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Experiments with sediment replenishment in a residual flow reach: Comparison of field datawith laboratory experiments

机译:在剩余流量范围内进行沉积物补给的实验:现场数据与实验室实验的比较

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Hydropower is an important pillar of the electricity production in Switzerland and its extension is planned in the next decades. Therefore, a more sustainable management of hydropower plants is needed. Sediment replenishment combined with artificially-triggered flood pulses are gaining increasing interest to restore residual flow reaches. In the Sarine river in Switzerland, such a measure was conducted. Mimicking laboratory experiments for the first time, four deposits, totaling 1000 m~(3)of sediment, were added to the river downstream of Rossens dam. Some 489 pebbles were equipped with RFID PIT tags and distributed among them. After the flood pulse passed, 57% of the tags were re-located. The maximum detected travel distance of a pebble was 284 m. Some deposits were eroded, while others resisted. Due to a limited submergence, mainly lateral erosion was observed. Nevertheless, erosion of deposits as well as deposition of eroded material in clusters resulted in the same scheme as observed in laboratory experiments which could be validated with this field experiment.
机译:水电是瑞士电力生产的重要支柱,并且计划在未来几十年对其进行扩展。因此,需要对水力发电厂进行更可持续的管理。沉积物补给与人工触发的洪水脉冲相结合的兴趣日益浓厚,以恢复剩余流量。在瑞士的萨林河上,已采取了这样的措施。首次模仿实验室实验,在Rossens大坝下游河道中添加了四个沉积物,共沉积物1000 m〜(3)。约有489个卵石配有RFID PIT标签,并在其中分布。洪水脉冲过去后,有57%的标签被重新定位。检测到的最大卵石行进距离为284 m。一些沉积物被侵蚀,而另一些则被抵抗。由于浸入有限,主要观察到侧向侵蚀。但是,簇中沉积物的侵蚀以及侵蚀材料的沉积导致了与实验室实验中观察到的相同方案,该方案可以通过该现场实验进行验证。

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