Murakami density limit in tokamaks and reversed-field pinches
Description
A theoretical upper limit for the density in an ohmically heated tokamak discharge follows from the requirement that the ohmic heating power deposited in the central current-carrying channel exceed the impurity radiative cooling in this critical region. A compact summary of our results gives this limit n/sub M/ for the central density as n/sub M/ = [Z/sub e//(Z/sub e/-1]/sup 1/2/n/sub eo/ (B/sub T//1T)(1m/R) where n/sub eo/ depends strongly on the impurity species and is remarkably independent of the central electron temperature T/sub e/(0). For T/sub e/(0) approx. 1 keV, we have n/sub eo/ = 1.5 x 1014 cm-3 for beryllium, n/sub eo/ = 5 x 1013 cm-3 for oxygen, n/sub eo/ = 1.0 x 1013 cm-3 for iron, and n/sub eo/ = 0.5 x 1013 cm-3 for tungsten. The results agree quantitatively with Murakami's original observations. A similar density limit, known as the I/N limit, exists for reversed-field pinch devices and this limit has also been evaluated for a variety of impurity species
Availability note (English)
MF available from INIS under the Report Number; Available from NTIS, PC A03/MF A01 as DE84009353.Files
15057526.pdf
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Additional details
Publishing Information
- Imprint Pagination
- 34 p.
- Report number
- PPPL--2087
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 15057526
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Descriptors DEI
- ELECTRON TEMPERATURE; IMPURITIES; JOULE HEATING; PLASMA DENSITY; REVERSE-FIELD PINCH; TOKAMAK DEVICES
- Descriptors DEC
- CLOSED PLASMA DEVICES; HEATING; PINCH EFFECT; PLASMA HEATING; THERMONUCLEAR DEVICES