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DOI10.1175/JCLI-D-17-0559.1
Fast Physics and Slow Physics in the Nonlinear Dansgaard-Oeschger Relaxation Oscillation
Vettoretti, Guido; Peltier, W. Richard
2018-05-01
发表期刊JOURNAL OF CLIMATE
ISSN0894-8755
EISSN1520-0442
出版年2018
卷号31期号:9页码:3423-3449
文章类型Article
语种英语
国家Canada
英文摘要

The Dansgaard-Oeschger (D-O) relaxation oscillation that governed glacial climate variability during marine isotope stage 3 has been accurately simulated using a high-resolution coupled climate model. Here the authors present additional detailed analyses of both the slow physics transition between warm and cold states and the fast physics transition between cold and warm states of the D-O cycle. First, the authors demonstrate that the mechanisms active during the slow transition from interstadial to stadial conditions involves the continuous flux of thick and old sea ice from the Arctic basin into the North Atlantic subpolar gyre region along the East Greenland Current. During this slow physical process, the freshwater input from sea ice melting as it moves over the surface of the warm ocean restratifies the high-latitude North Atlantic and leads to a significant reduction in the rate of North Atlantic Deep Water formation. A detailed freshwater budget and hydrography analysis is also presented to demonstrate that the D-O cycle is a low-latitude-high-latitude salt oscillator as the authors have previously argued. Second, the authors provide a more detailed analysis than previously of the fast-time-scale processes that govern the extremely rapid transition from cold stadial conditions back to the warm interstadial state. These are associated with the onset of a sub-sea ice thermohaline convective instability, which opens a massive polynya to the north of the southern boundary of the extensive North Atlantic sea ice lid that is characteristic of stadial conditions. This instability is enabled by the continuous increase of salinity above the sub-sea ice pycnocline, which eliminates the vertical salinity gradient that prevents convective destabilization of the water column under full stadial conditions. This reduction in the vertical salinity gradient beneath the sea ice lid results from the continuing northward salt transport by the North Atlantic gyre circulation once the expansion of the stadial sea ice lid has ceased. The onset of instability occurs in the Irminger basin to the south of Denmark Strait, and the authors discuss the reason for this localization of instability onset.


领域气候变化
收录类别SCI-E
WOS记录号WOS:000429529900005
WOS关键词ARCTIC SEA-ICE ; FRESH-WATER ; OCEAN CIRCULATION ; GLACIAL CLIMATE ; OVERTURNING CIRCULATION ; ATLANTIC-OCEAN ; YOUNGER DRYAS ; THERMOHALINE CIRCULATION ; SALT OSCILLATOR ; HEAT-TRANSPORT
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/19624
专题气候变化
作者单位Univ Toronto, Dept Phys, Toronto, ON, Canada
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GB/T 7714
Vettoretti, Guido,Peltier, W. Richard. Fast Physics and Slow Physics in the Nonlinear Dansgaard-Oeschger Relaxation Oscillation[J]. JOURNAL OF CLIMATE,2018,31(9):3423-3449.
APA Vettoretti, Guido,&Peltier, W. Richard.(2018).Fast Physics and Slow Physics in the Nonlinear Dansgaard-Oeschger Relaxation Oscillation.JOURNAL OF CLIMATE,31(9),3423-3449.
MLA Vettoretti, Guido,et al."Fast Physics and Slow Physics in the Nonlinear Dansgaard-Oeschger Relaxation Oscillation".JOURNAL OF CLIMATE 31.9(2018):3423-3449.
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