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H-Mode Turbulence, PowerThreshold, ELM, and Pedestal Studies in NSTX.
D. W. Johnson
R. Maingi
R. E. Bell
S. M. Kaye
M. G. Bell
D. A. Gates
H. Meyer
D. Mueller
T. Stevenson
A. L. Roquemore
J. A. Boedo
C. E. Bush
B. P. LeBlanc
E. D. Fredrickson
S. J. Zweben
H. W. Kugel
J. E. Menard
R. Kaita
S. A. Sabbagh
T. Munsat
V. A. Soukhanovskii
D. Stutman
N. Nishino
R. Raman
R. J. Maqueda
K. Tritz
T. Biewer
出版
United States. Department of Energy. Office of Science
, 2004
URL
http://books.google.com.hk/books?id=U_zjZwEACAAJ&hl=&source=gbs_api
註釋
High-confinement mode (H-mode) operation plays a crucial role in NSTX [National Spherical Torus Experiment] research, allowing higher beta limits due to reduced plasma pressure peaking, and long-pulse operation due to high bootstrap current fraction. Here, new results are presented in the areas of edge localized modes (ELMs), H-mode pedestal physics, L-H turbulence, and power threshold studies. ELMs of several other types (as observed in conventional aspect ratio tokamaks) are often observed: (1) large, Type I ELMs, (2) ''medium'' Type II/III ELMs, and (3) giant ELMs which can reduce stored energy by up to 30% in certain conditions. In addition, many high-performance discharges in NSTX have tiny ELMs (newly termed Type V), which have some differences as compared with ELM types in the published literature. The H-mode pedestal typically contains between 25-33% of the total stored energy, and the NSTX pedestal energy agrees reasonably well with a recent international multi-machine scaling. We find that the L-H transition occurs on a {approx}100 {micro}sec timescale as viewed by a gas puff imaging diagnostic, and that intermittent quiescent periods precede the final transition. A power threshold identity experiment between NSTX and MAST shows comparable loss power at the L-H transition in balanced double-null discharges. Both machines require more power for the L-H transition as the balance is shifted toward lower single null. High field side gas fueling enables more reliable H-mode access, but does not always lead to a lower power threshold e.g., with a reduction of the duration of early heating. Finally the edge plasma parameters just before the L-H transition were compared with theories of the transition. It was found that while some theories can separate well-developed L- and H-mode data, they have little predictive value.