This thesis describes two studies of baroclinic instability in a rotating fluid annulus subject to differential heating. The first part is concerned with the development of a time dependent axisymmetric numerical model. The model was formulated using the control volume finite element method and was designed to be as flexible as possible both in terms of the range of problems to be studied and the techniques used to study them. Details of these techniques are presented together with a discussion of their limitations and possible refinements and extensions which could be made. The second part of this thesis describes a numerical study of unstable normal mode perturbations which can develop on a prescribed mean state. The growth rate and struc...
International audienceThe occurrence and source mechanism of inertia-gravity waves (IGWs) are studie...
We present results of a linear stability analysis of non-axisymmetric thermally driven flows in the ...
International audienceWe present results of a linear stability analysis of non-axisymmetric thermall...
This thesis describes two studies of baroclinic instability in a rotating fluid annulus subject to d...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
The effective contribution to the lateral heat transport in a rotating differentially heated annulus...
Finite difference numerical models based upon the Navier-Stokes equations with the Boussinesq approx...
We study experiments on baroclinic instabilities in a different heated rotating annulus cooled from ...
The differentially heated rotating annulus is a widely studied tabletop-size laboratory model of the...
We present results of numerical simulations of baroclinic driven flows in the thermally driven rotat...
A series of laboratory experiments has been carried out in a thermally driven rotating annulus to st...
Experiments of baroclinic waves in a rotating, baroclinic annulus of fluid are presented for two gap...
International audienceThe occurrence and source mechanism of inertia-gravity waves (IGWs) are studie...
Three-dimensional direct numerical simulations (DNS) of the nonlinear dynamics and a route to chaos ...
International audienceThe occurrence and source mechanism of inertia-gravity waves (IGWs) are studie...
We present results of a linear stability analysis of non-axisymmetric thermally driven flows in the ...
International audienceWe present results of a linear stability analysis of non-axisymmetric thermall...
This thesis describes two studies of baroclinic instability in a rotating fluid annulus subject to d...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
In this study an experimental investigation of baroclinic waves in air in a differentially heated ro...
The effective contribution to the lateral heat transport in a rotating differentially heated annulus...
Finite difference numerical models based upon the Navier-Stokes equations with the Boussinesq approx...
We study experiments on baroclinic instabilities in a different heated rotating annulus cooled from ...
The differentially heated rotating annulus is a widely studied tabletop-size laboratory model of the...
We present results of numerical simulations of baroclinic driven flows in the thermally driven rotat...
A series of laboratory experiments has been carried out in a thermally driven rotating annulus to st...
Experiments of baroclinic waves in a rotating, baroclinic annulus of fluid are presented for two gap...
International audienceThe occurrence and source mechanism of inertia-gravity waves (IGWs) are studie...
Three-dimensional direct numerical simulations (DNS) of the nonlinear dynamics and a route to chaos ...
International audienceThe occurrence and source mechanism of inertia-gravity waves (IGWs) are studie...
We present results of a linear stability analysis of non-axisymmetric thermally driven flows in the ...
International audienceWe present results of a linear stability analysis of non-axisymmetric thermall...