This report summarizes MHD equilibrium and stability studies carried out at Northrop Grumman`s Advanced Technology and Development Center during the 12 month period starting March 1, 1994. Progress is reported in both ideal and resistive MHD modeling of TFTR plasmas. The development of codes to calculate the significant effects of highly anisotropic pressure distributions is discussed along with results from this model
Progress in the area of MHD stability and disruptions, since the publication of the 1999 ITER Physic...
TFTR experiments on the enhanced reversed shear (ERS) mode have demonstrated particle and ion therma...
MHD equilibrium and stability analyses have been performed in support of the design and initial expe...
This report describes MHD equilibrium and stability studies carried out at Northrop Grumman`s Advanc...
This document describes ideal and resistive MHD studies of high-beta plasmas and of the second stabi...
MHD phenomena in reversed shear plasmas in TFTR are described during each of the three phases of the...
Ideal MHD stability limits of anticipated plasma configurations for the National Spherical Torus Exp...
The research performed during the third year of this grant concentrated on a few key TFTR experiment...
The Korea Superconducting Tokamak Advanced Research, KSTAR, is designed to operate a steady-state, h...
A review of TFTR plasma transport studies is presented. Parallel transport and the confinement of su...
Alpha particle physics; beta limits; disruptions; fusion; magnetic confinement; neutral beam heating...
A stable path to high-beta plasmas is investigated for an inward-shifted LHD configuration. An impro...
The onset of MHD activity in present tokamak plasmas plays a detrimental role inthe discharge perfor...
This work describes the ideal & resistive Magnetohydrodynamic (MHD) stability properties of Tokamak ...
Progress in the area of MHD stability and disruptions, since the publication of the 1999 ITER Physic...
Progress in the area of MHD stability and disruptions, since the publication of the 1999 ITER Physic...
TFTR experiments on the enhanced reversed shear (ERS) mode have demonstrated particle and ion therma...
MHD equilibrium and stability analyses have been performed in support of the design and initial expe...
This report describes MHD equilibrium and stability studies carried out at Northrop Grumman`s Advanc...
This document describes ideal and resistive MHD studies of high-beta plasmas and of the second stabi...
MHD phenomena in reversed shear plasmas in TFTR are described during each of the three phases of the...
Ideal MHD stability limits of anticipated plasma configurations for the National Spherical Torus Exp...
The research performed during the third year of this grant concentrated on a few key TFTR experiment...
The Korea Superconducting Tokamak Advanced Research, KSTAR, is designed to operate a steady-state, h...
A review of TFTR plasma transport studies is presented. Parallel transport and the confinement of su...
Alpha particle physics; beta limits; disruptions; fusion; magnetic confinement; neutral beam heating...
A stable path to high-beta plasmas is investigated for an inward-shifted LHD configuration. An impro...
The onset of MHD activity in present tokamak plasmas plays a detrimental role inthe discharge perfor...
This work describes the ideal & resistive Magnetohydrodynamic (MHD) stability properties of Tokamak ...
Progress in the area of MHD stability and disruptions, since the publication of the 1999 ITER Physic...
Progress in the area of MHD stability and disruptions, since the publication of the 1999 ITER Physic...
TFTR experiments on the enhanced reversed shear (ERS) mode have demonstrated particle and ion therma...
MHD equilibrium and stability analyses have been performed in support of the design and initial expe...