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Classifying low flow hydrological regimes at a regional scale

机译:在区域范围内对低流量水文状况进行分类

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The paper uses a simple water balance model that partitions the precipitation between actual evapotranspiration, quick flow and delayed flow, and has sufficient complexity to capture the essence of climate and vegetation controls on this partitioning. Using this model, monthly flow duration curves have been constructed from climate data across Europe to address the relative frequency of ecologically critical low flow stages in semi-arid rivers, when flow commonly persists only in disconnected pools in the river bed. The hydrological model is based on a dynamic partitioning of precipitation to estimate water available for evapotranspiration and plant growth and for residual runoff. The duration curve for monthly flows has then been analysed to give an estimate of bankfull flow based on recurrence interval. Arguing from observed ratios of cross-sectional areas at flood and low flows, hydraulic geometry suggests that disconnected flow under "pool" conditions is approximately 0.1% of bankfull flow. Flow duration curves define a measure of bankfull discharge on the basis of frequency. The corresponding frequency for pools is then read from the duration curve, using this (0.1 %) ratio to estimate pool discharge from bank full discharge. The flow duration curve then provides an estimate of the frequency of poorly connected pool conditions, corresponding to this discharge, that constrain survival of river-dwelling arthropods and fish. The methodology has here been applied across Europe at 15 km resolution, and the potential is demonstrated for applying the methodology under alternative climatic scenarios.
机译:本文使用一个简单的水平衡模型,该模型在实际蒸散量,快速流量和延迟流量之间分配降水,并具有足够的复杂性来捕获这种分配所涉及的气候和植被控制的本质。使用该模型,可以根据欧洲各地的气候数据绘制每月流量持续时间曲线,以解决半干旱河流中生态关键的低流量阶段相对频率的问题,此时流量通常仅持续存在于河床的非连续池中。水文模型基于降水的动态分配,以估算可用于蒸散和植物生长以及剩余径流的水。然后,分析了每月流量的持续时间曲线,以基于重复间隔对银行满流量进行估算。从洪水和低流量时所观察到的截面积比率来看,水力几何学表明,“池”条件下的非连续流量约为堤岸流量的0.1%。流量持续时间曲线基于频率定义了堤岸满溢流量的度量。然后从持续时间曲线中读取池的相应频率,使用该比率(0.1%)从库满流量估算池流量。然后,水流持续时间曲线可以估算出与该排放量相对应的连通性差的水池状况的频率,从而限制了居住在河中的节肢动物和鱼类的生存。该方法已在欧洲以15 km的分辨率应用,并证明了在替代气候情景下应用该方法的潜力。

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