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Resistive wall stabilized operation in rotating high beta NSTX plasmas

Sabbagh, S. A. (author)
Columbia University in the City of New York
Sontag, A. C. (author)
Columbia University in the City of New York
Bialek, J. (author)
Columbia University in the City of New York
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Gates, D. A. (author)
Princeton University
Glasser, A. H. (author)
Los Alamos National Laboratory
Menard, J. (author)
Princeton University
Zhu, W. (author)
Columbia University in the City of New York
Bell, M. G. (author)
Princeton University
Bell, R. E. (author)
Princeton University
Bondeson, Anders, 1953 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Bush, C. E. (author)
Oak Ridge National Laboratory
Callen, J. D. (author)
University of Wisconsin Madison
Chu, M. S. (author)
General Atomics
Hegna, C. C. (author)
University of Wisconsin Madison
Kaye, S. M. (author)
Princeton University
Lao, L. L. (author)
General Atomics
LeBlanc, B. P. (author)
Princeton University
Liu, Yueqiang, 1971 (author)
Chalmers tekniska högskola,Chalmers University of Technology
Maingi, R. (author)
Oak Ridge National Laboratory
Mueller, D. (author)
Princeton University
Shaing, K. C. (author)
University of Wisconsin Madison
Stutman, D. (author)
Johns Hopkins University
Tritz, K. (author)
Johns Hopkins University
Zhang, C. (author)
Chinese Academy of Sciences
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 (creator_code:org_t)
2006-04-28
2006
English.
In: Nuclear Fusion. - : IOP Publishing. - 1741-4326 .- 0029-5515. ; 46:5, s. 635-644
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The National Spherical Torus Experiment (NSTX) has demonstrated the advantages of low aspect ratio geometry in accessing high toroidal and normalized plasma beta, and βN ≡ 10 8〈βt〉 aB0/Ip. Experiments have reached βt = 39% and βN = 7.2 through boundary and profile optimization. High βN plasmas can exceed the ideal no-wall stability limit, βNno-wall, for periods much greater than the wall eddy current decay time. Resistive wall mode (RWM) physics is studied to understand mode stabilization in these plasmas. The toroidal mode spectrum of unstable RWMs has been measured with mode number n up to 3. The critical rotation frequency of Bondeson-Chu, Ωcrit = ωA/(4q2), describes well the RWM stability of NSTX plasmas when applied over the entire rotation profile and in conjunction with the ideal stability criterion. Rotation damping and global rotation collapse observed in plasmas exceeding βNno-wall differs from the damping observed during tearing mode activity and can be described qualitatively by drag due to neoclassical toroidal viscosity in the helically perturbed field of an ideal displacement. Resonant field amplification of an applied n = 1 field perturbation has been measured and increases with increasing βN. Equilibria are reconstructed including measured ion and electron pressure, toroidal rotation and flux isotherm constraint in plasmas with core rotation ω/ωA up to 0.48. Peak pressure shifts of 18% of the minor radius from the magnetic axis have been reconstructed.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Maskinteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering (hsv//eng)

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