The behaviour of a hybrid coupled model consisting of a simple atmospheric model and a tropical Pacific ocean general circulation model is examined. The atmosphere is a Gill type dynamical model forced by latent heating determined from a moisture equation. The model is shown to oscillate for suitable choices of the coupling strength and this oscillatory behaviour is analysed with a view to determining mechanisms. Evidence is presented that the phase reversal from warm to cold involves the formation of a "dipole pattern" of opposite signed SST between the eastern and central Pacific. The cold eastern water is then advected westward causing the termination of the "warm event". Central to the formation of the dipole pattern in the coupled osci...
The seasonal cycle over the tropical Pacific simulated by 11 coupled ocean–atmosphere general circul...
For the purpose of investigating the fundamental nature of the interannual oscillation observed in t...
Observations show that tropical and extratropical Pacific SST anomalies vary out-of-phase, and that ...
The behaviour of a hybrid coupled model consisting of a simple atmospheric model and a tropical Paci...
A hybrid coupled model (HCM) of the tropical ocean–atmosphere system is described. The ocean compone...
SIGLEAvailable from TIB Hannover: RR 1347(76) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Tec...
An intermediate ocean–atmosphere coupled model (ICM) of the tropical Pacific is used to investigate ...
A global hybrid coupled model is developed, with the aim of studying the effects of ocean-atmosphere...
The supermodel strategy interactively combines several models to outperform the individual models co...
A 26-year integration has been performed with a coupled ocean-atmosphere general circulation model (...
The supermodel strategy interactively combines several models to outperform the individual models co...
The stability of a simple coupled ocean-atmosphere system similar to the one studied by Hirst with g...
Forecasts of the tropical Pacific SST are presented here using a hybrid coupled ocean-atmosphere mod...
A coupled climate model is used to explore the response of the tropical sea surface temperature (SST...
A multiyear simulation with a coupled ocean-atmosphere general circulation model (GCM) is presented....
The seasonal cycle over the tropical Pacific simulated by 11 coupled ocean–atmosphere general circul...
For the purpose of investigating the fundamental nature of the interannual oscillation observed in t...
Observations show that tropical and extratropical Pacific SST anomalies vary out-of-phase, and that ...
The behaviour of a hybrid coupled model consisting of a simple atmospheric model and a tropical Paci...
A hybrid coupled model (HCM) of the tropical ocean–atmosphere system is described. The ocean compone...
SIGLEAvailable from TIB Hannover: RR 1347(76) / FIZ - Fachinformationszzentrum Karlsruhe / TIB - Tec...
An intermediate ocean–atmosphere coupled model (ICM) of the tropical Pacific is used to investigate ...
A global hybrid coupled model is developed, with the aim of studying the effects of ocean-atmosphere...
The supermodel strategy interactively combines several models to outperform the individual models co...
A 26-year integration has been performed with a coupled ocean-atmosphere general circulation model (...
The supermodel strategy interactively combines several models to outperform the individual models co...
The stability of a simple coupled ocean-atmosphere system similar to the one studied by Hirst with g...
Forecasts of the tropical Pacific SST are presented here using a hybrid coupled ocean-atmosphere mod...
A coupled climate model is used to explore the response of the tropical sea surface temperature (SST...
A multiyear simulation with a coupled ocean-atmosphere general circulation model (GCM) is presented....
The seasonal cycle over the tropical Pacific simulated by 11 coupled ocean–atmosphere general circul...
For the purpose of investigating the fundamental nature of the interannual oscillation observed in t...
Observations show that tropical and extratropical Pacific SST anomalies vary out-of-phase, and that ...