Records |
Author  |
Danabasoglu, G.; Yeager, S.G.; Bailey, D.; Behrens, E.; Bentsen, M.; Bi, D.; Biastoch, A.; Böning, C.; Bozec, A.; Canuto, V.M.; Cassou, C.; Chassignet, E.; Coward, A.C.; Danilov, S.; Diansky, N.; Drange, H.; Farneti, R.; Fernandez, E.; Fogli, P.G.; Forget, G.; Fujii, Y.; Griffies, S.M.; Gusev, A.; Heimbach, P.; Howard, A.; Jung, T.; Kelley, M.; Large, W.G.; Leboissetier, A.; Lu, J.; Madec, G.; Marsland, S.J.; Masina, S.; Navarra, A.; George Nurser, A.J.; Pirani, A.; y Mélia, D.S.; Samuels, B.L.; Scheinert, M.; Sidorenko, D.; Treguier, A.-M.; Tsujino, H.; Uotila, P.; Valcke, S.; Voldoire, A.; Wang, Q. |
Title |
North Atlantic simulations in Coordinated Ocean-ice Reference Experiments phase II (CORE-II). Part I: Mean states |
Type |
$loc['typeJournal Article'] |
Year |
2014 |
Publication |
Ocean Modelling |
Abbreviated Journal |
Ocean Modelling |
Volume |
73 |
Issue |
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Pages |
76-107 |
Keywords |
Global ocean–sea-ice modelling Ocean model comparisons Atmospheric forcing Experimental design Atlantic meridional overturning circulation North Atlantic simulations |
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1463-5003 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
159 |
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Author  |
Danabasoglu, G.; Yeager, S.G.; Kim, W.M.; Behrens, E.; Bentsen, M.; Bi, D.; Biastoch, A.; Bleck, R.; Böning, C.; Bozec, A.; Canuto, V.M.; Cassou, C.; Chassignet, E.; Coward, A.C.; Danilov, S.; Diansky, N.; Drange, H.; Farneti, R.; Fernandez, E.; Fogli, P.G.; Forget, G.; Fujii, Y.; Griffies, S.M.; Gusev, A.; Heimbach, P.; Howard, A.; Ilicak, M.; Jung, T.; Karspeck, A.R.; Kelley, M.; Large, W.G.; Leboissetier, A.; Lu, J.; Madec, G.; Marsland, S.J.; Masina, S.; Navarra, A.; Nurser, A.J.G.; Pirani, A.; Romanou, A.; Salas y Mélia, D.; Samuels, B.L.; Scheinert, M.; Sidorenko, D.; Sun, S.; Treguier, A.-M.; Tsujino, H.; Uotila, P.; Valcke, S.; Voldoire, A.; Wang, Q.; Yashayaev, I. |
Title |
North Atlantic simulations in Coordinated Ocean-ice Reference Experiments phase II (CORE-II). Part II: Inter-annual to decadal variability |
Type |
$loc['typeJournal Article'] |
Year |
2016 |
Publication |
Ocean Modelling |
Abbreviated Journal |
Ocean Modelling |
Volume |
97 |
Issue |
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Pages |
65-90 |
Keywords |
Global ocean – sea-ice modelling; Ocean model comparisons; Atmospheric forcing; Inter-annual to decadal variability and mechanisms; Atlantic meridional overturning circulation variability; Variability in the North Atlantic |
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1463-5003 |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
34 |
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Author  |
Ilicak, M.; Drange, H.; Wang, Q.; Gerdes, R.; Aksenov, Y.; Bailey, D.; Bentsen, M.; Biastoch, A.; Bozec, A.; Böning, C.; Cassou, C.; Chassignet, E.; Coward, A.C.; Curry, B.; Danabasoglu, G.; Danilov, S.; Fernandez, E.; Fogli, P.G.; Fujii, Y.; Griffies, S.M.; Iovino, D.; Jahn, A.; Jung, T.; Large, W.G.; Lee, C.; Lique, C.; Lu, J.; Masina, S.; George Nurser, A.J.; Roth, C.; Salas y Mélia, D.; Samuels, B.L.; Spence, P.; Tsujino, H.; Valcke, S.; Voldoire, A.; Wang, X.; Yeager, S.G. |
Title |
An assessment of the Arctic Ocean in a suite of interannual CORE-II simulations. Part III: Hydrography and fluxes |
Type |
$loc['typeJournal Article'] |
Year |
2016 |
Publication |
Ocean Modelling |
Abbreviated Journal |
Ocean Modelling |
Volume |
100 |
Issue |
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Pages |
141-161 |
Keywords |
Arctic Ocean; Atlantic Water; St. Anna Trough; Density currents; CORE-II atmospheric forcing |
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1463-5003 |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
80 |
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Author  |
Roberts, M.J.; Jackson, L.C.; Roberts, C.D.; Meccia, V.; Docquier, D.; Koenigk, T.; Ortega, P.; Moreno‐ Chamarro, E.; Bellucci, A.; Coward, A.; Drijfhout, S.; Exarchou, E.; Gutjahr, O.; Hewitt, H.; Iovino, D.; Lohmann, K.; Putrasahan, D.; Schiemann, R.; Seddon, J.; Terray, L.; Xu, X.; Zhang, Q.; Chang, P.; Yeager, S.G.; Castruccio, F.S.; Zhang. C.; Wu, L. |
Title |
Sensitivity of the Atlantic Meridional Overturning Circulation to Model Resolution in CMIP6 HighResMIP Simulations and Implications for Future Changes |
Type |
$loc['typeJournal Article'] |
Year |
2020 |
Publication |
Journal of Advances in Modeling Earth Systems |
Abbreviated Journal |
J. Adv. Model. Earth Syst. |
Volume |
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Issue |
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Pages |
Accepted |
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Abstract |
A multi‐model, multi‐resolution ensemble using CMIP6 HighResMIP coupled experiments is used to assess the performance of key aspects of the North Atlantic circulation. The Atlantic Meridional Overturning Circulation (AMOC), and related heat transport, tends to become stronger as ocean model resolution is enhanced, better agreeing with observations at 26.5°N. However for most models the circulation remains too shallow compared to observations, and has a smaller temperature contrast between the northward and southward limbs of the AMOC. These biases cause the northward heat transport to be systematically too low for a given overturning strength. The higher resolution models also tend to have too much deep mixing in the subpolar gyre.
In the period 2015‐2050 the overturning circulation tends to decline more rapidly in the higher resolution models, which is related to both the mean state and to the subpolar gyre contribution to deep water formation. The main part of the decline comes from the Florida Current component of the circulation. Such large declines in AMOC are not seen in the models with resolutions more typically used for climate studies, suggesting an enhanced risk for Northern Hemisphere climate change. However, only a small number of different ocean models are included in the study. |
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$loc['no'] |
Call Number |
COAPS @ user @ |
Serial |
1109 |
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Author  |
Scott, R.B.; Arbic, B.K.; Chassignet, E.P.; Coward, A.C.; Maltrud, M.; Merryfield, W.J.; Srinivasan, A.; Varghese, A. |
Title |
Total kinetic energy in four global eddying ocean circulation models and over 5000 current meter records |
Type |
$loc['typeJournal Article'] |
Year |
2010 |
Publication |
Ocean Modelling |
Abbreviated Journal |
Ocean Modelling |
Volume |
32 |
Issue |
3-4 |
Pages |
157-169 |
Keywords |
Eddying OGCM; Kinetic energy; Moored current meters; Model validation; Model intercomparison |
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1463-5003 |
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$loc['no'] |
Call Number |
COAPS @ mfield @ |
Serial |
357 |
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