Operation at high performance in optimized shear plasmas in JET
A C C Sips; Y Baranov; C D Challis; G A Cottrell; L-G Eriksson; C Gormezano; C Gowers; C M Greenfield; J C M de Haas; M von Hellerman; G T A Huysmans; A Howman; R König; E A Lazarus; T Luce; P Nielsen; D O'Brien; B W Rice; G Sadler; F X Söldner; M F Stamp; E J Strait; B J D Tubbing; M Wade; D J Ward
Журнал:
Plasma Physics and Controlled Fusion
Дата:
1998-06-01
Аннотация:
Heating during the early part of the current rise phase gives a low or negative magnetic shear (= (dq/dr)) in the centre of JET plasmas. Under these conditions the confinement improves with high additional heating power heating during the current ramp-up phase of the discharge. The reduction in the transport manifests itself as a peaking of the profiles with a large gradient region near = 0.55. The best discharges have no transport barrier at the edge of the plasma (L-mode). This allows central power deposition by the neutral beams in JET. A control of the plasma pressure, using feedback of the additional heating power in real-time, minimizes the impact of magnetohydrodynamic instabilities. As a result, these discharges achieve the highest D-D neutron rates in JET; , with , and .
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