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Reservoir system operation using a diversion tunnel

机译:使用转移隧道的储层系统操作

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Although available water resources are limited, water demand is continuously increasing due to population increases, economic development, and additional uses, such as recreational and environmental uses. Constructing new reservoirs has traditionally been the approach to develop new water resources. However, such construction can be hampered by negative perceptions, adverse environmental effects, and opposition from NGOs to dam construction. Although Andong and Imha reservoirs are located close to each other, and they have similar hydrological and meteorological characteristics, the storage capacity of Imha reservoir is only about half that of Andong reservoir. This makes the operation of both reservoirs inefficient. This paper evaluates the effect of a diversion tunnel connecting Andong and Imha in the flood season. Water yield and spillway release reduction capability with 95% reliability were analyzed using historical daily inflows data for 30 years. By changing the reservoir operation methods, the reservoir system performance was evaluated. The system operation of the reservoirs with the diversion tunnel showed better results than the individual operation.
机译:虽然可用的水资源有限,但由于人口增加,经济发展和额外用途,如娱乐和环境用途,水需求不断增加。构建新水库传统上是开发新水资源的方法。然而,这种结构可以通过负面看法,不利的环境影响和非政府组织对大坝建设的反对来阻碍这种结构。虽然安东和伊马水库彼此靠近,但它们具有类似的水文和气象特征,奥马水库的储存能力仅为安通水库的一半。这使得储存器的操作效率低下。本文评估了连通隧道连通隧道连通隧道和IMHA在汛期。使用历史每日流入30年来分析水产量和溢洪道释放减少能力,可靠性为95%的可靠性。通过改变储层操作方法,评估水库系统性能。具有转移隧道的储存器的系统操作显示出比单个操作更好的结果。

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