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Amundsen Sea circulation controls bottom upwelling and Antarctic Pine Island and Thwaites ice shelf melting

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Title
Amundsen Sea circulation controls bottom upwelling and Antarctic Pine Island and Thwaites ice shelf melting
Other Titles
아문젠해 해류가 해저 용승을 조절하고 남극 파인아일랜드와 스웨이츠 빙붕 융빙을 조절한다
Authors
Park, Taewook
Nakayama Yoshihiro
Nam Sunghyun
Keywords
남극 해류스웨이츠 빙붕해양모델링
Issue Date
2024
Citation
Park, Taewook, Nakayama Yoshihiro, Nam Sunghyun. 2024. "Amundsen Sea circulation controls bottom upwelling and Antarctic Pine Island and Thwaites ice shelf melting". NATURE COMMUNICATIONS, 15(1): 0-0.
Abstract
The Pine Island and Thwaites Ice Shelves (PIIS/TIS) in the Amundsen Sea are melting rapidly and impacting global sea levels. The thermocline depth (TD) variability, the interface between cold Winter Water and warm modified Circumpolar Deep Water (mCDW), at the PIIS/TIS front strongly correlates with basal melt rates, but the drivers of its interannual variability remain uncertain. Here, using an ocean model, we propose that the strength of the eastern Amundsen Sea on-shelf circulation primarily controls TD variability and consequent PIIS/TIS melt rates. The TD variability occurs because the on-shelf circulation meanders following the submarine glacial trough, creating vertical velocity through bottom Ekman dynamics. We suggest that a strong or weak ocean circulation, possibly linked to remote winds in the Bellingshausen Sea, generates corresponding changes in bottom Ekman convergence, which modulates mCDW upwelling and TD variability. We show that interannual variability of off-shelf zonal winds has a minor effect on ocean heat intrusion into PIIS/TIS cavities, contrary to the widely accepted concept. On-shelf circulation modulates vertical velocity via bottom Ekman dynamics, controlling thermocline depth and melting of Amundsen Sea ice shelves. This mechanism does not support the widely believed linkage between off-shelf wind and on-shelf heat.
URI
https://repository.kopri.re.kr/handle/201206/16434
DOI
http://dx.doi.org/10.1038/s41467-024-47084-z
Type
Article
Station
해당사항없음
Indexed
SCIE
Appears in Collections  
2024-2024, 서남극해 온난화에 따른 탄소흡수력 변동 및 생태계 반응 연구 (24-24) / 박지수 (PE24110)
2024-2024, 급격한 남극 빙상 용융에 따른 근미래 전지구 해수면 상승 예측기술 개발 (24-24) / 이원상 (PM24020)
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