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Atmospheric influences on the anomalous 2016 Antarctic sea ice decay

机译:大气对2016年南极海冰异常的影响

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In contrast to the Arctic, where total sea ice extent (SIE) has been decreasing for the last three decades, Antarctic SIE has shown a small, but significant, increase during the same time period. However, in 2016, an unusually early onset of the melt season was observed; the maximum Antarctic SIE was already reached as early as August rather than the end of September, and was followed by a rapid decrease. The decay was particularly strong in November, when Antarctic SIE exhibited a negative anomaly (compared to the 1979–2015 average) of approximately 2 million kmsup2/sup. ECMWF Interim reanalysis data showed that the early onset of the melt and the rapid decrease in sea ice area (SIA) and SIE were associated with atmospheric flow patterns related to a positive zonal wave number three (ZW3) index, i.e., synoptic situations leading to strong meridional flow and anomalously strong southward heat advection in the regions of strongest sea ice decline. A persistently positive ZW3 index from May to August suggests that SIE decrease was preconditioned by SIA decrease. In particular, in the first third of November northerly flow conditions in the Weddell Sea and the Western Pacific triggered accelerated sea ice decay, which was continued in the following weeks due to positive feedback effects, leading to the unusually low November SIE. In 2016, the monthly mean Southern Annular Mode (SAM) index reached its second lowest November value since the beginning of the satellite observations. A better spatial and temporal coverage of reliable ice thickness data is needed to assess the change in ice mass rather than ice area.
机译:与过去三十年来总海冰面积(SIE)一直在减少的北极相反,南极SIE在同一时期显示出小幅但显着的增加。但是,在2016年,发现了融化季节的异常异常开始。最早的南极SIE早在8月而不是9月底就已经达到,随后迅速下降。 11月,南极SIE表现出负异常(与1979-2015年平均水平相比)约为200万公里2的负异常特别强烈。 ECMWF中期再分析数据显示,融化的早期发作以及海冰面积(SIA)和SIE的迅速减少与与正三号纬向波(ZW3)指数相关的大气流动模式有关,即天气情况导致在最强的海冰下降区域,子午流强烈,南热对流异常强烈。从5月到8月,ZW3指数持续为正值表明SIE下降是由SIA下降预先确定的。特别是,在11月的前三分之一,韦德尔海和西太平洋的北向流动条件引发了加速的海冰衰减,由于积极的反馈效应,此现象在随后的几周内持续了下来,导致11月SIE异常低。 2016年,月平均南半球环模(SAM)指数达到自卫星观测开始以来的11月第二低值。需要更好的时空范围覆盖可靠的冰厚数据,以评估冰量而不是冰面积的变化。

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