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Changes in snow cover over Northern Eurasia in the last few decades

机译:过去几十年北欧亚大陆的积雪变化

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Daily snow depth (SD) and snow cover extent around 820 stations are used to analyse variations in snow cover characteristics in Northern Eurasia, a region that encompasses the Russian Federation. These analyses employ nearly five times more stations than in the previous studies and temporally span forty years. A representative judgement on the changes of snow depth over most of Russia is presented here for the first time. The number of days with greater than 50% of the near-station territory covered with snow, and the number of days with the snow depth greater than 1.0?cm, are used to characterize the duration of snow cover (SCD) season. Linear trends of the number of days and snow depth are calculated for each station from 1966 to 2007. This investigation reveals regional features in the change of snow cover characteristics. A decrease in the duration of snow cover is demonstrated in the northern regions of European Russia and in the mountainous regions of southern Siberia. An increase in SCD is found in Yakutia and in the Far East. In the western half of the Russian Federation, the winter-averaged SD is shown to increase, with the maximum trends being observed in Northern West Siberia. In contrast, in the mountainous regions of southern Siberia, the maximum SD decreases as the SCD decreases. While both snow cover characteristics (SCD and SD) play an important role in the hydrological cycle, ecosystems dynamics and societal wellbeing are quite different roles and the differences in their systematic changes (up to differences in the signs of changes) deserve further attention.
机译:利用每日降雪深度(SD)和大约820个站点的积雪范围,来分析包括俄罗斯联邦在内的北欧亚大陆的积雪特征变化。这些分析使用的站比以前的研究多了近五倍,并且在时间上跨越了40年。在此首次提出关于俄罗斯大部分地区降雪深度变化的代表性判断。超过50%的近站区域被积雪覆盖的天数和积雪深度大于1.0?cm的天数被用来描述积雪(SCD)季节的持续时间。计算了从1966年到2007年每个站点的天数和降雪深度的线性趋势。该调查揭示了积雪特征变化的区域特征。在欧洲俄罗斯北部地区和西伯利亚南部山区,积雪持续时间减少了。在雅库特和远东地区发现SCD有所增加。在俄罗斯联邦的西半部,冬季平均SD值显示出增加,在西西伯利亚北部地区观察到最大趋势。相反,在西伯利亚南部的山区,最大SD随SCD的减小而减小。尽管积雪特征(SCD和SD)在水文循环中都起着重要作用,但生态系统动力学和社会福祉的作用却截然不同,其系统变化的差异(直至变化迹象的差异)值得进一步关注。

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