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Sediment balance of a cascade of alpine reservoirs based on multi-decadal data records

机译:基于多年代数据记录的高山水库梯级泥沙平衡

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Reservoir sedimentation is a major concern in the operational management of dams and appurtenant structures. The increasing volume of sediments deposited in reservoirs leads to a loss of water storage, undermining the purpose itself of the dam for human use or protection. The deposition of sediments (mostly fine) in the vicinity of the dam’s operational structures, such as bottom outlets and power intakes, may result in partial or total blockage of these structures. To cope with these problems, it is essential to determine the sediment balance of the reservoirs, by assessing the origin and quantity of the in- and out-fluxes of sediments. This paper presents a methodology to determine the annual sediment balance of a system of interlinked reservoirs across several decades, as well as its application to the alpine hydropower cascade formed by the Oberaar, Grimsel and R?terichsboden reservoirs located in Switzerland. At that aim, the annual sediment fluxes and the sedimentation rates of each reservoir were characterized. Also, the percentage of fine sediments (dm < 10 μm) included in the total sedimentation rate was estimated. The results reveal that the annual sedimentation rate of the lowermost reservoir of the system (R?terichsboden) is highly altered by the flushing operations of the reservoir upstream (Grimsel). Also, for the uppermost reservoir of the system (Oberaar), the volume of fine sediments deposited annually can reach up to 46% of the total sedimentation rate.
机译:在大坝和附属建筑物的运营管理中,水库沉积是一个主要问题。沉积在水库中的沉积物数量的增加导致水的存储量减少,从而破坏了水坝本身为人类使用或保护的目的。大坝运行结构(例如底部出口和电力进口)附近的沉积物沉积物(大部分为细粉)可能导致这些结构的部分或全部堵塞。为了解决这些问题,必须通过评估沉积物流入和流出的来源和数量来确定水库的沉积物平衡。本文介绍了一种确定数十年来相互联系的水库系统年沉积物平衡的方法,并将其应用于由瑞士的Oberaar,Grimsel和R?terichsboden水库组成的高山水电梯级。为此,对每个水库的年泥沙通量和沉积速率进行了表征。此外,估算了总沉降速率中包括的细沉积物(dm <10μm)的百分比。结果表明,该系统最下部水库(R?terichsboden)的年沉积速率因上游水库(Grimsel)的冲洗操作而大大改变。同样,对于系统的最上层水库(Oberaar),每年沉积的细小沉积物量可达到总沉积率的46%。

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