Comparison between Double-Resonant and Non-Resonant Mode Driven Convections in a Stellarator with a Non-Monotonic Rotational Transform : Fluids, Plasmas, and Electric Discharges
スポンサーリンク
概要
- 論文の詳細を見る
For a stellarator (or tokamak) with a non-monotonic rotational transform, both the double resonant and non-resonant interchange type modes become unstable, when the magnetic curvature is unfavorable in a finite region including the zero magnetic shear surface r = r_s. These modes generate convective motions and poloidal shear flows. The non-resonant mode driven convection affects the r≃r_s region significantly, although a decrease of central density is seen. On the other hand, the double-resonant mode driven convection affects the central region for a peaked density profile and a stair-like decrease of the central density is seen. The evolution of the density profile is also correlated with the behavior of the nonlinearly generated poloidal flow.
- 社団法人日本物理学会の論文
- 2001-04-15
著者
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Wakatani Masahiro
Graduate School Of Energy Science Kyoto University
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HAMAGUCHI Satoshi
Graduate School of Energy Science, Kyoto University
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Unemura Takeshi
Graduate School Of Energy Science Kyoto University
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Hamaguchi Satoshi
Graduate School Of Energy Science Kyoto University
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WAKATANI Masahiro
Graduate School of Energy Science, Kyoto University
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