量释放而失去农业生产和娱乐的机会成本。还检查了多余的温度降低。通过去除/重新连接所需的障碍物来完成与这种类型的冷却相关的恢复措施,以允许重新创建动态信道复杂性的过程。观察到与信道复杂相关的夏季水温降低表明,在降低温度方面比依赖于流量增量或/和阴影的方法更灵活。虽然与低于过多的方法相关的成本是大幅的,但这种长期生态改善的洪泛平原栖息地的影响可能会大大利于鲑鱼种群。

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