Effects of localized electron heating and current drive on the sawtooth period

被引:114
作者
Angioni, C [1 ]
Goodman, TP [1 ]
Henderson, MA [1 ]
Sauter, O [1 ]
机构
[1] Ecole Polytech Fed Lausanne, Assoc EURATOM Confederat Suisse, Ctr Rech Phys Plasmas, CH-1015 Lausanne, Switzerland
关键词
D O I
10.1088/0029-5515/43/6/308
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Localized electron heating and current drive, like those produced by electron cyclotron heating (ECH) systems, are powerful tools for controlling the sawtooth period. They allow the direct modification of the plasma parameters which determine the sawtooth stability. In this paper we report a set of new experimental results obtained in the TokamakConfiguration Variable (TCV) and a set of related simulations obtained applying a sawtooth period model in a transport code. The TCV device, equipped with a very flexible and powerful ECH system, is specifically suited for this kind of study. In previous works, the experimental behaviour observed in TCV and JET was found consistent with a sawtooth period model first proposed to predict the sawtooth period in burning plasmas. In this paper, new experimental results have motivated a set of simulations which allow the identification of the effects of localized heating and current drive separately. In particular, two heating locations exist at opposite sides of the q = 1 surface which allow most efficiently sawtooth stabilization and destabilization. Moreover, the modelling shows that counter- and co-current drive alone, without the presence of heating, have opposite effects on the sawtooth period at symmetrical locations as compared with the position of the q = I surface. The main features of the experimental behaviour can be explained as due to the modification of the local plasma parameters involved in the linear resistive stability threshold of the internal kink, in particular the dynamics of the magnetic shear at the q = 1 surface. However it is shown that the most effective locations to modify the sawtooth period are not exactly at q = 1.
引用
收藏
页码:455 / 468
页数:14
相关论文
共 48 条
  • [31] Behaviour of central plasma relaxation oscillations during localized electron cyclotron heating on the TCV tokamak
    Pietrzyk, ZA
    Pochelon, A
    Goodman, TP
    Henderson, MA
    Hogge, JP
    Reimerdes, H
    Tran, MQ
    Behn, R
    Furno, I
    Moret, JM
    Nieswand, C
    Rommers, J
    Sauter, O
    van Toledo, W
    Weisen, H
    Porcelli, F
    Razumova, KA
    [J]. NUCLEAR FUSION, 1999, 39 (05) : 587 - 611
  • [32] Macroscopic magnetic islands and plasma energy transport
    Porcelli, F
    Rossi, E
    Cima, G
    Wootton, A
    [J]. PHYSICAL REVIEW LETTERS, 1999, 82 (07) : 1458 - 1461
  • [33] Model for the sawtooth period and amplitude
    Porcelli, F
    Boucher, D
    Rosenbluth, MN
    [J]. PLASMA PHYSICS AND CONTROLLED FUSION, 1996, 38 (12) : 2163 - 2186
  • [34] Modelling of macroscopic magnetic islands in tokamaks
    Porcelli, F
    Airoldi, A
    Angioni, C
    Bruschi, A
    Buratti, P
    Califano, F
    Cirant, S
    Furno, I
    Grasso, D
    Lazzaro, E
    Martynov, AA
    Ottaviani, M
    Pegoraro, F
    Ramponi, G
    Rossi, E
    Sauter, O
    Tebaldi, C
    Tudisco, O
    [J]. NUCLEAR FUSION, 2001, 41 (09) : 1207 - 1218
  • [35] PORCELLI F, 1988, JETIR8816
  • [36] Ramponi G, 1999, AIP CONF PROC, V485, P265, DOI 10.1063/1.59746
  • [37] REBUT PH, 1989, PLASMA PHYS CONTROLL, V2, P191
  • [38] Effect of triangular and elongated plasma shape on the sawtooth stability
    Reimerdes, H
    Pochelon, A
    Sauter, O
    Goodman, TP
    Henderson, MA
    Martynov, A
    [J]. PLASMA PHYSICS AND CONTROLLED FUSION, 2000, 42 (06) : 629 - 639
  • [39] Neoclassical conductivity and bootstrap current formulas for general axisymmetric equilibria and arbitrary collisionality regime
    Sauter, O
    Angioni, C
    Lin-Liu, YR
    [J]. PHYSICS OF PLASMAS, 1999, 6 (07) : 2834 - 2839
  • [40] Neoclassical conductivity and bootstrap current formulas for general axisymmetric equilibria and arbitrary collisionality regime (vol 6, pg 2834, 1999)
    Sauter, O
    Angioni, C
    Lin-Liu, YR
    [J]. PHYSICS OF PLASMAS, 2002, 9 (12) : 5140 - 5140