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首页> 外文期刊>Environmental earth sciences >Modeling flood dynamics in a temporary river draining to an eutrophic reservoir in southeast Portugal
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Modeling flood dynamics in a temporary river draining to an eutrophic reservoir in southeast Portugal

机译:模拟葡萄牙东南部富营养化水库的临时河道中的洪水动力学

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Enxoe is a small temporary river with a flushy regime, which flash floods carry significant loads to the reservoir. As a result, the reservoir, which supplies 25,000 inhabitants, exhibits a high trophic state and cyanobacteria blooms since its construction in 1998, with water abstractions requiring extensive treatment. This study aimed to understand the contribution of flash floods to the Enxoes reservoir high trophic state using a modeling approach. This was the first time the river was monitored and that a modeling study was carried out. The MOHID-Land model was implemented to assess the water path in the catchment, and was integrated with field data to compute river loads. Results confirmed the importance of flash events. During flash floods, water properties were determined by soil surface and river bottom wash out, and depended mostly on the flush sequence and intensity. Model simulations showed that soil surface permeability reduction was an important factor regulating surface runoff while soil moisture was low. The first flood after the dry period contributed to 2% of the yearly discharge, 3% of yearly N load, and 7% of the yearly P loads. Winter floods contribution differed, producing 10% of both yearly discharge and loads. However, concentration of particulate matter and organic compounds in the first flood were one order of magnitude higher than in winter floods. This was due to river bottom resuspension and erosion of riparian areas, representative dynamics of a flushy regime. During subsequent winter floods, nutrient concentrations tended to remain constant as the watershed surface and respective soils were washed. Further work should link a watershed model to a reservoir model to depict the flood impact in the reservoir, and test management strategies to reduce the reservoir trophic state.
机译:恩索(Enxoe)是一条临时性小河,洪水泛滥,山洪泛滥给水库带来了很大的负担。结果,自1998年建成以来,该水库可为25,000个居民提供营养,并呈现高营养状态,并且蓝藻大量繁殖,取水需要大量处理。本研究旨在通过建模方法了解山洪对恩克索斯水库高营养状态的贡献。这是第一次监测河流,并进行了建模研究。实施了MOHID-Land模型以评估流域中的水路,并将其与现场数据集成以计算河流负荷。结果证实了闪光事件的重要性。在山洪暴发期间,水的性质取决于土壤表层和河底冲刷,并且主要取决于冲刷顺序和强度。模型模拟表明,土壤水分渗透率低是降低土壤表面渗透率的重要因素。枯水期后的第一次洪水造成了年排放量的2%,年氮负荷的3%和年磷负荷的7%。冬季洪水的贡献有所不同,产生了每年流量和负荷的10%。但是,第一次洪水中的颗粒物和有机化合物的浓度比冬季洪水高一个数量级。这是由于河底的重新悬浮和河岸地区的侵蚀,这是潮红制度的典型动力。在随后的冬季洪水中,随着流域表面和相应土壤的洗涤,养分浓度趋于保持恒定。进一步的工作应将流域模型与水库模型联系起来,以描述水库对洪水的影响,并测试管理策略以减少水库的营养状态。

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