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Estimate of 3D power wall loads due to Neutral Beam Injection in EU DEMO ramp-up phase
- Source :
- Nuclear Materials and Energy, Nuclear Materials and Energy, Vol 18, Iss, Pp 188-192 (2019), Nuclear materials and energy 18 (2019): 188–192. doi:10.1016/j.nme.2018.12.031, info:cnr-pdr/source/autori:Vincenzi, P.; Varje, J.; Agostinetti, P.; Artaud, J.F.; Bolzonella, T.; Kurki-Suonio, T.; Mattei, M.; Sonato, P.; Vallar, M./titolo:Estimate of 3D power wall loads due to Neutral Beam Injection in EU DEMO ramp-up phase/doi:10.1016%2Fj.nme.2018.12.031/rivista:Nuclear materials and energy/anno:2019/pagina_da:188/pagina_a:192/intervallo_pagine:188–192/volume:18
- Publication Year :
- 2019
-
Abstract
- openaire: EC/H2020/633053/EU//EUROfusion Heating and current drive systems such as high energy Neutral Beam Injection (NBI) are being considered for pulsed EU DEMO (“DEMO1”) pre-conceptual design. Their aim is to provide auxiliary power, not only during flat-top, but also during transient phases (i.e. plasma current ramp-up and ramp-down). In this work, NBI fast particle power loads on DEMO1 first wall, due to shine-through and orbit losses, are calculated for the diverted plasma ramp-up phase. Numerical simulations are performed using BBNBI and ASCOT Monte Carlo codes. The simulations have been done using a complete 3D wall geometry, and implementing the latest DEMO NBI design, which foresees NBI at 800 keV particle energy. Location and power density of NBI-related power loads at different ramp-up time steps are evaluated and compared with the maximum tolerable heat flux taken from ITER case. Since NBI shine-through losses (dominant during low density phases) depend mainly on the beam energy, plasma density and volume, DEMO has a more favourable situation than ITER, enlarging NBI operational window. Using ITER criteria, DEMO NBI at full energy and power could be switched on during ramp-up at ~ 1.3 × 1019 m-3. This increases the appeal of neutral beam injectors as auxiliary power systems for DEMO.
- Subjects :
- Nuclear and High Energy Physics
High-energy neutrals
Materials science
Tokamak devices
Transient phasis
Materials Science (miscellaneous)
Nuclear engineering
Neutral beam injection
Nuclear Energy and Engineering
7. Clean energy
01 natural sciences
010305 fluids & plasmas
Physics::Plasma Physics
0103 physical sciences
Operational windows
Power density
010302 applied physics
Monte Carlo codes
Particle beam injection
ta114
Monte Carlo methods
Plasma
Plasma density
Plasma current ramps
lcsh:TK9001-9401
Particle beams
Power (physics)
Current drive system
Heat flux
Auxiliary power unit
Neutral beam injectors
Conceptual design
Physics::Accelerator Physics
lcsh:Nuclear engineering. Atomic power
Transient (oscillation)
Beam (structure)
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Nuclear Materials and Energy, Nuclear Materials and Energy, Vol 18, Iss, Pp 188-192 (2019), Nuclear materials and energy 18 (2019): 188–192. doi:10.1016/j.nme.2018.12.031, info:cnr-pdr/source/autori:Vincenzi, P.; Varje, J.; Agostinetti, P.; Artaud, J.F.; Bolzonella, T.; Kurki-Suonio, T.; Mattei, M.; Sonato, P.; Vallar, M./titolo:Estimate of 3D power wall loads due to Neutral Beam Injection in EU DEMO ramp-up phase/doi:10.1016%2Fj.nme.2018.12.031/rivista:Nuclear materials and energy/anno:2019/pagina_da:188/pagina_a:192/intervallo_pagine:188–192/volume:18
- Accession number :
- edsair.doi.dedup.....a307dceee20bdf7f7293990bd93c36e2