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DOI10.5194/cp-15-1133-2019
Equilibrium simulations of Marine Isotope Stage 3 climate
Guo C.; Nisancioglu K.H.; Bentsen M.; Bethke I.; Zhang Z.
发表日期2019
ISSN18149324
起始页码1133
结束页码1151
卷号15期号:3
英文摘要

An equilibrium simulation of Marine Isotope Stage 3 (MIS3) climate with boundary conditions characteristic of Greenland Interstadial 8 (GI-8; 38 kyr BP) is carried out with the Norwegian Earth System Model (NorESM). A computationally efficient configuration of the model enables long integrations at relatively high resolution, with the simulations reaching a quasi-equilibrium state after 2500 years. We assess the characteristics of the simulated large-scale atmosphere and ocean circulation, precipitation, ocean hydrography, sea ice distribution, and internal variability. The simulated MIS3 interstadial near-surface air temperature is 2.9 ĝC cooler than the pre-industrial (PI). The Atlantic meridional overturning circulation (AMOC) is deeper and intensified by ĝ1/413 %. There is a decrease in the volume of Antarctic Bottom Water (AABW) reaching the Atlantic. At the same time, there is an increase in ventilation of the Southern Ocean, associated with a significant expansion of Antarctic sea ice and concomitant intensified brine rejection, invigorating ocean convection. In the central Arctic, sea ice is ĝ1/42 m thicker, with an expansion of sea ice in the Nordic Seas during winter. Attempts at triggering a non-linear transition to a cold stadial climate state, by varying atmospheric CO2 concentrations and Laurentide Ice Sheet height, suggest that the simulated MIS3 interstadial state in the NorESM is relatively stable, thus underscoring the role of model dependency, and questioning the existence of unforced abrupt transitions in Greenland climate in the absence of interactive ice sheet-meltwater dynamics.

. © Author(s) 2019.
语种英语
scopus关键词Antarctic Bottom Water; boundary condition; deep water ventilation; equilibrium; interstadial; Laurentide Ice Sheet; marine isotope stage; meridional circulation; overturn; sea ice; volume transport; Arctic; Arctic; Arctic Ocean; Atlantic Ocean; Greenland; Norwegian Sea; Southern Ocean
来源期刊Climate of the Past
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/146806
作者单位NORCE Norwegian Research Centre, Bjerknes Centre for Climate Research, Bergen, Norway; Department of Earth Science, Bjerknes Centre for Climate Research, University of Bergen, Bergen, Norway; Department of Geosciences, Centre for Earth Evolution and Dynamics, University of Oslo, Oslo, Norway
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GB/T 7714
Guo C.,Nisancioglu K.H.,Bentsen M.,et al. Equilibrium simulations of Marine Isotope Stage 3 climate[J],2019,15(3).
APA Guo C.,Nisancioglu K.H.,Bentsen M.,Bethke I.,&Zhang Z..(2019).Equilibrium simulations of Marine Isotope Stage 3 climate.Climate of the Past,15(3).
MLA Guo C.,et al."Equilibrium simulations of Marine Isotope Stage 3 climate".Climate of the Past 15.3(2019).
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