Characteristics of the TFTR limiter H-mode: The transition, ELMs, transport and confinement
Creators
- Bush, C.E.1
- Bretz, N.2
- Nazikian, R.2
- Stratton, B.C.2
- Synakowski, E.2
- Taylor, G. Budny2
- Ramsey, A.T.2
- Scott, S.D.2
- Bell, M.2
- Bell, R.2
- Biglari, H.2
- Bitter, M.2
- Darrow, D.S.2
- Efthimion, P.2
- Fredrickson, E.D.2
- Hill, K.2
- Hsuan, H.2
- Kilpatrick, S.2
- McGuire, K.M.2
- Manos, D.2
- Mansfield, D.2
- Medley, S.S.2
- Mueller, D.2
- Park, H.2
- Paul, S.2
- Sabbagh, S.2
- Schivell, J.2
- Thompson, M.2
- Towner, H.H.2
- Wieland, R.M.2
- Zarnstorff, M.C.2
- Zweben, S.2
- Fonck, R.3
- Nagayama, Y.4
- Princeton Univ., NJ (United States). Plasma Physics Lab
- 1. Oak Ridge National Lab., TN (United States)
- 2. Princeton Univ., NJ (United States). Plasma Physics Lab.
- 3. Wisconsin Univ., Madison, WI (United States)
- 4. Tokyo Univ. (Japan)
Description
H-Modes obtained through transitions from the supershot regime have been studied on TFTR. The characteristics of these H-modes are similar to those found on other tokamaks with one main exception, the density prof:des can be highly peaked. In the best cases the enhanced confinement in the core of the initial supershot is retained in the H-mode phase, while the confinement in a broad edge region is enhanced. Thus in TFTR, all of the important physics of H-modes such as transitions, enhanced edge confinement, ELMs and other phenomena are studied in a large circular limiter tokamak with the added feature of centrally peaked density profiles and the advantage of an extensive set of diagnostics. The threshold power for the transition is found to be a linear function of plasma current. Transitions and ELMs are affected by the mix of co-and counter-neutral beam injection (NBI) and by perturbations introduced by pellet injection, gas puffing, and current ramping before and during NBI. Fluctuations near both transition and ELM events have been characterized. High frequency magnetic fluctuations in the range ≥ 100--250 kHz usually decrease during the transition. Microwave scattering spectra of density fluctuations in the plasma edge show a feature at high frequency during the H-mode, which is not observed in the plasma core and which is consistent with an edge poloidal rotation velocity, Vθ, of ∼ 104 m/s. The fluctuations begin at the transition, propagate in the direction of electron diamagnetic drift, and have modulation correlated with ELMs. Several TFTR H-modes showed a modest improvement in confinement over that of the supershots from which they originated, and an understanding of these may eventually lead to a plasma with the combined advantages of both the supershot and the H-mode. The characteristics and physics of the TFTR H-modes are considered relative to other tokamaks and in light of various theoretical studies
Availability note (English)
MF available from INIS under the Report Number; OSTI as DE93005724; NTIS; INIS; US Govt. Printing Office Dep.Files
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Additional details
Publishing Information
- Imprint Pagination
- 72 p.
- Report number
- PPPL--2863
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 24040458
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY; S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Descriptors DEI
- CHARGED-PARTICLE TRANSPORT; CONFINEMENT TIME; EDGE LOCALIZED MODES; ELECTRON DENSITY; ELECTRON TEMPERATURE; FLUCTUATIONS; H-MODE PLASMA CONFINEMENT; LIMITERS; NEUTRAL ATOM BEAM INJECTION; TFTR TOKAMAK
- Descriptors DEC
- BEAM INJECTION; CLOSED PLASMA DEVICES; CONFINEMENT; INSTABILITY; PLASMA CONFINEMENT; PLASMA INSTABILITY; PLASMA MACROINSTABILITIES; RADIATION TRANSPORT; THERMONUCLEAR DEVICES; TOKAMAK DEVICES; VARIATIONS
Optional Information
- Contract/Grant/Project number
- Contract AC02-76CH03073
- Funding organization
- USDOE, Washington, DC (United States).