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Effect of shear equilibrium flow in Tokamak plasma on resistive wall modes

Effect of shear equilibrium flow in Tokamak plasma on resistive wall modes
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摘要 A code named LARWM with non-ideal magnetohydrodynamic equations in cylindrical model is used to describe the instability in Tokamak plasma surrounded by a conducting wall with finite resistivity. We mainly take three factors related to the shear equilibrium plasma flow into consideration to study the stabilizing effect of the shear flow on the resistive wall modes (RWMs). The three factors are the velocity amplitude of flow, the shear rate of flow on plasma surface, and the inertial energy of equilibrium plasma flow. In addition, a local shear plasma flow is also calculated by the LARWM code. Consequently, it is found that the inertial energy of the shear equilibrium plasma flow has an important role in the stabilization of the RWMs. A code named LARWM with non-ideal magnetohydrodynamic equations in cylindrical model is used to describe the instability in Tokamak plasma surrounded by a conducting wall with finite resistivity. We mainly take three factors related to the shear equilibrium plasma flow into consideration to study the stabilizing effect of the shear flow on the resistive wall modes (RWMs). The three factors are the velocity amplitude of flow, the shear rate of flow on plasma surface, and the inertial energy of equilibrium plasma flow. In addition, a local shear plasma flow is also calculated by the LARWM code. Consequently, it is found that the inertial energy of the shear equilibrium plasma flow has an important role in the stabilization of the RWMs.
作者 李莉 刘悦
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第7期352-358,共7页 中国物理B(英文版)
基金 the National Natural Science Foundation of China(Grant Nos.11105065 and 11275041) the National Basic Research Program of China(Grant Nos.2008CB717801,2008CB787103,2009GB105004,and 2010GB106002)
关键词 Tokamak plasma shear equilibrium flow resistive wall modes Tokamak plasma shear equilibrium flow resistive wall modes
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参考文献23

  • 1Troyon F, Gruber R, Saurenmann H, Semenzato S and Succi S 1984 Plasma Phys. Controlled Fusion 26 209.
  • 2Freidberg J P 1987 Ideal Magnetohydrodynamics (New York).
  • 3Bondeson A and Ward D J 1994 Phys. Rev. Lett. 72 2709.
  • 4Betti R and Freidberg J P 1995 Phys. Rev. Lett. 74 2949.
  • 5Gimblett C G 1986 Nucl. Fusion 26 617.
  • 6Boozer A H 1995 Phys. Plasmas 2 4521.
  • 7Smith S P, Jardin S C, Freidberg J P and Guazzotto L 2009 Phys. Plasma 16 084504.
  • 8Wesson J 2004 Tokamaks (3rd edn.) (Oxford: Oxford University Press).
  • 9Strait E J, Taylor T S, Turnbull A D, Ferron J R, Lao L L, Rice B, Sauter O, Thompson S J and Wróblewski D 1995 Phys. Rev. Lett. 74 2483.
  • 10Okabayashi M, Pomphrey N, Manickam J, Warda D J, Bell R E, Hatcher R E, Kaita R, Kaye S M, Kugel H W, LeBlanc B, Levinton F M, Roberts D W, Sesnic S, Sun Y and Takahashi H 1996 Nucl. Fusion 36 1167.

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