An axisymmetric single‐layer model is used to study interactions of the Hadley circulation with extratropical eddies. Eddy momentum fluxes are parameterized using a simple closure motivated by calculations with an idealized dry general circulation model (GCM). Calculations are performed in which the heating is parameterized as Newtonian relaxation of temperatures toward a prescribed radiative‐convective equilibrium (RCE) state. The latitude at which the maximum RCE temperature occurs is varied to represent seasonal variations. In the axisymmetric model, as in the GCM, qualitative changes in the zonal momentum budget occur as the RCE temperature maximum moves away from the equator past a threshold latitude. For RCE temperature maxima closer ...
The authors consider constraints from axisymmetric, nearly inviscid theory on Hadley cell emergence ...
This work investigates the sensitivity of the cross-equatorial eddy momentum flux and its rotational...
A zonally averaged version of the Goddard Laboratory for Atmospheric Sciences (GLAS) climate model i...
An idealized GCM is used to investigate how the strength and meridional extent of the Hadley circula...
Steady-state and time-dependent Hadley circulations are investigated with an idealized dry GCM, in w...
Steady-state and time-dependent Hadley circulations are investigated with an idealized dry GCM, in w...
The impact of the equilibrium temperature distribution, θE, on the Hadley circulation simulated by a...
This thesis studies the impact of the equilibrium temperature distribution θE, on the Hadley circul...
The impact of the equilibrium temperature distribution, θ<sub>E</sub>, on the Hadley circulati...
[1] The response of Hadley circulations to displacements of the latitude of maximum heating is inves...
The impact of the equilibrium temperature distribution, θE, on the Hadley circulation simulated by a...
We present self-consistent comparisons of axissymmetric and 3-dimensional simulations of the troposp...
In a simulation of seasonal cycles with an idealized general circulation model without a hydrologic ...
The influence of eddy momentum fluxes on the equinoctial Hadley circulation is explored using ideali...
We consider the relevance of known constraints from each of Hide's theorem, the angular momentum con...
The authors consider constraints from axisymmetric, nearly inviscid theory on Hadley cell emergence ...
This work investigates the sensitivity of the cross-equatorial eddy momentum flux and its rotational...
A zonally averaged version of the Goddard Laboratory for Atmospheric Sciences (GLAS) climate model i...
An idealized GCM is used to investigate how the strength and meridional extent of the Hadley circula...
Steady-state and time-dependent Hadley circulations are investigated with an idealized dry GCM, in w...
Steady-state and time-dependent Hadley circulations are investigated with an idealized dry GCM, in w...
The impact of the equilibrium temperature distribution, θE, on the Hadley circulation simulated by a...
This thesis studies the impact of the equilibrium temperature distribution θE, on the Hadley circul...
The impact of the equilibrium temperature distribution, θ<sub>E</sub>, on the Hadley circulati...
[1] The response of Hadley circulations to displacements of the latitude of maximum heating is inves...
The impact of the equilibrium temperature distribution, θE, on the Hadley circulation simulated by a...
We present self-consistent comparisons of axissymmetric and 3-dimensional simulations of the troposp...
In a simulation of seasonal cycles with an idealized general circulation model without a hydrologic ...
The influence of eddy momentum fluxes on the equinoctial Hadley circulation is explored using ideali...
We consider the relevance of known constraints from each of Hide's theorem, the angular momentum con...
The authors consider constraints from axisymmetric, nearly inviscid theory on Hadley cell emergence ...
This work investigates the sensitivity of the cross-equatorial eddy momentum flux and its rotational...
A zonally averaged version of the Goddard Laboratory for Atmospheric Sciences (GLAS) climate model i...