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Toroidal rotation braking withn= 1 magnetic perturbation field on JET

Authors :
Otto Asunta
S. Wiesen
Mikhail Gryaznevich
C. Giroud
Vassili Parail
Youwen Sun
Volker Naulin
Alberto Alfier
T. C. Hender
C. Wiegmann
Eric Nardon
Jet-Efda Contributors
G. Corrigan
T. Tala
S. Jachmich
Yunfeng Liang
H. R. Koslowski
D. Harting
Source :
JET-EFDA contributors 2010, ' Toroidal rotation braking with n = 1 magnetic perturbation field on JET ', Plasma Physics and Controlled Fusion, vol. 52, no. 10, 105007 . https://doi.org/10.1088/0741-3335/52/10/105007
Publication Year :
2010
Publisher :
IOP Publishing, 2010.

Abstract

A strong toroidal rotation braking has been observed in plasmas with application of an n = 1 magnetic perturbation field on the JET tokamak. Calculation results from the momentum transport analysis show that the torque induced by the n = 1 perturbation field has a global profile. The maximal value of this torque is at the plasma core region (ρ < 0.4) and it is about half of the neutral beam injection torque. The calculation shows that the plasma is mainly in the ν-√ν regime in the plasma core, but it is close to the transition between the 1/ν and ν-√ν regimes. The neoclassical toroidal viscosity (NTV) torque in the 1/ν and ν-√ν regimes is calculated. The observed torque is of a magnitude in between that of the NTV torque in the 1/ν and ν-√ν regimes. The NTV torque in the ν-√ν regimes is enhanced using the Lagrangian variation of the magnetic field strength. However, it is still smaller than the observed torque by one order of magnitude.

Details

ISSN :
13616587 and 07413335
Volume :
52
Database :
OpenAIRE
Journal :
Plasma Physics and Controlled Fusion
Accession number :
edsair.doi.dedup.....54c6890c0e8fdfbf6e3c681de4574ca3
Full Text :
https://doi.org/10.1088/0741-3335/52/10/105007