The gyro-fluid model proposed by Ottaviani et al. is extended, in which the ion parallel flow and ion neoclassical viscosity are taken into account. The heat source is also introduced. Using this model, the ion temperature gradient driven drift wave turbulence is analyzed. The reversed shear profile is employed, and internal transport barrier formation and collapse is investigated during the heating process. The multi-scale interaction between the thermal transport and the ITG turbulence is observed. In the saturation phase, the system approaches to marginal state, where the energy supply from source and intermittent transport with the avalanche process are balanced
Neoclassical and turbulent transport in tokamaks has been studied extensively over the past decades,...
Much progress has been made in simulating tokamak turbulent transport using both gyro uid and gyroki...
SIGLEAvailable from British Library Document Supply Centre-DSC:4672.262(97/11) / BLDSC - British Lib...
The gyro-fluid model proposed by Ottaviani et. al is extended, in which the ion parallel flow and io...
We have developed global ITG (Ion Temperature Gradient Driven Drift Wave) turbulence code to investi...
Ion temperature gradient (ITG) driven turbulence is investigated by means of gyrokinetic simulations...
Results are presented from nonlinear gyrokinetic simulations of toroidal ion temperature gradient (I...
International audienceThe turbulent transport governed by the toroidal ion temperature gradient driv...
The interactions between ion temperature gradient-driven drift waves (DITG) and electron temperature...
International audienceIt is shown that Ion Temperature Gradient turbulence close to the ă threshold ...
Due to foreseen improvement of neoclassical confinement in optimised stellarators - like the newly c...
Tracer impurity transport in ion temperature gradient-driven (ITG) turbulence is investigated using ...
A kinetic simulation code based on the gyrokinetic ion dynamics in global general metric (including ...
The article reports on recent developments in the theory of secondary instability in drift-ion tempe...
In our earlier work [Imadera et al. REDS Plasma Sci. Technol., 2016, 171, 52], the ion-temperature-d...
Neoclassical and turbulent transport in tokamaks has been studied extensively over the past decades,...
Much progress has been made in simulating tokamak turbulent transport using both gyro uid and gyroki...
SIGLEAvailable from British Library Document Supply Centre-DSC:4672.262(97/11) / BLDSC - British Lib...
The gyro-fluid model proposed by Ottaviani et. al is extended, in which the ion parallel flow and io...
We have developed global ITG (Ion Temperature Gradient Driven Drift Wave) turbulence code to investi...
Ion temperature gradient (ITG) driven turbulence is investigated by means of gyrokinetic simulations...
Results are presented from nonlinear gyrokinetic simulations of toroidal ion temperature gradient (I...
International audienceThe turbulent transport governed by the toroidal ion temperature gradient driv...
The interactions between ion temperature gradient-driven drift waves (DITG) and electron temperature...
International audienceIt is shown that Ion Temperature Gradient turbulence close to the ă threshold ...
Due to foreseen improvement of neoclassical confinement in optimised stellarators - like the newly c...
Tracer impurity transport in ion temperature gradient-driven (ITG) turbulence is investigated using ...
A kinetic simulation code based on the gyrokinetic ion dynamics in global general metric (including ...
The article reports on recent developments in the theory of secondary instability in drift-ion tempe...
In our earlier work [Imadera et al. REDS Plasma Sci. Technol., 2016, 171, 52], the ion-temperature-d...
Neoclassical and turbulent transport in tokamaks has been studied extensively over the past decades,...
Much progress has been made in simulating tokamak turbulent transport using both gyro uid and gyroki...
SIGLEAvailable from British Library Document Supply Centre-DSC:4672.262(97/11) / BLDSC - British Lib...