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Importance of snowmelt contribution to seasonal runoff and summer low flows in Czechia

机译:雪橇对季节性径流和夏季低流量的重要性

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The streamflow seasonality in mountain catchments is often influenced by snow. However, a shift from snowfall to rain is expected in the future. Consequently, a decrease in snow storage and earlier snowmelt is predicted, which will cause changes not only in seasonal runoff distribution in snow-dominated catchments, but it may also affect the total annual runoff. The objectives of this study were to quantify (1)?how inter-annual variations in snow storages affect spring and summer runoff, including summer low flows, and (2)?the importance of snowmelt in generating runoff compared to rainfall. The snow storage, groundwater recharge and streamflow were simulated for 59 mountain catchments in Czechia in the period from 1980 to 2014 using a bucket-type catchment model. The model output was evaluated against observed daily runoff and snow water equivalent. Hypothetical scenarios were performed, which allowed for analysing the effect of inter-annual variations in snow storage on seasonal runoff separately from other components of the water balance. The results showed that 17 %–42 % (26 % on average) of the total runoff in the study catchments originates as snowmelt, despite the fact that only 12 %–37 % (20 % on average) of the precipitation falls as snow. This means that snow is more effective in generating catchment runoff compared to liquid precipitation. This was demonstrated by modelling experiments which showed that total annual runoff and groundwater recharge decrease in the case of a precipitation shift from snow to rain. In general, snow-poor years were clearly characterized by a lower snowmelt runoff contribution compared to snow-rich years in the analysed period. Additionally, snowmelt started earlier in these snow-poor years and caused lower groundwater recharge. This also affected summer baseflow. For most of the catchments, the lowest summer baseflow was reached in years with both relatively low summer precipitation and snow storage. This showed that summer low flows (directly related to baseflow) in our study catchments are not only a function of low precipitation and high evapotranspiration, but they are significantly affected by the previous winter snowpack. This effect might intensify drought periods in the future when generally less snow is expected.
机译:山区流量的流出季节性往往受到雪的影响。然而,未来预计将从降雪转向下雨。因此,预测了雪储存和早期的雪花的减少,这将不仅在雪主统治集水区中的季节径流分布中造成变化,但它也可能影响总年度径流。本研究的目标是量化(1)?雪楼的年度际变化如何影响春季和夏季径流,包括夏季低流量,(2)?与降雨相比,雪花在发电径流中的重要性。雪地储存,地下水充电和流出,在捷克州的59个山地集水区,从1980年到2014年使用桶式集水模型。评估模型输出,针对观察到的每日径流和雪水等同物评估。进行假设情景,允许分析雪地储存年间变化对季节性径流的影响,与水平的其他组成部分分开。结果表明,研究集水区的总径流量为17%-42%(平均26%)起源于雪花,尽管这一事实只有12%-37%(平均20%)降水量落下。这意味着与液体沉淀相比,雪更有效地产生集水径流。通过建模实验证明了这一点,表明,在降雨量从雪地下降的情况下,每年年径流和地下水补给减少。总的来说,与分析期间的富裕年份相比,雪贫乏多年的特点是较低的雪花径流贡献。此外,雪花在这些雪贫乏多年前开始,并导致地下水补给。这也影响了夏季的基础流。对于大多数集水区,多年来达到了最低的夏季基础流,夏季降水和雪储存。这表明,我们的研究流域中的夏季低流量(与碱基流直接相关)不仅是低降水和高蒸散量的函数,而且它们受到前一个冬季积雪的显着影响。当预期较少的雪通常不太雪时,这种效果可能会加剧未来的干旱期。

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