Beta limits in long-pulse tokamak discharges

The maximum normalized beta achieved in long-pulse tokamak discharges at low collisionality falls significantly below both that observed in short pulse discharges and that predicted by the ideal MHD theory. Recent long-pulse experiments, in particular those simulating the International Thermonuclear Experimental Reactor (ITER) [M. Rosenbluth et al., Plasma Physics and Controlled Nuclear Fusion (International Atomic Energy Agency, Vienna, 1995), Vol. 2, p. 517] scenarios with low collisionality nu(e)*, are often limited by low-m/n nonideal magnetohydrodynamic (MHD) modes. The effect of saturated MHD modes is a reduction of the confinement time by 10%-20%, depending on the island size and location, and can lead to a disruption. Recent theories on neoclassical destabilization of tearing modes, including the effects of a perturbed helical bootstrap current, are successful in explaining the qualitative behavior of the resistive modes and recent results are consistent with the size of the saturated islands. Also, a strong correlation is observed between the onset of these low-m/n modes with sawteeth, edge localized modes (ELM), or fishbone events. consistent with the seed island required by the theory. We will focus on a quantitative comparison between both the conventional resistive and neoclassical theories, and the experimental results of several machines, which have all observed these low-min nonideal modes. This enables us to single out the key issues in projecting the long-pulse beta limits of ITER-size tokamaks and also to discuss possible plasma control methods that can increase the soft beta limit, decrease the seed perturbations, and/or diminish the effects on confinement. (C) 1997 American Institute of Physics.

[1]  R. Fitzpatrick,et al.  Rotation and Locking of Magnetic Islands , 1997 .

[2]  E. J. Strait,et al.  The collisionality dependence of tokamak -limits , 1996 .

[3]  T. Gianakon,et al.  Computational modeling of neoclassical and resistive magnetohydrodynamic tearing modes in tokamaks , 1996 .

[4]  A. Bondeson,et al.  The CHEASE code for toroidal MHD equilibria , 1996 .

[5]  L. Zakharov,et al.  A threshold for excitation of neoclassical tearing modes , 1996 .

[6]  H. R. Wilson,et al.  Threshold for neoclassical magnetic islands in a low collision frequency tokamak , 1996 .

[7]  McGuire,et al.  Observation of nonlinear neoclassical pressure-gradient-driven tearing modes in TFTR. , 1995, Physical review letters.

[8]  Lao,et al.  Wall stabilization of high beta tokamak discharges in DIII-D. , 1995, Physical review letters.

[9]  R. Fitzpatrick,et al.  Helical temperature perturbations associated with tearing modes in tokamak plasmas , 1995 .

[10]  A. Bondeson,et al.  Linear Stability of Resistive MHD Modes , 1994 .

[11]  E. D. Fredrickson,et al.  Transport effects of low (m,n) MHD modes on TFTR supershots , 1994 .

[12]  X. Garbet,et al.  Kinetic theory of magnetic island stability in tokamaks , 1994 .

[13]  E. J. Strait,et al.  Stability of high beta tokamak plasmas , 1994 .

[14]  C. Hegna,et al.  STABILITY OF TEARING MODES IN TOKAMAK PLASMAS , 1994 .

[15]  T. Gianakon,et al.  Magnetic islands and their effects in Tokamak plasmas , 1993 .

[16]  J. Snipes,et al.  Global Sawtooth Instability Measured by Magnetic Coils in the Jet Tokamak , 1992 .

[17]  C. Bishop,et al.  On the difficulty of determining tearing mode stability , 1991 .

[18]  J. Callen,et al.  Global energy confinement degradation due to macroscopic phenomena in tokamaks , 1990 .

[19]  Steven Paul Hirshman,et al.  Finite‐aspect‐ratio effects on the bootstrap current in tokamaks , 1988 .

[20]  Tadashi Sekiguchi,et al.  Plasma Physics and Controlled Nuclear Fusion Research , 1987 .

[21]  R. Carrera,et al.  Island bootstrap current modification of the nonlinear dynamics of the tearing mode , 1986 .

[22]  B. A. Carreras,et al.  Numerical calculations using the full MHD equations in toroidal geometry , 1986 .

[23]  Richard D Hazeltine,et al.  Nonlinear dynamics of magnetic islands with curvature and pressure , 1984 .

[24]  B. V. Waddell,et al.  Saturation of the tearing mode , 1976 .

[25]  John L. Johnson,et al.  Resistive instabilities in general toroidal plasma configurations , 1975 .

[26]  Paul H. Rutherford,et al.  Nonlinear growth of the tearing mode , 1973 .