Control of plasma shape and performance of the PBX-M tokamak experiment in high-βt /high-βp regimes
Creators
- Bell, R.E.1
- Asakura, N.1
- Bernabei, S.1
- Chance, M.S.1
- Duperrex, P.1
- Fonck, R.J.1
- Gammel, G.M.1
- Greene, G.1
- Hatcher, R.E.1
- Holland, A.1
- Jardin, S.C.1
- Jiang, T.1
- Kaita, R.1
- Kaye, S.M.1
- Kessel, C.E.1
- Kugel, H.W.1
- LeBlanc, B.1
- Levinton, F.M.1
- Okabayashi, M.1
- Ono, M.1
- Paul, S.F.1
- Powell, E.T.1
- Qin, Y.1
- Roberts, D.W.1
- Sauthoff, N.R.1
- Sesnic, S.1
- Takahashi, H.1
- 1. Princeton Plasma Physics Laboratory, Princeton University, Princeton, New Jersey 08543 (USA)
Description
The highly indented plasmas of the PBX-M tokamak experiment [Plasma Physics and Controlled Nuclear Fusion Research (IAEA, Vienna, 1989), Vol. 1, p. 97] have reached plasma regimes of both high volume-averaged beta (βt), and high-beta poloidal (βp), and show evidence of the suppression of external surface modes by the passive stabilizing system. Values of βt up to 4.0 I/aB (% MA/m T) with Ti(0)∼4 keV have been obtained. A magnetohydrodynamic analysis of plasmas with βp=2.0 indicates that these plasmas are near the threshold of the second stability regime. A value of βt of 6.8% has been reached with Ti(0)>5 keV and an indentation of 28%. Control of plasma shape is accomplished with a feedback system that uses a moment expansion about a single equilibrium and is augmented by time-dependent waveforms to redefine plasma shape. Diagnostics to measure the safety factor q have been developed and used to make accurate measurements of q(r) and to verify changes made in q(0)
Additional details
Publishing Information
- Journal Title
- Physics of Fluids B
- Journal Volume
- 2
- Journal Issue
- 6
- Series
- Phys. Fluids B.
- Journal Page Range
- 1271-1279
- ISSN
- 0899-8221
- CODEN
- PFBPE
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 21073338
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Descriptors DEI
- HIGH-BETA PLASMA; INHIBITION; MAGNETOHYDRODYNAMICS; OPTIMIZATION; OSCILLATION MODES; PBX DEVICES; PERFORMANCE; PLASMA DIAGNOSTICS; SHAPE; STABILITY; THRESHOLD ENERGY; VOLUME
- Descriptors DEC
- CLOSED PLASMA DEVICES; ENERGY; FLUID MECHANICS; HYDRODYNAMICS; MECHANICS; PLASMA; THERMONUCLEAR DEVICES; TOKAMAK DEVICES