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首页> 外文期刊>Hydrology and Earth System Sciences >Long-term changes in central European river discharge for 1869–2016: impact of changing snow covers, reservoir constructions and an intensified hydrological cycle
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Long-term changes in central European river discharge for 1869–2016: impact of changing snow covers, reservoir constructions and an intensified hydrological cycle

机译:1869 - 2016年中欧河流排放的长期变化:变化雪覆盖,水库结构和强化水文周期的影响

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Recent climatic changes have the potential to severely alter river runoff, particularly in snow-dominated river basins. Effects of changing snow covers superimpose with changes in precipitation and anthropogenic modifications of the watershed and river network. In the attempt to identify and disentangle long-term effects of different mechanisms, we employ a?set of analytical tools to extract long-term changes in river runoff at high resolution. We combine quantile sampling with moving average trend statistics and empirical mode decomposition and apply these tools to discharge data recorded along rivers with nival, pluvial and mixed flow regimes as well as temperature and precipitation data covering the time frame 1869–2016. With a?focus on central Europe, we analyse the long-term impact of snow cover and precipitation changes along with their interaction with reservoir constructions. Our results show that runoff seasonality of snow-dominated rivers decreases. Runoff increases in winter and spring, while discharge decreases in summer and at the beginning of autumn. We attribute this redistribution of annual flow mainly to reservoir constructions in the Alpine ridge. During the course of the last century, large fractions of the Alpine rivers were dammed to produce hydropower. In recent decades, runoff changes induced by reservoir constructions seem to overlap with changes in snow cover. We suggest that Alpine signals propagate downstream and affect runoff far outside the Alpine area in river segments with mixed flow regimes. Furthermore, our results hint at more (intense) rainfall in recent decades. Detected increases in high discharge can be traced back to corresponding changes in precipitation.
机译:最近的气候变化有可能严重改变河流径流,特别是在雪撬河流盆地。雪覆盖叠加与流域和河流河流沉淀和人为修饰变化的影响。在尝试识别和解除不同机制的长期影响,我们使用了一套分析工具,以在高分辨率下提取河流径流的长期变化。我们将定量取样与移动平均趋势统计和经验模式分解相结合,并应用这些工具,以将沿着河流记录的数据放电,并覆盖时间框架1869-2016的温度和降水数据。有一个?专注于中欧,我们分析了雪覆盖和降水变化的长期影响以及与水库结构的互动。我们的研究结果表明,雪撬河流的径流季节性降低。雨水在冬季和春天增加,而夏天和秋季开始下降。我们将此流量的重新分布归因于高山山脊上的水库结构。在上个世纪的过程中,大部分高山河流被烧毁以生产水电。近几十年来,储层结构引起的径流变化似乎与雪覆盖的变化重叠。我们建议高山信号在下游传播,并影响远离河段的高山地区以外的河段的径流,混合流动制度。此外,近几十年来,我们的结果暗示了更多(强烈)降雨。检测到高放电的增加可以追溯到降水的相应变化。

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