The Electron Cyclotron system for ITER is an in-kind procurement shared between five parties and the total installed power will be 24 MW, corresponding to a nominal injected power of 20 MW to the plasma, with a possible upgrade up to 48 MW (corresponding to 40 MW injected). Some critical issues have been raised and changes are proposed to simplify these procurements and to facilitate the integration into ITER. The progress in the design and the integration of the EC system into the whole project is presented in this paper, as well as some issues still under studies and some recommendations made by external expert committees. (C) 2009 Elsevier B.V. All rights reserved
The ITER electron cyclotron (EC) system having capability of up to 26 MW generated power at 170 GHz ...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The electron cyclotron (EC) heating and current drive (H&CD) system developed for the ITER is made o...
This paper reviews the design and functionality of the 24 MW 170 GHz electron cyclotron heating and ...
The Electron Cyclotron (EC) system for the ITER tokamak is designed to inject >= 20 MW RF power i...
The electron cyclotron (EC), ion cyclotron (IC), heating-neutral beam (H-NB) and, although not in th...
The ITER Ion Cyclotron Heating and Current Drive system will deliver 20 MW of radio frequency power ...
The ITER Ion Cyclotron Heating and Current Drive system will deliver 20MW of radio frequency power t...
The ITER Ion Cyclotron Heating and Current Drive system will deliver 20MW of radio frequency power t...
The electron cyclotron (EC) system of ITER for the initial configuration is designed to provide 20MW...
The electron cyclotron (EC) system of ITER for the initial configuration is designed to provide 20MW...
The ongoing design of the ITER Ion Cyclotron Heating and Current Drive system (20 MW, 40–55 MHz) is ...
The ITER Ion Cyclotron Heating and Current Drive system (IC H&CD) is designed to deliver 20MW to a b...
The ITER electron cyclotron (EC) system having capability of up to 26 MW generated power at 170 GHz ...
The ITER electron cyclotron (EC) system having capability of up to 26 MW generated power at 170 GHz ...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The electron cyclotron (EC) heating and current drive (H&CD) system developed for the ITER is made o...
This paper reviews the design and functionality of the 24 MW 170 GHz electron cyclotron heating and ...
The Electron Cyclotron (EC) system for the ITER tokamak is designed to inject >= 20 MW RF power i...
The electron cyclotron (EC), ion cyclotron (IC), heating-neutral beam (H-NB) and, although not in th...
The ITER Ion Cyclotron Heating and Current Drive system will deliver 20 MW of radio frequency power ...
The ITER Ion Cyclotron Heating and Current Drive system will deliver 20MW of radio frequency power t...
The ITER Ion Cyclotron Heating and Current Drive system will deliver 20MW of radio frequency power t...
The electron cyclotron (EC) system of ITER for the initial configuration is designed to provide 20MW...
The electron cyclotron (EC) system of ITER for the initial configuration is designed to provide 20MW...
The ongoing design of the ITER Ion Cyclotron Heating and Current Drive system (20 MW, 40–55 MHz) is ...
The ITER Ion Cyclotron Heating and Current Drive system (IC H&CD) is designed to deliver 20MW to a b...
The ITER electron cyclotron (EC) system having capability of up to 26 MW generated power at 170 GHz ...
The ITER electron cyclotron (EC) system having capability of up to 26 MW generated power at 170 GHz ...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...