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Compact Torus (Field-Reversed Configuration, Spheromak) Concepts

Current Sustainment of a Field-Reversed Configuration by Rotating Magnetic Field

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Pages 391-396 | Published online: 17 Jan 2018

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Read on this site (2)

S.V. Ryzhkov, V.I. Khvesyuk & A.A. Ivanov. (2003) Progress in an Alternate Confinement System Called a FRC. Fusion Science and Technology 43:1T, pages 304-306.
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R. W. Moir, R. H. Bulmer, K. Gulec, P. Fogarty, B. Nelson, M. Ohnishi, M. Rensink, T. D. Rognlien, J. F. Santarius & D. K. Sze. (2001) Thick Liquid-Walled, Field-Reversed Configuration-Magnetic Fusion Power Plant. Fusion Technology 39:2P2, pages 758-767.
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Articles from other publishers (6)

H. Adachi, H. Osawa, M. Ohnishi & A. Ishida. (2003) Penetration of rotating magnetic field and its effects on electron confinement in field-reversed configuration. Penetration of rotating magnetic field and its effects on electron confinement in field-reversed configuration.
Masami Ohnishi & Akio Ishida. (2002) Stability of equilibrium in rotating magnetic field current drive for sustaining field-reversed configuration. Physics of Plasmas 9:6, pages 2633-2638.
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A.L Hoffman. (2000) Rotating magnetic field current drive of FRCs subject to equilibrium constraints. Nuclear Fusion 40:8, pages 1523-1539.
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Richard D. Milroy. (2000) A magnetohydrodynamic model of rotating magnetic field current drive in a field-reversed configuration. Physics of Plasmas 7:10, pages 4135.
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Richard D. Milroy. (1999) A numerical study of rotating magnetic fields as a current drive for field reversed configurations. Physics of Plasmas 6:7, pages 2771-2780.
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M Ohnishi & A Ishida. (1996) Effects of radial flow on current drive in a field reversed configuration by a rotating magnetic field. Nuclear Fusion 36:2, pages 232-236.
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