Published 1982 | Version v1
Book

Route analysis for MHD equilibria

  • 1. Tokyo Univ. (Japan). Coll. of General Education

Description

In Tokamak facilities which are promising in nuclear fusion reactor development, the plasma in the core is often described by MHD approximation. Specifically, since an axisymmetric torus is approximately assumed as the first wall (shell) shape in actual Tokamak facilities, the Grad-Shafranov equation to be satisfied by an axisymmetric equilibrium solution for ideal MHD fluid must be solved, and the characteristics of its solution must be clarified. This paper shows the outline of the numerical calculation which employs both the incremental method taking the particular incremental nodal point values as the control parameters and the interaction method in accordance with Newton method at the same time, the analysis objective being a non-linear eigenvalue problem dealing the boundary of plasma region with surrounding vacuum region as the free boundary. Next, the detailed route analysis of the equilibrium solution is performed, utilizing the above numerical calculation technique, to clarify the effect of shell shape on the behaviour of the equilibrium solution. As the shape of the shell, a rectangular section torus, which have a notch depression at a part of the shell inner boundary, is considered. In the paper, the fundamental MHD equation and its approximate solution by the finite element method, the behaviour of plasma equilibrium solution in a shell having a notch, and the effect of notch shapes on plasma behaviour are described. This analysis verifies the effectiveness of the calculation method. (Wakatsuki, Y.)

Additional details

Additional titles

Original title (Japanese)
Dai-san-kai nagare no yugen yosoho kaiseki shinpojiumu hobunshu.

Publishing Information

Publisher
Nippon Kagaku Gijutsu Renmei.
Imprint Place
Tokyo (Japan)
Imprint Title
Proceedings of the symposium on finite element methods in flow problems, JUSE
Imprint Pagination
206 p.
Journal Page Range
p. 159-166.

Conference

Title
3. symposium on finite element methods in flow problems, JUSE.
Dates
30 Nov - 1 Dec 1981.
Place
Tokyo (Japan).

Optional Information

Notes
Imprint:Dai-san-kai nagare no yugen yosoho kaiseki shinpojiumu hobunshu.