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research article

Control of electron internal transport barriers in TCV

Henderson, M. A.  
•
Behn, R.  
•
Coda, S.  
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2004
Plasma Physics and Controlled Fusion

Current profile tailoring has been performed by application of electron cyclotron heating (ECH) and electron cyclotron current drive, leading to improved energy confinement in the plasma core of the TCV tokamak. The improved confinement is characterized by a substantial enhancement (H-factor) of the global electron energy confinement time relative to the prediction of the RLW scaling law (Rebut P H et al 1989 Proc. 12th Int. Conf. of Plasma Physics and Controlled Fusion Research (Nice, 1988) vol 2 (Vienna: IAEA) p 191), which predicts well Ohmic and standard ECH discharges on TCV. The improved confinement is attributed to a hollow current density profile producing a reversed shear profile creating an electron internal transport barrier. We relate the strength of the barrier to the depth of the hollow current density profile and the volume enclosed by the radial location of the peak current density. The rho(T)(*) (Tresset G et al 2002 Nucl. Fusion 42 520) criterion is used to evaluate the performance of the barrier relative to changes in the ECH parameters or the addition of Ohmic current, which aid in identifying the control parameters available for improving either the strength or volume of the barrier for enhanced performance. A figure of merit for the global scaling factor is used that scales the confinement enhancement as the product of the barrier volume and strength.

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Type
research article
DOI
10.1088/0741-3335/46/5A/030
Web of Science ID

WOS:000221876300031

Author(s)
Henderson, M. A.  
Behn, R.  
Coda, S.  
Condrea, I.  
Duval, B. P.  
Goodman, T. P.  
Karpushov, A.  
Martin, Y.  
Martynov, A.  
Moret, J. M.  
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Date Issued

2004

Published in
Plasma Physics and Controlled Fusion
Volume

46

Start page

A275

End page

A284

Subjects

ITER

Note

Suppl. 5A

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CRPP  
SPC  
Available on Infoscience
April 16, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/22081
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