Neoclassical implications of the strong radial electric field, inherently present in an H-mode tokamak pedestal, are considered. The main ion poloidal flow in the pedestal is predicted to be reduced in magnitude, or even reversed, compared with its core counterpart. The resulting change in the neoclassical formula for the impurity flow is shown to result in improved agreement with boron measurements in the Alcator C-Mod pedestal. In addition, due to the ion flow being modified, the bootstrap current is expected to be enhanced in the pedestal over conventional predictions
Monte Carlo ion simulation based on neoclassical radial current balance in a divertor tokamak gives ...
Use of high-z wall materials attempts to shift the fusion challenge from heat handling to impurity r...
Conventional calculations of neoclassical flows, current, and fluxes may not be valid in the pedesta...
Neoclassical implications of the strong radial electric field, inherently present in an H-mode tokam...
In tokamak pedestals with subsonic flows the radial scale of plasma profiles can be comparable to th...
We study neoclassical transport in steady-state density pedestals with non-trace impurities using th...
The strong radial electric field in a subsonic tokamak pedestal modifies the neoclassical ion parall...
Scaling of the H-mode pedestal in tokamak plasmas with type I ELMs and dependence of the pedestal ...
In tokamak transport barriers, the radial scale of profile variations can be comparable to a typical...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, September 2009."September ...
Nuclear fusion has the potential to become a sustainable energy sourcein the foreseeable future. The...
This paper presents a numerical simulation to test the corrections to the radial electric field in t...
In subsonic tokamak pedestals the radial scale of plasma profiles can be comparable to the ion poloi...
We present a numerical study of collisional transport in a tokamak pedestal in the presence of non-t...
We consider the effects of a finite radial electric field on ion orbits in a subsonic pedestal. Usin...
Monte Carlo ion simulation based on neoclassical radial current balance in a divertor tokamak gives ...
Use of high-z wall materials attempts to shift the fusion challenge from heat handling to impurity r...
Conventional calculations of neoclassical flows, current, and fluxes may not be valid in the pedesta...
Neoclassical implications of the strong radial electric field, inherently present in an H-mode tokam...
In tokamak pedestals with subsonic flows the radial scale of plasma profiles can be comparable to th...
We study neoclassical transport in steady-state density pedestals with non-trace impurities using th...
The strong radial electric field in a subsonic tokamak pedestal modifies the neoclassical ion parall...
Scaling of the H-mode pedestal in tokamak plasmas with type I ELMs and dependence of the pedestal ...
In tokamak transport barriers, the radial scale of profile variations can be comparable to a typical...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, September 2009."September ...
Nuclear fusion has the potential to become a sustainable energy sourcein the foreseeable future. The...
This paper presents a numerical simulation to test the corrections to the radial electric field in t...
In subsonic tokamak pedestals the radial scale of plasma profiles can be comparable to the ion poloi...
We present a numerical study of collisional transport in a tokamak pedestal in the presence of non-t...
We consider the effects of a finite radial electric field on ion orbits in a subsonic pedestal. Usin...
Monte Carlo ion simulation based on neoclassical radial current balance in a divertor tokamak gives ...
Use of high-z wall materials attempts to shift the fusion challenge from heat handling to impurity r...
Conventional calculations of neoclassical flows, current, and fluxes may not be valid in the pedesta...