Published January 1986 | Version v1
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ICRF wave propagation and absorption in tokamak and mirror magnetic fields: a full-wave calculation

Description

Global solutions for the ion cyclotron resonant frequency (ICRF) wave fields in a straight tokamak with rotational transform and in a poloidally symmetric mirror are calculated in the cold plasma limit. The component of the wave electric field parallel to B vector is assumed zero. Symmetry in each problem allows Fourier decomposition in one ignorable coordinate, and the remaining set of two coupled, two-dimensional partial differential equations is solved by finite differencing. Energy absorption and antenna impedance are calculated using a simple collisional absorption model. When large gradients in absolute value B along B vector are present in either geometry, ICRF heating at the fundamental ion cyclotron resonance is observed. For the mirror, such gradients are always present. But for the tokamak, the rotational transform must be large enough that B vector . delB greater than or equal to 0(1). For smaller transforms more typical of real tokamaks, only heating at the two-ion hybrid resonance is observed. This suggests that direct resonant absorption at the fundamental ion cyclotron resonance may be possible in stellarators where B vector . delB approx. 0(1) naturally. 13 refs., 23 figs

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MF available from INIS under the Report Number; Available from NTIS, PC A04/MF A01; 1 as DE86007070.

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Publishing Information

Imprint Pagination
68 p.
Report number
ORNL/TM--9788

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Notes
Portions of this document are illegible in microfiche products. Original copy available until stock is exhausted.