Simulated Tropical Response to a Substantial Weakening of the Atlantic Thermohaline Circulation
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- 15 June 2005
- journal article
- Published by American Meteorological Society in Journal of Climate
- Vol. 18 (12), 1853-1860
- https://doi.org/10.1175/jcli3460.1
Abstract
In this study, a mechanism is demonstrated whereby a large reduction in the Atlantic thermohaline circulation (THC) can induce global-scale changes in the Tropics that are consistent with paleoevidence of the global synchronization of millennial-scale abrupt climate change. Using GFDL’s newly developed global coupled ocean–atmosphere model (CM2.0), the global response to a sustained addition of freshwater to the model’s North Atlantic is simulated. This freshwater forcing substantially weakens the Atlantic THC, resulting in a southward shift of the intertropical convergence zone over the Atlantic and Pacific, an El Niño–like pattern in the southeastern tropical Pacific, and weakened Indian and Asian summer monsoons through air–sea interactions. Abstract In this study, a mechanism is demonstrated whereby a large reduction in the Atlantic thermohaline circulation (THC) can induce global-scale changes in the Tropics that are consistent with paleoevidence of the global synchronization of millennial-scale abrupt climate change. Using GFDL’s newly developed global coupled ocean–atmosphere model (CM2.0), the global response to a sustained addition of freshwater to the model’s North Atlantic is simulated. This freshwater forcing substantially weakens the Atlantic THC, resulting in a southward shift of the intertropical convergence zone over the Atlantic and Pacific, an El Niño–like pattern in the southeastern tropical Pacific, and weakened Indian and Asian summer monsoons through air–sea interactions.Keywords
This publication has 18 references indexed in Scilit:
- Assessing the role of North Atlantic freshwater forcing in millennial scale climate variability: a tropical Atlantic perspectiveClimate Dynamics, 2005
- Sensitivity of the Atlantic Intertropical Convergence Zone to Last Glacial Maximum boundary conditionsPaleoceanography and Paleoclimatology, 2003
- East Asian monsoon forcing of suborbital variability in the Sulu Sea during Marine Isotope Stage 3: Link to Northern Hemisphere climateGeochemistry, Geophysics, Geosystems, 2003
- Adjustment of the coupled ocean–atmosphere system to a sudden change in the Thermohaline CirculationGeophysical Research Letters, 2002
- El Niño-Like Pattern in Ice Age Tropical Pacific Sea Surface TemperatureScience, 2002
- The role of the thermohaline circulation in abrupt climate changeNature, 2002
- The effect of millennial-scale changes in Arabian Sea denitrification on atmospheric CO2Nature, 2002
- An Orbitally Driven Tropical Source for Abrupt Climate Change*Journal of Climate, 2001
- Tropical Pacific/Atlantic Ocean interactions at multi‐decadal time scalesGeophysical Research Letters, 2001
- Impact of ENSO on the Variability of the Asian–Australian Monsoons as Simulated in GCM ExperimentsJournal of Climate, 2000