Experiments with plasmas having nearly equal concentrations of deuterium and tritium have been carried out on TFTR. To date, the maximum fusion power has been 10.7 MW, using 39.5 MW of neutral-beam heating, in a supershot discharge and 6.7 MW in a high-{beta}{sub p} discharge following a current ramp-down. The fusion power density in the core of the plasma has reached 2.8 MWm{sup {minus}3}, exceeding that expected in the International Thermonuclear Experimental Reactor (ITTER). The energy confinement time, {tau}{sub E}, is observed to increase in D-T, relative to D plasmas, by 20% and the n{sub i}(O){center_dot}{tau}{sub E} product by 55%. The improvement in thermal confinement is caused primarily by a decrease in ion heat conductivity in b...
Progress in the performance of tokamak devices has enabled not only the production of significant bu...
Three campaigns, prior to July 1994, attempted to increase the fusion power in DT plasmas on the Tok...
Experiments in the Tokamak Fusion Test Reactor (TFTR) have explored several novel regimes of improve...
Experiments with plasmas having nearly equal concentrations of deuterium and tritium have been carri...
TFTR has begun its campaign to study deuterium-tritium fusion under reactor-like conditions. Variabl...
TFTR has begun its campaign to study deuterium-tritium fusion under reactor-like conditions. Variabl...
TFTR has begun its campaign to study deuterium-tritium fusion under reactor-like conditions. Variabl...
During the past two years, deuterium-tritium (D-T) plasmas in the Tokamak Fusion Test Reactor (TFTR)...
Plasmas composed of nominally equal concentrations of deuterium and tritium (DT) have been created i...
The Tokamak Fusion Test Reactor (TFTR) is a large tokamak which has performed experiments with 50:50...
Deuterium-tritium (D-T) plasmas with core parameters almost identical to those expected in the core ...
Progress in the performance of tokamak devices has enable not only the production of significant bur...
Preliminary analysis has been completed on measurements of limiter heating during high fusion power ...
Routine tritium operation in TFTR has permitted investigations of alpha particle physics in paramete...
Routine tritium operation in TFTR has permitted investigations of alpha particle physics in paramete...
Progress in the performance of tokamak devices has enabled not only the production of significant bu...
Three campaigns, prior to July 1994, attempted to increase the fusion power in DT plasmas on the Tok...
Experiments in the Tokamak Fusion Test Reactor (TFTR) have explored several novel regimes of improve...
Experiments with plasmas having nearly equal concentrations of deuterium and tritium have been carri...
TFTR has begun its campaign to study deuterium-tritium fusion under reactor-like conditions. Variabl...
TFTR has begun its campaign to study deuterium-tritium fusion under reactor-like conditions. Variabl...
TFTR has begun its campaign to study deuterium-tritium fusion under reactor-like conditions. Variabl...
During the past two years, deuterium-tritium (D-T) plasmas in the Tokamak Fusion Test Reactor (TFTR)...
Plasmas composed of nominally equal concentrations of deuterium and tritium (DT) have been created i...
The Tokamak Fusion Test Reactor (TFTR) is a large tokamak which has performed experiments with 50:50...
Deuterium-tritium (D-T) plasmas with core parameters almost identical to those expected in the core ...
Progress in the performance of tokamak devices has enable not only the production of significant bur...
Preliminary analysis has been completed on measurements of limiter heating during high fusion power ...
Routine tritium operation in TFTR has permitted investigations of alpha particle physics in paramete...
Routine tritium operation in TFTR has permitted investigations of alpha particle physics in paramete...
Progress in the performance of tokamak devices has enabled not only the production of significant bu...
Three campaigns, prior to July 1994, attempted to increase the fusion power in DT plasmas on the Tok...
Experiments in the Tokamak Fusion Test Reactor (TFTR) have explored several novel regimes of improve...