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Moderation of neoclassical impurity accumulation in high temperature plasmas of helical devices
- Source :
- Paper Moderation of neoclassical impurity accumulation in high temperature plasmas of helical devices J.L. Velasco1, I. Calvo1, S. Satake2,3, A. Alonso1, M. Nunami2,3, M. Yokoyama2,3, M. Sato2, T. Estrada1, J.M. Fontdecaba1, M. Liniers1, K.J. McCarthy1, F. Medina1, B. Ph Van Milligen1, M. Ochando1, F. Parra4,5, H. Sugama2, A. Zhezhera6, The LHD Experimental Team2 and The TJ-II Team1Hide full author list Published 27 October 2016 • © 2016 EURATOM Nuclear Fusion, Volume 57, Number 1 Citation J.L. Velasco et al 2017 Nucl. Fusion 57 016016, Nuclear Fusion
- Publication Year :
- 2016
- Publisher :
- arXiv, 2016.
-
Abstract
- Achieving impurity and helium ash control is a crucial issue in the path towards fusion-grade magnetic confinement devices, and this is particularly the case of helical reactors, whose low-collisionality ion-root operation scenarios usually display a negative radial electric field which is expected to cause inwards impurity pinch. In this work we discuss, based on experimental measurements and standard predictions of neoclassical theory, how plasmas of very low ion collisionality, similar to those observed in the impurity hole of the large helical device (Yoshinuma et al and The LHD Experimental Group 2009 Nucl. Fusion 49 062002, Ida et al and The LHD Experimental Group 2009 Phys. Plasmas 16 056111 and Yokoyama et al and LHD Experimental Group 2002 Nucl. Fusion 42 143), can be an exception to this general rule, and how a negative radial electric field can coexist with an outward impurity flux. This interpretation is supported by comparison with documented discharges available in the International Stellarator-Heliotron Profile Database, and it can be extrapolated to show that achievement of high ion temperature in the core of helical devices is not fundamentally incompatible with low core impurity content.
- Subjects :
- Physics
Nuclear and High Energy Physics
neoclassical transport
Magnetic confinement fusion
FOS: Physical sciences
Plasma
Collisionality
Condensed Matter Physics
7. Clean energy
01 natural sciences
impurities
Physics - Plasma Physics
010305 fluids & plasmas
Ion
Plasma Physics (physics.plasm-ph)
Large Helical Device
Impurity
Physics::Plasma Physics
Electric field
0103 physical sciences
Pinch
Atomic physics
stellarators
010306 general physics
Subjects
Details
- ISSN :
- 00295515, 07413335, 15361055, 09534075, and 03701298
- Database :
- OpenAIRE
- Journal :
- Paper Moderation of neoclassical impurity accumulation in high temperature plasmas of helical devices J.L. Velasco1, I. Calvo1, S. Satake2,3, A. Alonso1, M. Nunami2,3, M. Yokoyama2,3, M. Sato2, T. Estrada1, J.M. Fontdecaba1, M. Liniers1, K.J. McCarthy1, F. Medina1, B. Ph Van Milligen1, M. Ochando1, F. Parra4,5, H. Sugama2, A. Zhezhera6, The LHD Experimental Team2 and The TJ-II Team1Hide full author list Published 27 October 2016 • © 2016 EURATOM Nuclear Fusion, Volume 57, Number 1 Citation J.L. Velasco et al 2017 Nucl. Fusion 57 016016, Nuclear Fusion
- Accession number :
- edsair.doi.dedup.....cf2d89b3f37b8165a2fc253e0c0f29d8
- Full Text :
- https://doi.org/10.48550/arxiv.1607.07739