Gao Libao, Yuan Xiaojun, Cai Wenju, Guo Guijun, Yu Weidong, Shi Jiuxin, Qiao Fangli, Wei Zexun, Williams Guy D
First Institute of Oceanography, Key Laboratory of Marine Science and Numerical Modeling, Ministry of Natural Resources, Qingdao, China.
Laboratory for Regional Oceanography and Numerical Modeling, Laoshan Laboratory, Qingdao, China.
Nat Commun. 2024 Jan 22;15(1):671. doi: 10.1038/s41467-024-45010-x.
The offshore ocean heat supplied to the Antarctic continental shelves by warm eddies has the potential to greatly impact the melting rates of ice shelves and subsequent global sea level rise. While featured in modeling and some observational studies, the processes around how these warm eddies form and overcome the dynamic sub-surface barrier of the Antarctic Slope Front over the upper continental slope has not yet been clarified. Here we report on the detailed observations of persistent eddies carrying warm modified Circumpolar Deep Water (CDW) onto the continental shelf of Prydz Bay, East Antarctica, using subsurface mooring and hydrographic section data from 2013-2015. We show the warm-eddy transport is most active when the summer westerlies strengthen, which promotes the upwelling of CDW and initiates eddy formation and intrusions. Our study highlights the important role of warm eddies in the melting of Antarctica's ice shelves, both now and into the future.
由暖涡输送至南极大陆架的海洋热量,有可能极大地影响冰架的融化速度以及随后的全球海平面上升。尽管在建模和一些观测研究中有所涉及,但这些暖涡如何形成以及如何克服南极大陆架上部斜坡上南极陆坡锋面的动态次表层屏障等过程,尚未得到阐明。在此,我们利用2013 - 2015年的次表层锚定和水文剖面数据,报告了对携带温暖改性环极深层水(CDW)至东南极普里兹湾大陆架的持续涡旋的详细观测。我们发现,当夏季西风增强时,暖涡输送最为活跃,这促进了CDW的上升流,并引发涡旋的形成和入侵。我们的研究突出了暖涡在当前及未来南极冰架融化过程中的重要作用。