HR: 1340h
AN: A23B-0785 [Abstracts]
TI: Response of the North Atlantic Thermohaline Circulation to Atmospheric CO$_{2}$ Concentration
Octupling
AU: * Chan, W
EM: wlchan@jamstec.go.jp
AF: Frontier Research Center for Global Change, 3173-25 Showa-machi
Kanazawa-ku, Yokohama, 236-0001
Japan
AU: Motoi, T
EM: tmotoi@mri-jma.go.jp
AF: Meteorological Research Institute, Nagamine 1-1, Tsukuba, 305-0052
Japan
AB:
Recent studies on climate change arising from increases in
atmospheric CO$_{2}$ concentrations have demonstrated not
only the possibility of a weakened North Atlantic
thermohaline circulation (THC), but also a total recovery
in its intensity. The present study considers the case of
8 times the present concentration by carrying out a
long-term integration of a GFDL low-resolution coupled
model. Results are compared with previous quadrupling
experiments.
It is found that the THC eventually recovers, but the time
of recovery is prolonged by about 5000 years in comparison
to the 4xCO$_{2}$ case. During the 3000 years prior to
complete recovery, little change is seen in the THC whose
intensity varies around 8Sv, but there is a distinctive
centennial variability, also seen in the time series of the
globally averaged sea-surface temperature. The final
recovery stage occurs rapidly about 6200 years after the
start of integration and is thereafter marked by a large
decadal variability. The average value of the final THC
intensity is approximately 16Sv, slightly smaller than those
of the control and 4xCO$_{2}$ cases.
The initial forcing due to changes in the hydrological cycle
are mainly amplifications of those in the 4xCO$_{2}$ case.
In other words, there are larger increases in net
precipitation over the polar regions, the Himalayas and the
central tropical Pacific, and larger decreases in the rest
of the low latitudes. The globally averaged sea-surface
temperature increases from about 17.6$^{o}$C to 26.3$^{o}$C
(23.7$^{o}$C for the 4xCO$_{2}$ case), mostly within the
first 1500 years. In the deeper ocean (3km), the average
temperature increases from 1.1$^{o}$C and gradually reaches
8.9$^{o}$C (6.6$^{o}$C for the 4xCO$_{2}$ case) at the time
of complete THC recovery.
DE: 3339 Ocean/atmosphere interactions (0312, 4504)
DE: 4267 Paleoceanography
DE: 4283 Water masses
DE: 1620 Climate dynamics (3309)
DE: 1635 Oceans (4203)
SC: Atmospheric Sciences [A]
MN: 2004 AGU Fall Meeting