Published March 1987 | Version v1
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MHD equilibrium with toroidal rotation

Description

The present work attempts to formulate the equilibrium of axisymmetric plasma with purely toroidal flow within ideal MHD theory. In general, the inertial term Rho(v.Del)v caused by plasma flow is so complicated that the equilibrium equation is completely different from the Grad-Shafranov equation. However, in the case of purely toroidal flow the equilibrium equation can be simplified so that it resembles the Grad-Shafranov equation. Generally one arbitrary two-variable functions and two arbitrary single variable functions, instead of only four single-variable functions, are allowed in the new equilibrium equations. Also, the boundary conditions of the rotating (with purely toroidal fluid flow, static - without any fluid flow) equilibrium are the same as those of the static equilibrium. So numerically one can calculate the rotating equilibrium as a static equilibrium. (author)

Availability note (English)

Also available from: Royal Inst. of Techn. Stockholm (Sweden).

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Additional details

Publishing Information

Imprint Pagination
19 p.
Report number
TRITA-PFU--87-03

INIS

Country of Publication
Sweden
Country of Input or Organization
Sweden
INIS RN
19056672
Subject category
S30: DIRECT ENERGY CONVERSION;
Descriptors DEI
GRAD-SHAFRANOV EQUATION; MAGNETIC CONFINEMENT; MHD EQUILIBRIUM; PLASMA CONFINEMENT; ROTATING PLASMA
Descriptors DEC
CONFINEMENT; DIFFERENTIAL EQUATIONS; EQUATIONS; EQUILIBRIUM; PARTIAL DIFFERENTIAL EQUATIONS; PLASMA