The Alcator C-Mod team has recently developed a feedback system to measure and control surface heat flux in real-time. The system uses real-time measurements of surface heat flux from surface thermocouples and a pulse-width modulated piezo valve to inject low-Z impurities (typically N2) into the private flux region. It has been used in C-Mod to mitigate peak surface heat fluxes >40 MW m−2 down to 1. While the system works quite well under relatively steady conditions, use of it during transients has revealed important limitations on feedback control of impurity seeding in conventional vertical target plate divertors. In some cases, the system is unable to avoid plasma reattachment to the divertor plate or the formation of a confinement dam...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
The Alcator C-Mod team has recently developed a feedback system to measure and control surface heat ...
Mitigation of the intense heat flux to the divertor is one of the outstanding problems in fusion ene...
The mitigation of divertor heat fluxes is an active topic of investigation on existing tokamaks. One...
Tokamaks are currently being designed and built to achieve net positive unharnessed fusion energy, a...
A poloidal array of toroidally-extended, flush-mounted ‘rail’ Langmuir probes was recently installed...
A poloidal array of toroidally-extended, flush-mounted ‘rail’ Langmuir probes was recently installed...
In order to more completely demonstrate the I-mode regime as a compelling fusion reactor operating s...
Future fusion reactors require a safe, steady state divertor operation. A possible solution for the ...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
Alcator C-Mod is the high-field, high-density divertor tokamak in the world fusion program. It is on...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
The Alcator C-Mod team has recently developed a feedback system to measure and control surface heat ...
Mitigation of the intense heat flux to the divertor is one of the outstanding problems in fusion ene...
The mitigation of divertor heat fluxes is an active topic of investigation on existing tokamaks. One...
Tokamaks are currently being designed and built to achieve net positive unharnessed fusion energy, a...
A poloidal array of toroidally-extended, flush-mounted ‘rail’ Langmuir probes was recently installed...
A poloidal array of toroidally-extended, flush-mounted ‘rail’ Langmuir probes was recently installed...
In order to more completely demonstrate the I-mode regime as a compelling fusion reactor operating s...
Future fusion reactors require a safe, steady state divertor operation. A possible solution for the ...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
Alcator C-Mod is the high-field, high-density divertor tokamak in the world fusion program. It is on...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...
In magnetic confinement thermonuclear fusion the exhaust of heat and particles from the core remains...