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Open ocean convection drives enhanced eastern pathway of the glacial Atlantic Meridional Overturning Circulation
被引:0
|作者:
Gu, Sifan
[1
,2
,3
,4
]
Liu, Zhengyu
[5
,6
]
Ng, Hong Chin
[7
]
Lynch-Stieglitz, Jean
[8
]
Mcmanus, Jerry F.
[9
]
Spall, Michael
[10
]
Jahn, Alexandra
[11
,12
]
He, Chengfei
[10
,13
]
Li, Lingwei
[5
,11
,12
]
Yan, Mi
[6
]
Wu, Lixin
[14
]
机构:
[1] Shanghai Jiao Tong Univ, Key Lab Polar Ecosyst & Climate Change, Minist Educ, Shanghai 200030, Peoples R China
[2] Shanghai Jiao Tong Univ, Sch Oceanog, Shanghai 200030, Peoples R China
[3] Shanghai Jiao Tong Univ, Shanghai Key Lab Polar Life & Environm Sci, Shanghai 200030, Peoples R China
[4] Shanghai Jiao Tong Univ, Shanghai Frontiers Sci Ctr Polar Sci, Shanghai 200030, Peoples R China
[5] Ohio State Univ, Dept Geog, Atmospher Sci Program, Columbus, OH 43210 USA
[6] Nanjing Normal Univ, Sch Geog Sci, Nanjing 210097, Peoples R China
[7] Univ Bristol, Sch Earth Sci, Bristol BS81RJ, England
[8] Georgia Inst Technol, Sch Earth & Atmospher Sci, Atlanta, GA 30332 USA
[9] Columbia Univ, Dept Earth & Environm Sci, Lamont Doherty Earth Observ, Palisades, NY 10964 USA
[10] Woods Hole Oceanog Inst, Dept Phys Oceanog, Woods Hole, MA 02543 USA
[11] Univ Colorado, Dept Atmospher & Ocean Sci, Boulder, CO 80309 USA
[12] Univ Colorado, Inst Arctic & Alpine Res, Boulder, CO 80309 USA
[13] Univ Miami, Rosenstiel Sch Marine Atmospher & Earth Sci, Miami, FL 33149 USA
[14] Ocean Univ China, Phys Oceanog Lab, Qingdao 266100, Peoples R China
来源:
基金:
国家重点研发计划;
关键词:
Atlantic Meridional Overturning Circulation;
Last Glacial Maximum;
North Atlantic Deep Water;
Pa-231/Th-230;
transport pathway;
LABRADOR SEA-WATER;
NORTH-ATLANTIC;
GLOBAL CLIMATOLOGY;
INTERIOR PATHWAYS;
MODEL;
SURFACE;
EARTH;
MAXIMUM;
RECONSTRUCTION;
FORAMINIFERA;
D O I:
10.1073/pnas.2405051121
中图分类号:
O [数理科学和化学];
P [天文学、地球科学];
Q [生物科学];
N [自然科学总论];
学科分类号:
07 ;
0710 ;
09 ;
摘要:
Abundant proxy records suggest a profound reorganization of the Atlantic Meridional Overturning Circulation (AMOC) during the Last Glacial Maximum (LGM, similar to 21,000 y ago), with the North Atlantic Deep Water (NADW) shoaling significantly relative to the present-day (PD) and forming Glacial North Atlantic Intermediate Water (GNAIW). However, almost all previous observational and modeling studies have focused on the zonal mean two-dimensional AMOC feature, while recent progress in the understanding of modern AMOC reveals a more complicated three-dimensional structure, with NADW penetrating from the subpolar North Atlantic to lower latitude through different pathways. Here, combining Pa-231/Th-230 reconstructions and model simulations, we uncover a significant change in the three-dimensional structure of the glacial AMOC. Specifically, the mid-latitude eastern pathway (EP), located east of the Mid-Atlantic Ridge and transporting about half of the PD NADW from the subpolar gyre to the subtropical gyre, experienced substantial intensification during the LGM. A greater portion of the GNAIW was transported in the eastern basin during the LGM compared to NADW at the PD, resulting in opposite Pa-231/Th-230 changes between eastern and western basins during the LGM. Furthermore, in contrast to the wind-steering mechanism of EP at PD, the intensified LGM EP was caused primarily by the rim current forced by the basin-scale open-ocean convection over the subpolar North Atlantic. Our results underscore the importance of accounting for three-dimensional oceanographic changes to achieve more accurate reconstructions of past AMOC.
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