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L-H power threshold studies in JET with Be/W and C wall

Authors :
M. Groth
D. Van Eester
C. Bourdelle
K. McCormick
E. Delabie
E. Lerche
V. Bobkov
E. R. Solano
J. Flanagan
Jet-Efda Contributors
C. Reux
Isabel L. Nunes
C. F. Maggi
Y. Andrew
M. Lehnen
M.F. Stamp
S. Marsen
G. CalabrĂ²
A. Czarnecka
F.G. Rimini
N. C. Hawkes
T. M. Biewer
E. de la Luna
M. Brix
JET EFDA Contributors
Source :
Nuclear Fusion, 54, 023007, Nuclear Fusion
Publication Year :
2014

Abstract

A comparison of the L-H power threshold (P-thr) in JET with all carbon, JET-C, and beryllium/tungsten wall (the ITER-like choice), JET-ILW, has been carried out in experiments with slow input power ramps and matched plasma shapes, divertor configuration and I-P/B-T pairs. The low density dependence of the L-H power threshold, namely an increase below a minimum density n(e,min), which was first observed in JET with the MkII-GB divertor and C wall and subsequently not observed with the current MkII-HD geometry, is observed again with JET-ILW. At plasma densities above n(e,min), P-thr is reduced by similar to 30%, and by similar to 40% when the radiation from the bulk plasma is subtracted (P-sep), with JET-ILW compared to JET-C. At the L-H transition the electron temperature at the edge, where the pedestal later develops, is also lower with JET-ILW, for a given edge density. With JET-ILW the minimum density is found to increase roughly linearly with magnetic field, n(e,min) similar to B-T(4/5), while the power threshold at the minimum density scales as P-sep,P-min similar to B-T(5/2). The H-mode power threshold in JET-ILWis found to be sensitive both to variations in main plasma shape (P-sep decreases with increasing lower triangularity and increases with upper triangularity) and in divertor configuration. When the data are recast in terms of P-sep and Z(eff) or subdivertor neutral pressure a linear correlation is found, pointing to a possible role of Z(eff) and/or subdivertor neutral pressure in the L-H transition physics. Depending on the chosen divertor configuration, P-thr can be up to a factor of two lower than the ITPA scaling law for densities above n(e,min). A shallow edge radial electric field well is observed at the L-H transition. The edge impurity ion poloidal velocity remains low, close to its L-mode values

Details

Language :
English
Database :
OpenAIRE
Journal :
Nuclear Fusion, 54, 023007, Nuclear Fusion
Accession number :
edsair.doi.dedup.....f528e9e7d91aa4ca48ac525419aacc3a