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Hyporheic water exchange in a large hydropower-regulated boreal river - directions and rates

机译:大型水电调节的北方河流中的亲水性水交换-方向和费率

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Widespread river regulation is known to modify river-aquifer interactions, influencing entire watersheds, but knowledge of the hyporheic flowpath along regulated rivers is limited. This study measured the hydraulic conductivity of the river bed and the aquifer, water levels and seepage fluxes in the heavily regulated Lule River in Northern Sweden, with the aim of characterising water exchange across the river-aquifer interface. While pristine rivers in the area are gaining, the Lule River was recharging the aquifer during 10% of the time. Daily river level fluctuations (typically ±0.25 m) directed ~3% of the total orthogonal flux across the river bed towards the aquifer, while during ~2% of the time the orthogonal fluxes were negligible (≤10~(-4) m d~(-1)). A clogging layer on the river bed, most likely formed due to the modified river discharge, restricted river-aquifer exchange. The hyporheic zone had higher electrical conductivity than the river and the aquifer and electrical conductivity occasionally decreased following rising river water levels, with 3-5 hours' delay. Overall, hydropower regulation has severely altered the hydrological regime of the hyporheic zone in the Lule River.
机译:众所周知,广泛的河流调节会改变河流-含水层之间的相互作用,影响整个流域,但对沿调节河流的水流路径的了解却很有限。这项研究测量了瑞典北部受严格管制的吕勒河的河床和含水层的水力传导率,水位和渗透通量,目的是表征整个河流-含水层界面的水交换特征。尽管该地区的原始河流正在蓄水,但卢勒河却在10%的时间内给蓄水层补水。每日河流水位波动(通常为±0.25 m)将流经河床的总正交通量的〜3%引向含水层,而在〜2%的时间内,正交通量可忽略不计(≤10〜(-4)md〜 (-1))。河床的堵塞层很可能是由于河道流量的变化而形成的,从而限制了河水交换。该次流带的电导率高于河流,随着河流水位的升高,含水层和电导率偶尔会降低,延迟3-5小时。总体而言,水电监管已严重改变了吕勒河水流带的水文状况。

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