The modern and glacial overturning circulation in the Atlantic ocean in PMIP coupled model simulations
Open Access
- 1 February 2007
- journal article
- Published by Copernicus GmbH in Climate of the Past
- Vol. 3 (1), 51-64
- https://doi.org/10.5194/cp-3-51-2007
Abstract
This study analyses the response of the Atlantic meridional overturning circulation (AMOC) to LGM forcings and boundary conditions in nine PMIP coupled model simulations, including both GCMs and Earth system Models of Intermediate Complexity. Model results differ widely. The AMOC slows down considerably (by 20–40%) during the LGM as compared to the modern climate in four models, there is a slight reduction in one model and four models show a substantial increase in AMOC strength (by 10–40%). It is found that a major controlling factor for the AMOC response is the density contrast between Antarctic Bottom Water (AABW) and North Atlantic Deep Water (NADW) at their source regions. Changes in the density contrast are determined by the opposing effects of changes in temperature and salinity, with more saline AABW as compared to NADW consistently found in all models and less cooling of AABW in all models but one. In only two models is the AMOC response during the LGM directly related to the response in net evaporation over the Atlantic basin. Most models show large changes in the ocean freshwater transports into the basin, but this does not seem to affect the AMOC response. Finally, there is some dependence on the accuracy of the control state.Keywords
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This publication has 38 references indexed in Scilit:
- Linking glacial and future climates through an ensemble of GCM simulationsEGUsphere, 2006
- A model intercomparison of changes in the Atlantic thermohaline circulation in response to increasing atmospheric CO2 concentrationGeophysical Research Letters, 2005
- Glacial water mass geometry and the distribution of δ13C of ΣCO2 in the western Atlantic OceanPaleoceanography and Paleoclimatology, 2005
- The Salinity, Temperature, and δ 18 O of the Glacial Deep OceanScience, 2002
- A coupled model study of the Last Glacial Maximum: Was part of the North Atlantic relatively warm?Geophysical Research Letters, 2001
- Rapid changes of glacial climate simulated in a coupled climate modelNature, 2001
- The simulation of SST, sea ice extents and ocean heat transports in a version of the Hadley Centre coupled model without flux adjustmentsClimate Dynamics, 2000
- Simulation of modern and glacial climates with a coupled global model of intermediate complexityNature, 1998
- The production of North Atlantic Deep Water: Sources, rates, and pathwaysJournal of Geophysical Research: Oceans, 1994
- Deepwater source variations during the last climatic cycle and their impact on the global deepwater circulationPaleoceanography and Paleoclimatology, 1988