Published February 1982 | Version v1
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Neutral-beam deposition in large, finite-beta noncircular tokamak plasmas

Description

A parametric pencil beam model is introduced for describing the attenuation of an energetic neutral beam moving through a tokamak plasma. The nonnegligible effects of a finite beam cross section and noncircular shifted plasma cross sections are accounted for in a simple way by using a smoothing algorithm dependent linearly on beam radius and by including information on the plasma flux surface geometry explicitly. The model is benchmarked against more complete and more time-consuming two-dimensional Monte Carlo calculations for the case of a large D-shaped tokamak plasma with minor radius a = 120 cm and elongation b/a = 1.6. Deposition profiles are compared for deuterium beam energies of 120 to 150 keV, central plasma densities of 8 x 1013 - 2 x 1014 cm-3, and beam orientation ranging from perpendicular to tangential to the inside wall

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS., PC A03/MF A01 as DE82008146.

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Publishing Information

Imprint Pagination
37 p.
Report number
ORNL/TM--7658