Tearing mode dynamics and locking in the presence of external magnetic perturbations
Author(s) -
R. Fridström,
S. Munaretto,
L. Frassinetti,
B. E. Chapman,
P.R. Brunsell,
J. S. Sarff
Publication year - 2016
Publication title -
physics of plasmas
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.75
H-Index - 160
eISSN - 1089-7674
pISSN - 1070-664X
DOI - 10.1063/1.4953438
Subject(s) - physics , resonant magnetic perturbations , toroid , plasma , magnetic field , perturbation (astronomy) , harmonics , pinch , magnetohydrodynamics , atomic physics , tokamak , reversed field pinch , mechanics , tearing , amplitude , classical mechanics , quantum mechanics , voltage , thermodynamics
In normal operation, Madison Symmetric Torus (MST) [R. N. Dexter et al., Fusion Technol. 19, 131 (1991)] reversed-field pinch plasmas exhibit several rotating tearing modes (TMs). Application of a resonant magnetic perturbation (RMP) results in braking of mode rotation and, if the perturbation amplitude is sufficiently high, in a wall-locked state. The coils that produce the magnetic perturbation in MST give rise to RMPs with several toroidal harmonics. As a result, simultaneous deceleration of all modes is observed. The measured TM dynamics is shown to be in qualitative agreement with a magnetohydrodynamical model of the RMP interaction with the TM [R. Fitzpatrick, Nucl. Fusion 33, 1049 (1993)] adapted to MST. To correctly model the TM dynamics, the electromagnetic torque acting on several TMs is included. Quantitative agreement of the TM slowing-down time was obtained for a kinematic viscosity in the order of νkin≈10–20 m2/s. Analysis of discharges with different plasma densities shows an increase of th...
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