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A pressure profile analysis of high-beta ISX-B tokamak plasmas using MHD equilibrium geometry

R.M. Wieland, H.C. Howe, E.A. Lazarus, M. Murakami, C.E. Thomas1983年被引用 18Nuclear FusionIF 3出版社

The paper describes a method, as implemented in the computer code ZORNOC, for the analysis of high-beta, non-circular ISX-B tokamak plasma profiles. Thomson scattering electron temperature and density profiles, obtained at a fixed time into the discharge, are used as a basis for performing a complete energy analysis of the plasma and for obtaining confinement parameters assuming steady-state conditions. Self-consistent models for both magnetohydrodynamic equilibrium and ion power balance are used to obtain internal flux surface and ion temperature profiles, respectively, consistent with all the known diagnostic data. Using boundary conditions consistent with poloidal magnetic measurements, a current profile parameterization is obtained that is consistent with the observed location of the q = 1 surface as indicated by soft X-ray diagnostics. A specific high-beta discharge is analysed in order to illustrate the procedure.

日本語訳

本論文は、高ベータ・非円形ISX-Bトカマクプラズマの解析のための、計算機コードZORNOCに実装された手法について述べる。放電中の固定時刻において得られたトムソン散乱による電子温度・密度分布を基礎として、プラズマの全エネルギー解析を実施し、定常状態を仮定した閉じ込めパラメータを求める。既知の全診断データと整合するように、磁気流体平衡とイオン出力バランスの両者に対する自己無撞着モデルを用いて、内部磁気面分布およびイオン温度分布をそれぞれ求める。ポロイダル磁気測定と整合する境界条件を用いることにより、軟X線診断によって示されるq=1面の観測位置と整合する電流分布パラメータ化が得られる。手順を例示するため、特定の高ベータ放電の解析を行う。

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MagnetohydrodynamicsISX-B
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