Low-Frequency North Atlantic Climate Variability in the Community Earth System Model Large EnsembleSource: Journal of Climate:;2017:;volume 031:;issue 002::page 787DOI: 10.1175/JCLI-D-17-0193.1Publisher: American Meteorological Society
Abstract: AbstractThere is observational and modeling evidence that low-frequency variability in the North Atlantic has significant implications for the global climate, particularly for the climate of the Northern Hemisphere. This study explores the representation of low-frequency variability in the Atlantic region in historical large ensemble and preindustrial control simulations performed with the Community Earth System Model (CESM). Compared to available observational estimates, it is found that the simulated variability in Atlantic meridional overturning circulation (AMOC), North Atlantic sea surface temperature (NASST), and Sahel rainfall is underestimated on multidecadal time scales but comparable on interannual to decadal time scales. The weak multidecadal North Atlantic variability appears to be closely related to weaker-than-observed multidecadal variations in the simulated North Atlantic Oscillation (NAO), as the AMOC and consequent NASST variability is impacted, to a great degree, by the NAO. Possible reasons for this weak multidecadal NAO variability are explored with reference to solutions from two atmosphere-only simulations with different lower boundary conditions and vertical resolution. Both simulations consistently reveal weaker-than-observed multidecadal NAO variability despite more realistic boundary conditions and better resolved dynamics than coupled simulations. The authors thus conjecture that the weak multidecadal NAO variability in CESM is likely due to deficiencies in air?sea coupling, resulting from shortcomings in the atmospheric model or coupling details.
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contributor author | Kim, Who M. | |
contributor author | Yeager, Stephen | |
contributor author | Chang, Ping | |
contributor author | Danabasoglu, Gokhan | |
date accessioned | 2019-09-19T10:08:37Z | |
date available | 2019-09-19T10:08:37Z | |
date copyright | 10/19/2017 12:00:00 AM | |
date issued | 2017 | |
identifier other | jcli-d-17-0193.1.pdf | |
identifier uri | http://yetl.yabesh.ir/yetl1/handle/yetl/4262020 | |
description abstract | AbstractThere is observational and modeling evidence that low-frequency variability in the North Atlantic has significant implications for the global climate, particularly for the climate of the Northern Hemisphere. This study explores the representation of low-frequency variability in the Atlantic region in historical large ensemble and preindustrial control simulations performed with the Community Earth System Model (CESM). Compared to available observational estimates, it is found that the simulated variability in Atlantic meridional overturning circulation (AMOC), North Atlantic sea surface temperature (NASST), and Sahel rainfall is underestimated on multidecadal time scales but comparable on interannual to decadal time scales. The weak multidecadal North Atlantic variability appears to be closely related to weaker-than-observed multidecadal variations in the simulated North Atlantic Oscillation (NAO), as the AMOC and consequent NASST variability is impacted, to a great degree, by the NAO. Possible reasons for this weak multidecadal NAO variability are explored with reference to solutions from two atmosphere-only simulations with different lower boundary conditions and vertical resolution. Both simulations consistently reveal weaker-than-observed multidecadal NAO variability despite more realistic boundary conditions and better resolved dynamics than coupled simulations. The authors thus conjecture that the weak multidecadal NAO variability in CESM is likely due to deficiencies in air?sea coupling, resulting from shortcomings in the atmospheric model or coupling details. | |
publisher | American Meteorological Society | |
title | Low-Frequency North Atlantic Climate Variability in the Community Earth System Model Large Ensemble | |
type | Journal Paper | |
journal volume | 31 | |
journal issue | 2 | |
journal title | Journal of Climate | |
identifier doi | 10.1175/JCLI-D-17-0193.1 | |
journal fristpage | 787 | |
journal lastpage | 813 | |
tree | Journal of Climate:;2017:;volume 031:;issue 002 | |
contenttype | Fulltext |