Compounding tropical and stratospheric forcing of the record low Antarctic sea-ice in 2016
Guomin Wang, Harry H. Hendon, Julie M. Arblaster, Eun‐Pa Lim, S. Abhik, Peter van Rensch
Bureau of Meteorology ARC Centre of Excellence for Climate System Science Monash University NSF National Center for Atmospheric Research
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摘要与影响
After exhibiting an upward trend since 1979, Antarctic sea ice extent (SIE) declined dramatically during austral spring 2016, reaching a record low by December 2016. Here we show that a combination of atmospheric and oceanic phenomena played primary roles for this decline. The anomalous atmospheric circulation was initially driven by record strength tropical convection over the Indian and western Pacific Oceans, which resulted in a wave-3 circulation pattern around Antarctica that acted to reduce SIE in the Indian Ocean, Ross and Bellingshausen Sea sectors. Subsequently, the polar stratospheric vortex weakened significantly, resulting in record weakening of the circumpolar surface westerlies that acted to decrease SIE in the Indian Ocean and Pacific Ocean sectors. These processes appear to reflect unusual internal atmosphere-ocean variability. However, the warming trend of the tropical Indian Ocean, which may partly stem from anthropogenic forcing, may have contributed to the severity of the 2016 SIE decline.
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物理Climate variability and models
Arctic and Antarctic ice dynamics · Tropical and Extratropical Cyclones Research
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