Parallel viscosity ⟨B⋅∇⋅Πi⟩ as a function of radial electric field Er (or, equivalently, nonequilibrium poloidal rotation) in a tokamak is studied using a five-dimensional (5D) (3D in configuration space and 2D in velocity space) Monte Carlo particle following code. It is shown that including the poloidal density variation changes the qualitative behavior of the solution causing the parallel viscosity to change sign when the Mach number Mp=|Er/vtBθ| is of the order of unity. Here, vt is the thermal velocity and Bθ is the poloidal magnetic field
In this paper we study the effects of poloidal and toroidal rotation, and anisotropy in tokamaks. To...
Radial structures of plasma rotation and radial electric field are experimentally studied in tokamak...
It is shown that toroidal magnetic field ripple induced thermal and fast ion loss can drive the radi...
The neoclassical return current and parallel viscosity due to the radial electric field (non-equilib...
Abstract. The neoclassical return current and parallel viscosity due to the radial electric field (n...
The poloidal variation of impurity densities over magnetic surfaces brings about an enhancement of n...
We discuss two contributions that elucidate the impact of energetic particles and rotation on tokama...
The two different expressions for the radial particle flux {Lambda} found in the literature, as give...
It is shown that toroidal magnetic fleld ripple induced particle °ux can drive poloidal E £B speed t...
Poloidal impurity asymmetries are frequently observed in tokamaks. In this paper, the effect of polo...
When the beam driven toroidal plasma rotation reaches thermal velocity the particle density and the ...
© 1985 American Institute of Physics. The electronic version of this article is the complete one and...
Electrode biasing experiments in three types of magnetic configuration were carried out to investiga...
Accurate calculation of perturbed distribution function #14;δf and perturbed magnetic fi eld #14;δB ...
International audienceRadial fluxes of parallel momentum due to E × B and curvature (and B) drifts a...
In this paper we study the effects of poloidal and toroidal rotation, and anisotropy in tokamaks. To...
Radial structures of plasma rotation and radial electric field are experimentally studied in tokamak...
It is shown that toroidal magnetic field ripple induced thermal and fast ion loss can drive the radi...
The neoclassical return current and parallel viscosity due to the radial electric field (non-equilib...
Abstract. The neoclassical return current and parallel viscosity due to the radial electric field (n...
The poloidal variation of impurity densities over magnetic surfaces brings about an enhancement of n...
We discuss two contributions that elucidate the impact of energetic particles and rotation on tokama...
The two different expressions for the radial particle flux {Lambda} found in the literature, as give...
It is shown that toroidal magnetic fleld ripple induced particle °ux can drive poloidal E £B speed t...
Poloidal impurity asymmetries are frequently observed in tokamaks. In this paper, the effect of polo...
When the beam driven toroidal plasma rotation reaches thermal velocity the particle density and the ...
© 1985 American Institute of Physics. The electronic version of this article is the complete one and...
Electrode biasing experiments in three types of magnetic configuration were carried out to investiga...
Accurate calculation of perturbed distribution function #14;δf and perturbed magnetic fi eld #14;δB ...
International audienceRadial fluxes of parallel momentum due to E × B and curvature (and B) drifts a...
In this paper we study the effects of poloidal and toroidal rotation, and anisotropy in tokamaks. To...
Radial structures of plasma rotation and radial electric field are experimentally studied in tokamak...
It is shown that toroidal magnetic field ripple induced thermal and fast ion loss can drive the radi...