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Environmental flows and the mitigation of hydrological alteration downstream from dams: The Spanish case

机译:环境流量和缓解大坝下游的水文变化:西班牙案例

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Dams cause significant alteration in natural flow patterns of rivers throughout the world. As a response, many countries have established environmental flows (e-flows) to reduce hydrological alteration and mitigate ecosystem degradation. This paper assesses hydrological changes downstream from dams in 22 rivers in Spain, 12 of them located in northern wetter regions (Duero and Ebro basins) and the remaining 10 in southern drier regions (Guadalquivir and Júcar basins). First we compared pre-dam and post-dam instream flow patterns, and then we considered a third period starting with the implementation of e-flows. We quantified changes in mean annual flows, monthly flows, and magnitude and timing of extreme flows (1-day maximum, 95th percentile, 1-day minimum and 5th percentile). The analysis aimed at: i) characterizing hydrological alteration in regulated rivers in four river basins in Spain, with a special focus on differences across regions; and (ii) assessing the capacity of the implemented e-flows to mitigate flow regime alteration downstream from dams. All the studied rivers displayed significant changes in magnitude and timing of flows after the dam construction. A quite homogenous trend was observed in the drier basins, where mean annual flows and annual extreme flows decreased significantly. The wetter basins showed no uniform patterns in mean annual flows, while 1-day maximum and 95th percentile flow values decreased. In contrast to drier basins, 1-day minimum and 5th percentile flow values increased markedly. In most cases, the natural Mediterranean annual hydrograph was inverted, with the highflow period occurring during the low precipitation months (summer) and the low-flow period during the wet season. After e-flows implementation, these patterns of hydrological alteration remained almost unchanged, pointing to a limited capacity of current e-flows to mitigate the hydrological impacts downstream from dams.
机译:大坝导致世界各地河流的自然流动模式发生重大变化。作为应对措施,许多国家建立了环境流量(e-flows),以减少水文变化并缓解生态系统退化。本文评估了西班牙 22 条河流中大坝下游的水文变化,其中 12 条位于北部较湿润地区(杜罗和埃布罗盆地),其余 10 条位于南部较干燥地区(瓜达尔基维尔和胡卡尔盆地)。首先,我们比较了大坝前和大坝后的入流模式,然后我们考虑了从实施电子流开始的第三个时期。我们量化了年平均流量、月流量以及极端流量(1 天最大值、第 95 个百分位数、1 天最小值和第 5 个百分位数)的变化。该分析旨在:i)描述西班牙四个流域受管制河流的水文变化,特别关注不同地区的差异;(ii)评估已实施的电子流量的能力,以减轻大坝下游的流态变化。大坝建设后,所有研究的河流在水量和流量时间上都显示出显著变化。在较干燥的流域观察到相当均匀的趋势,年平均流量和年极端流量显著下降。湿润流域的年平均流量没有均匀的模式,而1天最大流量值和第95个百分位数流量值则有所下降。与较干燥的流域相比,1 天最小流量值和第 5 个百分位数流量值显着增加。在大多数情况下,地中海自然年水位线是倒置的,高流量期发生在低降水量月份(夏季),低流量期发生在雨季。在实施电子流量后,这些水文变化模式几乎没有变化,这表明当前电子流量在减轻大坝下游水文影响方面的能力有限。

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