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A large-scale hydroclimatological perspective on western European river flow regimes

机译:西欧河流流域的大规模水文气候学观点

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A novel flow regime classification scheme was applied to 141 river basins across western Europe, providing more robust analysis of space-time variability in regimes and their driving hydroclimatological processes. Regime shape (timing) and magnitude (size) were classified to regionalise long-term average flow regimes and to quantify year-to-year variation in regimes for each basin. Six long-term regime shape regions identified differences in seasonality related to latitude and altitude. Five long-term magnitude regions were linked to location plus average annual rainfall. Spatial distribution of long-term regimes reflected dominant climate and runoff generation processes. Regions were used to structure analysis of (relative) inter-annual regime dynamics. Six shape and five magnitude inter-annual regimes were identified; and regime stability (switching) assessed at pan-European, regional and basin scales. In some years, certain regime types were more prevalent, but never totally dominant. Regime shape was more stable at higher altitude due to buffering by frozen water storage-release (cf. more variable rainfall-runoff at lower altitudes). The lower inter-annual magnitude regimes persisted across larger domains (cf. higher magnitude) due to the more widespread climatic conditions generating low flow. Notably, there was limited spatio-temporal correspondence between regime shape and magnitude, suggesting variations in one attribute cannot be used to infer the other.
机译:一种新颖的流态分类方案被应用于西欧的141个流域,从而提供了对流态及其驱动水文气候过程的时空变化的更可靠的分析。对政权的形状(时间)和规模(大小)进行了分类,以对长期平均流态进行区域划分,并量化每个盆地的政态逐年变化。六个长期的政权形状区域确定了与纬度和高度相关的季节性差异。五个长期的大尺度区域与位置加上年平均降雨量有关。长期制度的空间分布反映了主要的气候和径流产生过程。区域用于对(相对)年际制度动态进行结构分析。确定了六个形状和五个量级的年际制度;泛欧,区域和流域尺度评估的政权稳定性(转换)。在某些年份中,某些政权类型更为普遍,但从未完全占主导地位。由于冻结水的储存和释放,缓冲结构在较高的高度更稳定(参见较低高度的降雨径流变化较大)。由于更广泛的气候条件产生的低流量,较低的年际强度模式在较大的区域内持续存在(参见较高的强度)。值得注意的是,政权形态和规模之间的时空对应关系有限,这表明一个属性的变化不能用来推断另一个属性。

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