Atlantic Circulation and Ice Sheet Influences on Upper South Atlantic Temperature During the Last Deglaciation

被引:15
作者
Umling, N. E. [1 ,2 ]
Oppo, D. W. [1 ]
Chen, P. [3 ]
Yu, J. [3 ]
Liu, Z. [4 ]
Yan, M. [5 ,6 ,7 ]
Gebbie, G. [8 ]
Lund, D. C. [9 ]
Pietro, K. R. [1 ]
Jin, Z. D. [10 ]
Huang, K-F [1 ,11 ]
Costa, K. B. [12 ]
Toledo, F. A. L. [12 ]
机构
[1] Woods Hole Oceanog Inst, Dept Geol & Geophys, Woods Hole, MA 02543 USA
[2] Amer Museum Nat Hist, Dept Earth & Planetary Sci, New York, NY 10024 USA
[3] Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT, Australia
[4] Ohio State Univ, Dept Geog, Columbus, OH 43210 USA
[5] Nanjing Normal Univ, Key Lab Virtual Geog Environm, Minist Educ, State Key Lab Geog Environm Evolut,Jiangsu Prov C, Nanjing, Jiangsu, Peoples R China
[6] Nanjing Normal Univ, Sch Geog Sci, Nanjing, Jiangsu, Peoples R China
[7] Jiangsu Ctr Collaborat Innovat Geog Informat Reso, Nanjing, Jiangsu, Peoples R China
[8] Woods Hole Oceanog Inst, Dept Phys Oceanog, Woods Hole, MA 02543 USA
[9] Univ Connecticut, Dept Marine Sci, Storrs, CT USA
[10] Chinese Acad Sci, Inst Earth Environm, State Key Lab Loess & Quaternary Geol, Xian, Shaanxi, Peoples R China
[11] Acad Sinica, Inst Earth Sci, Taipei, Taiwan
[12] Univ Sao Paulo, Oceanog Inst, Sao Paulo, Brazil
基金
澳大利亚研究理事会; 美国国家科学基金会;
关键词
WATER MASS GEOMETRY; ATMOSPHERIC CO2; CARBON-ISOTOPE; OCEAN CIRCULATION; NORTH-ATLANTIC; OVERTURNING CIRCULATION; BENTHIC FORAMINIFERA; INTERMEDIATE WATERS; GLACIAL MAXIMUM; CLIMATE;
D O I
10.1029/2019PA003558
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Atlantic Meridional Overturning Circulation (AMOC) disruption during the last deglaciation is hypothesized to have caused large subsurface ocean temperature anomalies, but records from key regions are not available to test this hypothesis, and other possible drivers of warming have not been fully considered. Here, we present the first reliable evidence for subsurface warming in the South Atlantic during Heinrich Stadial 1, confirming the link between large-scale heat redistribution and AMOC. Warming extends across the Bolling-Allerod despite predicted cooling at this time, thus spanning intervals of both weak and strong AMOC indicating another forcing mechanism that may have been previously overlooked. Transient model simulations and quasi-conservative water mass tracers suggest that reduced northward upper ocean heat transport was responsible for the early deglacial (Heinrich Stadial 1) accumulation of heat at our shallower (similar to 1,100 m) site. In contrast, the results suggest that warming at our deeper site (similar to 1,900 m) site was dominated by southward advection of North Atlantic middepth heat anomalies. During the Bolling-Allerod, the demise of ice sheets resulted in oceanographic changes in the North Atlantic that reduced convective heat loss to the atmosphere, causing subsurface warming that overwhelmed the cooling expected from an AMOC reinvigoration. The data and simulations suggest that rising atmospheric CO2 did not contribute significantly to deglacial subsurface warming at our sites.
引用
收藏
页码:990 / 1005
页数:16
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