The role of E × B flow shear in reducing turbulent transport in the edge region of a tokamak is investigated using 3D nonlinear global simulations. Transport reduction is found to be due to both a decrease of fluctuation amplitudes as well as a change in their relative phase. A scaling of the turbulent diffusivity with E × B flow shear has been deduced from these simulations. This scaling agrees with recent experimental observations as well as analytical models. Moreover these simulations allow us to examine the dynamics of anisotropic secondary flows such as zonal flows and streamers. These flows are found to regulate intermittent transport observed in flux driven simulations
International audienceThe 3D global edge turbulence code TOKAM3X is used to study the properties of ...
3D simulations of drift resistive ballooning turbulence are presented. The turbulence is basically c...
Three-dimensional gyrokinetic simulations of ion temperature gradient driven turbulence in magnetica...
The role of E × B flow shear in reducing turbulent transport in the edge region of a tokamak is inve...
It is well known that turbulence, the major candidate to explain anomalous transport, can be quenche...
Large scale transport events are studied using two different 3-D simulation codes related to resisti...
Large scale transport events are studied in simulations of resistive ballooning turbulence in a toka...
International audienceThe saturation of heat and particle turbulent transport in tokamak plasmas is ...
In the present work different mechanisms for generation and suppression of turbulence are studied. T...
The dynamics of turbulence-driven E x B zonal flows has been systematically studied in fully 3-dimen...
Detailed computations of tokamak edge turbulence in three-dimensional, globally consistent flux tube...
International audienceWe discuss theoretical progress in turbulent transport modelling in tokamaks. ...
Turbulence in the edge plasma of a tokamak is a key actor in the determination of the confinement pr...
International audienceTurbulence in the edge plasma of a tokamak is a key actor in the determination...
The results of flux-driven, two-fluid simulations in single-null configurations are used to investig...
International audienceThe 3D global edge turbulence code TOKAM3X is used to study the properties of ...
3D simulations of drift resistive ballooning turbulence are presented. The turbulence is basically c...
Three-dimensional gyrokinetic simulations of ion temperature gradient driven turbulence in magnetica...
The role of E × B flow shear in reducing turbulent transport in the edge region of a tokamak is inve...
It is well known that turbulence, the major candidate to explain anomalous transport, can be quenche...
Large scale transport events are studied using two different 3-D simulation codes related to resisti...
Large scale transport events are studied in simulations of resistive ballooning turbulence in a toka...
International audienceThe saturation of heat and particle turbulent transport in tokamak plasmas is ...
In the present work different mechanisms for generation and suppression of turbulence are studied. T...
The dynamics of turbulence-driven E x B zonal flows has been systematically studied in fully 3-dimen...
Detailed computations of tokamak edge turbulence in three-dimensional, globally consistent flux tube...
International audienceWe discuss theoretical progress in turbulent transport modelling in tokamaks. ...
Turbulence in the edge plasma of a tokamak is a key actor in the determination of the confinement pr...
International audienceTurbulence in the edge plasma of a tokamak is a key actor in the determination...
The results of flux-driven, two-fluid simulations in single-null configurations are used to investig...
International audienceThe 3D global edge turbulence code TOKAM3X is used to study the properties of ...
3D simulations of drift resistive ballooning turbulence are presented. The turbulence is basically c...
Three-dimensional gyrokinetic simulations of ion temperature gradient driven turbulence in magnetica...