Abstract
When neon is injected into a tokamak plasma with the aim of reducing the peak heat flow into the SOL by enhanced edge radiation, both Prad and Zeff increase. The ratio of the incremental Prad to the incremental Zeff, ΔPrad/ΔZeff, can change on TEXTOR from 0.1 MW to about 2 MW depending on ne, on Te(a) and on the transport regime. The measured ΔPrad/ΔZeff is higher for I-mode auxiliary heated (higher diffusion) than for OH discharges (lower diffusion), consistent with model calculations. For I-mode discharges ΔPrad/ΔZeff is a decreasing function of Te(a) and it scales approximately as n̄e2. The I-mode regime on TEXTOR, which displays very good energy confinement scaling, can represent, for suitable conditions, a satisfactory compromise between a high τE and not excessive particle confinement.
| Originalsprache | Englisch |
|---|---|
| Seiten (von - bis) | 853-856 |
| Seitenumfang | 4 |
| Fachzeitschrift | Journal of Nuclear Materials |
| Jahrgang | 241-243 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 2 Feb. 1997 |
| Veranstaltung | Proceedings of the 1996 12th International Conference on Plasma-Surface Interactions in Controlled Fusion Devices - Saint-Raphael, Fr Dauer: 20 Mai 1996 → 24 Mai 1996 |
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