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Current profile control and improvement of current drive efficiency by combined lower hybrid waves in TRIAM-1M

M. Sakamoto, S. Itoh, K.N. Sato, K. Nakamura, H. Zushi, K. Hanada, E. Jotaki, K. Makino, S. Kawasaki, H. Nakashima2000年被引用 12Nuclear FusionIF 3出版社

Current profile control experiments were carried out in TRIAM-1M by the combination of two lower hybrid waves (LHWs) at 8.2 and 2.45 GHz with different spectra of parallel refractive index N||. In the combined lower hybrid current drive (LHCD) discharge, the current drive efficiency was improved by a factor of >1.5 compared with 8.2 GHz LHCD only and 2.45 GHz LHCD only. Measurements of the internal inductance and the radial profile of hard X ray emission indicated that the current profile can be controlled by changing the additional power of the 2.45 GHz LHW to the 8.2 GHz LHCD plasma. The improvement of the current drive efficiency and the modification of the current profile are considered to be attributable to the enhancement of the absorption of lower N|| waves by higher N|| waves in the two kinds of LHWs. Moreover, the controlled current profile can be successfully sustained for about two orders of magnitude longer than the current diffusion time.

日本語訳

電流分布制御実験は、TRIAM-1Mにおいて、異なる平行屈折率N||スペクトルを持つ8.2 GHzおよび2.45 GHzの2種類の低域混成波(LHW)の組み合わせにより実施された。複合低域混成波電流駆動(LHCD)放電において、電流駆動効率は、8.2 GHzのみのLHCDおよび2.45 GHzのみのLHCDと比較して、1.5倍以上向上した。内部インダクタンスおよび硬X線放射の動径分布の測定により、8.2 GHz LHCDプラズマへの2.45 GHz LHWの追加パワーを変化させることで、電流分布を制御できることが示された。電流駆動効率の向上および電流分布の改変は、2種類のLHWにおける高N||波による低N||波の吸収の増強に起因すると考えられる。さらに、制御された電流分布は、電流拡散時間の約2桁長い期間にわたり、良好に維持できることが実証された。

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Current driveLower hybridCurrent profileTRIAM-1M
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