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Arctic warming, moisture increase and circulation changes observed in the Ny-lesund homogenized radiosonde record

机译:Ny-lesund均质探空仪记录中观测到北极变暖,水分增加和循环变化

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摘要

Radiosonde measurements obtained at the Arctic site Ny-lesund (78.9A degrees N, 11.9A degrees E), Svalbard, from 1993 to 2014 have been homogenized accounting for instrumentation discontinuities by correcting known errors in the manufacturer provided profiles. The resulting homogenized radiosonde record is provided as supplementary material at http://doi.pangaea.de/10.1594/PANGAEA.845373. From the homogenized data record, the first Ny-lesund upper-air climatology of wind, temperature and humidity is presented, forming the background for the analysis of changes during the 22-year period. Particularly during the winter season, a strong increase in atmospheric temperature and humidity is observed, with a significant warming of the free troposphere in January and February up to 3 K per decade. This winter warming is even more pronounced in the boundary layer below 1 km, presumably amplified by mesoscale processes including e.g. orographic effects or the boundary layer capping inversion. Though the largest contribution to the increasing atmospheric water vapour column in winter originates from the lowermost 2 km, no increase in the contribution by specific humidity inversions is detected. Instead, we find an increase in the humidity content of the large-scale background humidity profiles. At the same time, the tropospheric flow in winter is found to occur less frequent from northerly directions and to the same amount more frequent from the South. We conclude that changes in the atmospheric circulation lead to an enhanced advection of warm and moist air from lower latitudes to the Svalbard region in the winter season, causing the warming and moistening of the atmospheric column above Ny-lesund, and link the observations to changes in the Arctic Oscillation.
机译:从1993年到2014年在斯瓦尔巴特群岛Ny-lesund北极站点Ny-lesund(北纬78.9A,东经11.9A)获得的探空仪测量值已经通过校正制造商提供的剖面图中的已知误差,实现了仪器不连续性的均质化。所得的均质无线电探空仪记录作为补充材料提供在http://doi.pangaea.de/10.1594/PANGAEA.845373。从均质的数据记录中,给出了风,温度和湿度的第一个Ny-lesund高空气候,为22年期间的变化分析提供了背景。特别是在冬季,观察到大气温度和湿度急剧增加,1月和2月的自由对流层温度显着升高,达到每十年10K。在1 km以下的边界层中,这种冬季变暖甚至更为明显,可能是由于中尺度过程(包括地形效应或边界层覆盖反演。尽管对冬季增加的大气水汽柱的最大贡献来自最低的2 km,但未发现因特定的湿度反演而增加的贡献。相反,我们发现大型背景湿度曲线的湿度含量增加。同时,发现冬季对流层气流从北向的发生频率较低,而从南向流的发生频率较高。我们得出结论,在冬季,大气环流的变化导致从低纬度到斯瓦尔巴特群岛地区的温暖和潮湿的空气对流增强,导致Ny-lesund上方的大气柱变暖和潮湿,并将观测结果与变化联系起来在北极涛动中。

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  • 来源
    《Theoretical and applied climatology》 |2017年第2期|1-17|共17页
  • 作者单位

    Alfred Wegener Inst, Helmholtz Ctr Polar & Marine Res, Telegrafenberg A43, D-14473 Potsdam, Germany;

    Alfred Wegener Inst, Helmholtz Ctr Polar & Marine Res, Telegrafenberg A43, D-14473 Potsdam, Germany;

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