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Contrasting rainfall-runoff characteristics of floods in desert and Mediterranean basins

机译:对比沙漠与地中海盆地洪水的降雨径流特征

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Catchment-scale hydrological studies on drylands are lacking because of the scarcity of consistent data: observations are often available at the plot scale, but their relevance for the catchment scale remains unclear. A database of 24?years of stream gauge discharge and homogeneous high-resolution radar data over the eastern Mediterranean allows us to describe the properties of floods over catchments spanning from desert to Mediterranean climates, and we note that the data set is mostly of moderate intensity floods. Comparing two climatic regions, desert and Mediterranean, we can better identify specific rainfall-runoff properties. Despite the large differences in rainfall forcing between the two regions, the resulting unit peak discharges and runoff coefficients are comparable. Rain depth and antecedent conditions are the most important properties to shape flood response in Mediterranean areas. In deserts, instead, storm core properties display a strong correlation with unit peak discharge and, to a lesser extent, with runoff coefficient. In this region, an inverse correlation with mean catchment annual precipitation suggests also a strong influence of local surface properties. Preliminary analyses suggest that floods in catchments with wet headwater and dry lower section are more similar to desert catchments, with a strong influence of storm core properties on runoff generation.
机译:由于一致数据的稀缺性,缺乏关于旱地的集水区水文研究:观察范围通常在绘图规模上提供,但它们对集水区标度的相关性仍不清楚。在东部地中海的24多年的流量表排放和同质高分辨率雷达数据的数据库使我们能够描述从沙漠到地中海气候的集水区的洪水的属性,我们注意到数据集大多是中等强度的洪水。比较两个气候区域,沙漠和地中海,我们可以更好地识别特定的降雨 - 径流属性。尽管在两个区域之间的降雨中强制迫使降雨量较大,所得到的单位峰值放电和径流系数是可比的。雨深度和前进条件是地中海地区造成洪水应对的最重要的特性。相反,在沙漠中,风暴核心属性显示与单位峰值放电的强烈相关性,并且在较小程度上具有径流系数。在该地区,与平均流域年降水的反向相关性也表明局部表面性能的强烈影响。初步分析表明,潮湿的下部和干燥下部的流域中的洪水与沙漠流域更类似于风暴核心特性对径流发电的强烈影响。

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