The RFP configuration is maintained by an intrinsic dynamo mechanism associated to resistive MHD tearing modes. These dynamo modes are responsible for field line stochasticity and have a strong influence on plasma confinement. RFX results relevant to the subject are discussed both in terms of the influence of the magnetic boundary and of the characteristics of the RFP enhanced confimenement regimes. The dynamo modes are often locked in phase and to the wall, which spoils the stabilising effect of the conducting shell and leads to severe plasma-wall interactions. The driven rotation of the locked dynamo modes has been studied in RFX by means of a new Toroidal Field Modulation System. A rotating toroidally localised perturbation of the toroidal magnetic field couples to the modes and induces their rotation

Studies on magnetic dynamic of RFX

CHITARIN, GIUSEPPE;SONATO, PIERGIORGIO;ZOLLINO, GIUSEPPE
1998

Abstract

The RFP configuration is maintained by an intrinsic dynamo mechanism associated to resistive MHD tearing modes. These dynamo modes are responsible for field line stochasticity and have a strong influence on plasma confinement. RFX results relevant to the subject are discussed both in terms of the influence of the magnetic boundary and of the characteristics of the RFP enhanced confimenement regimes. The dynamo modes are often locked in phase and to the wall, which spoils the stabilising effect of the conducting shell and leads to severe plasma-wall interactions. The driven rotation of the locked dynamo modes has been studied in RFX by means of a new Toroidal Field Modulation System. A rotating toroidally localised perturbation of the toroidal magnetic field couples to the modes and induces their rotation
1998
IAEA Fusion Energy 1998
7th IAEA Fusion Energy Conference
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2516300
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