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Abstract. Current drive capability of negative-ion-based NBI (N-NBI) in
JT-60U has been extended to the reactor relevant regime. Driven current
profile and current drive efficiency have been evaluated in the high
temperature regime of central electron temperature
Te(0) 10keV, and reasonable agreement with
theoretical prediction has been confirmed in this regime. N-NB driven
current reached near
1MA with injection power of 3.75MW at beam
energy of 360keV. The current drive efficiency of
1.55×1019Am- 2W- 1 approaching to the ITER
requirement was achieved in the high
H mode plasma with
Te(0)
13keV. This current drive performance
realized the sustainment of high beta (
= 2.5) and high
confinement (
HHy2 = 1.4) plasma in full current-driven
condition at the plasma current of 1.5MA. The influence of instabilities on
N-NB current drive was studied. When a burst like instability driven by N-NB
occurred in the central region, reductions in loop voltage near magnetic
axis and neutron production rate due to loss of beam ions were observed
although the lost driven current was at most
7% of the total driven
current. When neoclassical tearing instability appeared in high beta
plasmas, loss of beam ions was enhanced with increasing activity of
instability and depended on the location of instability.
IAEA 2001