As part of the Coupled Model Intercomparison Project, integrations with a common design have been undertaken with eleven different climate models to compare the response of the Atlantic thermohaline circulation (THC) to time-dependent climate change caused by increasing atmospheric CO2 concentration. Over 140 years, during which the CO2 concentration quadruples, the circulation strength declines gradually in all models, by between 10 and 50%. No model shows a rapid or complete collapse, despite the fairly rapid increase and high final concentration of CO2. The models having the strongest overturning in the control climate tend to show the largest THC reductions. In all models, the THC weakening is caused more by changes in surface heat flux...
It is investigated how abrupt changes in the North Atlantic (NA) thermohaline circulation (THC) affe...
This study investigates the climate sensitivity to a strong CO2 atmospheric forcing focusing on the ...
Most global climate models simulate a weakening of the North Atlantic thermohaline circulation (THC)...
As part of the Coupled Model Intercomparison Project, integrations with a common design have been un...
As part of the Coupled Model Intercomparison Project, integrations with a common design have been un...
In an experiment coordinated as part of the Coupled Model Intercomparison Project, integrations with...
The Atlantic thermohaline circulation (THC) is an important part of the earth’s climate system. Prev...
The Atlantic thermohaline circulation (THC) is an important part of the earth's climate system. Prev...
Author Posting. © American Meteorological Society 2006. This article is posted here by permission o...
A simplified climate model of the coupled ocean–atmosphere system is used to perform extensive sensi...
Changes in the thermohaline circulation (THC) due to increased CO2 are important in future climate r...
Present estimates of the future oceanic uptake of anthropogenic CO2 and calculations of CO2-emission...
This study investigates the climate sensitivity to a strong CO2 atmospheric forcing focusing on the ...
Ocean heat uptake and the thermohaline circulation are analyzed in present-day control, 1 % increasi...
A 1200-yr unforced control run and future climate change simulations using the Parallel Climate Mode...
It is investigated how abrupt changes in the North Atlantic (NA) thermohaline circulation (THC) affe...
This study investigates the climate sensitivity to a strong CO2 atmospheric forcing focusing on the ...
Most global climate models simulate a weakening of the North Atlantic thermohaline circulation (THC)...
As part of the Coupled Model Intercomparison Project, integrations with a common design have been un...
As part of the Coupled Model Intercomparison Project, integrations with a common design have been un...
In an experiment coordinated as part of the Coupled Model Intercomparison Project, integrations with...
The Atlantic thermohaline circulation (THC) is an important part of the earth’s climate system. Prev...
The Atlantic thermohaline circulation (THC) is an important part of the earth's climate system. Prev...
Author Posting. © American Meteorological Society 2006. This article is posted here by permission o...
A simplified climate model of the coupled ocean–atmosphere system is used to perform extensive sensi...
Changes in the thermohaline circulation (THC) due to increased CO2 are important in future climate r...
Present estimates of the future oceanic uptake of anthropogenic CO2 and calculations of CO2-emission...
This study investigates the climate sensitivity to a strong CO2 atmospheric forcing focusing on the ...
Ocean heat uptake and the thermohaline circulation are analyzed in present-day control, 1 % increasi...
A 1200-yr unforced control run and future climate change simulations using the Parallel Climate Mode...
It is investigated how abrupt changes in the North Atlantic (NA) thermohaline circulation (THC) affe...
This study investigates the climate sensitivity to a strong CO2 atmospheric forcing focusing on the ...
Most global climate models simulate a weakening of the North Atlantic thermohaline circulation (THC)...