The ITER Electron Cyclotron Resonance Heating (ECRH) & Current Drive (ECCD) system is planned to be progressively installed and commissioned following the four stage approach of the ITER Research Plan. Starting with an injection of up to 5.8 MW from one Upper Launcher (UL) in the vacuum vessel to assist the plasma breakdown during First Plasma (FP) operation, the system will then be extended to achieve a capability of 20 MW injected power in Pre-Fusion Plasma Operation (PFPO) and Fusion Power Operation (FPO) phases. Development of optical modelling was required to characterize the optical performance of the FP configuration with the so-called First Plasma Protection Components. An optical 3D model using Zemax OpticStudio® has been developed...
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) 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 ITER Electron Cyclotron Resonance Heating (ECRH) & Current Drive (ECCD) system is planned to be ...
The Electron Cyclotron (EC) system for the ITER tokamak is designed to inject >= 20 MW RF power i...
The electron cyclotron (EC) heating and current drive (H&CD) system developed for the ITER is made o...
The 24 MW ITER Electron Cyclotron (EC) Heating and Current Drive (H&CD) system, operating at 170 GHz...
The 24 MW ITER Electron Cyclotron (EC) Heating and Current Drive (H&CD) system, operating at 170 GHz...
The physics requirements of the heating and current (H&CD) systems in a Demonstration Fusion Power P...
Electron Cyclotron Resonance Heating (ECRH) systems for next step-fusion devices like W7-X and ITER ...
Electron Cyclotron Resonance Heating (ECRH) is a key component in the heating arsenal for the next s...
Electron Cyclotron Resonance Heating (ECRH) is a key component in the heating arsenal for the next s...
In view of the preparation for the operation of the ITER tokamak it is necessary to develop the plas...
In view of the preparation for the operation of the ITER tokamak it is necessary to develop the plas...
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) 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 ITER Electron Cyclotron Resonance Heating (ECRH) & Current Drive (ECCD) system is planned to be ...
The Electron Cyclotron (EC) system for the ITER tokamak is designed to inject >= 20 MW RF power i...
The electron cyclotron (EC) heating and current drive (H&CD) system developed for the ITER is made o...
The 24 MW ITER Electron Cyclotron (EC) Heating and Current Drive (H&CD) system, operating at 170 GHz...
The 24 MW ITER Electron Cyclotron (EC) Heating and Current Drive (H&CD) system, operating at 170 GHz...
The physics requirements of the heating and current (H&CD) systems in a Demonstration Fusion Power P...
Electron Cyclotron Resonance Heating (ECRH) systems for next step-fusion devices like W7-X and ITER ...
Electron Cyclotron Resonance Heating (ECRH) is a key component in the heating arsenal for the next s...
Electron Cyclotron Resonance Heating (ECRH) is a key component in the heating arsenal for the next s...
In view of the preparation for the operation of the ITER tokamak it is necessary to develop the plas...
In view of the preparation for the operation of the ITER tokamak it is necessary to develop the plas...
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) 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...