Abstract. To meet the requirements of the four operating and one start-up scenarios foreseen in the International Tokamak Experimental Reactor (ITER) a flexible heating mix will be required, which has to include a reliable contribution from neutral beams. The current baseline of ITER foresees 2 Heating Neutral Beam (HNB) systems based on negative ion technology, each operating at 1 MeV 40 A D- ions, and each capable of delivering up to 16.7 MW of D0 to the ITER plasma. A 3rd HNB injector is foreseen as an upgrade option. In addition a dedicated Diagnostic Neutral Beam (DNB) injecting 100 keV 60 A of negative hydrogen ions will be available for charge exchange resonant spectroscopy (CXRS). The significant R&D effort necessary to meet the...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
Each Injector of the ITER Neutral Beam system will deliver a power up to 16.5MW and guarantee steady...
The heating neutral beam (HNB) systems at ITER are designed to inject a total of 33 MW of either 1 M...
The heating neutral beam (HNB) systems at ITER are designed to inject a total of 33 MW of either 1 M...
Abstract\u2014The heating neutral beam (HNB) systems at ITER are designed to inject a total of 33 MW...
The ITER neutral beam (NB) injectors are the first injectors that will have to operate under conditi...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
The ITER heating neutral beam (HNB) injector, based on negative ions accelerated at 1 MV, will be te...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
In ITER, one of the key issues to achieve 400 s driven-burn operation at Q about 10 (Technical Basis...
In ITER, one of the key issues to achieve 400 s driven-burn operation at Q about 10 (Technical Basis...
ITER is a joint international research and development project aiming to demonstrate the scientific ...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
Each Injector of the ITER Neutral Beam system will deliver a power up to 16.5MW and guarantee steady...
The heating neutral beam (HNB) systems at ITER are designed to inject a total of 33 MW of either 1 M...
The heating neutral beam (HNB) systems at ITER are designed to inject a total of 33 MW of either 1 M...
Abstract\u2014The heating neutral beam (HNB) systems at ITER are designed to inject a total of 33 MW...
The ITER neutral beam (NB) injectors are the first injectors that will have to operate under conditi...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
Heating neutral beam (HNB) injectors, necessary to achieve burning conditions and to control plasma ...
The ITER heating neutral beam (HNB) injector, based on negative ions accelerated at 1 MV, will be te...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
For the experimental fusion reactor ITER, which should show the feasibility of sustaining a fusion p...
In ITER, one of the key issues to achieve 400 s driven-burn operation at Q about 10 (Technical Basis...
In ITER, one of the key issues to achieve 400 s driven-burn operation at Q about 10 (Technical Basis...
ITER is a joint international research and development project aiming to demonstrate the scientific ...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
To reach fusion conditions and control plasma configuration in ITER, a suitable combination of addit...
Each Injector of the ITER Neutral Beam system will deliver a power up to 16.5MW and guarantee steady...