Effects of centrifugal modification of magnetohydrodynamic equilibrium on resistive wall mode stability

被引:10
作者
Shiraishi, J. [1 ]
Aiba, N. [2 ]
Miyato, N. [2 ]
Yagi, M. [2 ]
机构
[1] Japan Atom Energy Agcy, Naka, Ibaraki 3110193, Japan
[2] Japan Atom Energy Agcy, Aomori 0393212, Japan
关键词
tokamak; resistive wall mode; plasma; STABILIZATION; TOKAMAKS; SHEAR;
D O I
10.1088/0029-5515/54/8/083008
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
Toroidal rotation effects are self-consistently taken into account not only in the linear magnetohydrodynamic (MHD) stability analysis but also in the equilibrium calculation. The MHD equilibrium computation is affected by centrifugal force due to the toroidal rotation. To study the toroidal rotation effects on resistive wall modes (RWMs), a new code has been developed. The RWMaC modules, which solve the electromagnetic dynamics in vacuum and the resistive wall, have been implemented in the MINERVA code, which solves the Frieman-Rotenberg equation that describes the linear ideal MHD dynamics in a rotating plasma. It is shown that modification of MHD equilibrium by the centrifugal force significantly reduces growth rates of RWMs with fast rotation in the order of M-2 = 0.1 where M is the Mach number. Moreover, it can open a stable window which does not exist under the assumption that the rotation affects only the linear dynamics. The rotation modifies the equilibrium pressure gradient and current density profiles, which results in the change of potential energy including rotational effects.
引用
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页数:8
相关论文
共 15 条
[1]   Resistive Wall Mode Instability at Intermediate Plasma Rotation [J].
Berkery, J. W. ;
Sabbagh, S. A. ;
Betti, R. ;
Hu, B. ;
Bell, R. E. ;
Gerhardt, S. P. ;
Manickam, J. ;
Tritz, K. .
PHYSICAL REVIEW LETTERS, 2010, 104 (03)
[2]   STABILITY ANALYSIS OF RESISTIVE WALL KINK MODES IN ROTATING PLASMAS [J].
BETTI, R ;
FREIDBERG, JP .
PHYSICAL REVIEW LETTERS, 1995, 74 (15) :2949-2952
[3]   STABILIZATION OF EXTERNAL-MODES IN TOKAMAKS BY RESISTIVE WALLS AND PLASMA ROTATION [J].
BONDESON, A ;
WARD, DJ .
PHYSICAL REVIEW LETTERS, 1994, 72 (17) :2709-2712
[4]   Stabilization of the external kink and the resistive wall mode [J].
Chu, M. S. ;
Okabayashi, M. .
PLASMA PHYSICS AND CONTROLLED FUSION, 2010, 52 (12)
[5]   Normal mode approach to modelling of feedback stabilization of the resistive wall mode [J].
Chu, MS ;
Chance, MS ;
Glasser, AH ;
Okabayashi, M .
NUCLEAR FUSION, 2003, 43 (06) :441-454
[6]   EFFECT OF TOROIDAL PLASMA-FLOW AND FLOW SHEAR ON GLOBAL MAGNETOHYDRODYNAMIC MHD MODES [J].
CHU, MS ;
GREENE, JM ;
JENSEN, TH ;
MILLER, RL ;
BONDESON, A ;
JOHNSON, RW ;
MAUEL, ME .
PHYSICS OF PLASMAS, 1995, 2 (06) :2236-2241
[7]   Stabilization of the resistive shell mode in tokamaks [J].
Fitzpatrick, R ;
Aydemir, AY .
NUCLEAR FUSION, 1996, 36 (01) :11-38
[8]   ON HYDROMAGNETIC STABILITY OF STATIONARY EQUILIBRIA [J].
FRIEMAN, E ;
ROTENBERG, M .
REVIEWS OF MODERN PHYSICS, 1960, 32 (04) :898-902
[9]   Resistive wall mode in collisionless quasistationary plasmas [J].
Hu, B ;
Betti, R .
PHYSICAL REVIEW LETTERS, 2004, 93 (10) :105002-1
[10]   Overview of the JT-60SA project [J].
Ishida, S. ;
Barabaschi, P. ;
Kamada, Y. .
NUCLEAR FUSION, 2011, 51 (09)