The present paper is devoted to a first assessment of the DEMO diagnostics systems and controls in the context of pulsed and steady state reactor design under study in Europe. In particular, the main arguments treated are: (i) The quantities to be measured in DEMO and the requirements for the measurements; (ii) the present capability of the diagnostic and control technology, determining the most urgent gaps, and (iii) the program and strategy of the research and development (R&D) needed to fill the gaps. Burn control, magnetohydrodynamic stability, and basic machine protection require improvements to the ITER technology, and moderated efforts in R&D can be dedicated to infrared diagnostics (reflectometry, electron cyclotron emission, polarimetry) and neutron diagnostics. Metallic Hall sensors appear to be a promising candidate for magnetic measurements in the high neutron fluence and long/steady state discharges of DEMO.

Orsitto, F., Villari, R., Moro, F., Todd, T., Lilley, S., Jenkins, I., et al. (2016). Diagnostics and control for the steady state and pulsed tokamak DEMO. NUCLEAR FUSION, 56(2) [10.1088/0029-5515/56/2/026009].

Diagnostics and control for the steady state and pulsed tokamak DEMO

Tardocchi M.;Gorini G.;
2016

Abstract

The present paper is devoted to a first assessment of the DEMO diagnostics systems and controls in the context of pulsed and steady state reactor design under study in Europe. In particular, the main arguments treated are: (i) The quantities to be measured in DEMO and the requirements for the measurements; (ii) the present capability of the diagnostic and control technology, determining the most urgent gaps, and (iii) the program and strategy of the research and development (R&D) needed to fill the gaps. Burn control, magnetohydrodynamic stability, and basic machine protection require improvements to the ITER technology, and moderated efforts in R&D can be dedicated to infrared diagnostics (reflectometry, electron cyclotron emission, polarimetry) and neutron diagnostics. Metallic Hall sensors appear to be a promising candidate for magnetic measurements in the high neutron fluence and long/steady state discharges of DEMO.
Articolo in rivista - Articolo scientifico
fusion plasma diagnostics; fusion reactor; measurement systems;
English
2016
56
2
026009
none
Orsitto, F., Villari, R., Moro, F., Todd, T., Lilley, S., Jenkins, I., et al. (2016). Diagnostics and control for the steady state and pulsed tokamak DEMO. NUCLEAR FUSION, 56(2) [10.1088/0029-5515/56/2/026009].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/481359
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