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Non-inductively current driven H mode with high beta N and high beta p values in JT-60U

Y. Kamada, K. Ushigusa, O. Naito, Y. Neyatani, T. Ozeki, K. Tobita, S. Ishida, R. Yoshino, M. Kikuchi, M. Mori1994年被引用 52Nuclear FusionIF 3出版社

Attainable βp and βN values were widely improved in JT-60U by peaking of the current profile and broadening of the pressure profile. In a quasi-steady state of ELMyy H mode, βp approximately 2.5-3, βN approximately 2.5-3.1 and H factor approximately 1.8-2.2 were sustained for approximately 1 s simultaneously under the full current drive condition (bootstrap current 60%, beam driven current 48% at Ip = 0.5 MA). In a transient case, the maximum values of βp, βp and βN reached 4.7, 1.2 and 4.2, respectively. The achievable βp value increases systematically with safety factor at the edge. To obtain these improved high β plasmas, it is essential to control MHD activities; suppression of βp collapse and medium m/n (poloidal mode number/toroidal mode number) modes by the modification in current and pressure profiles and control of ELM activity by suitable selection of the heating power

日本語訳

JT-60Uにおいて、電流分布のピーキングと圧力分布のブロード化により、達成可能なβp値およびβN値は大幅に向上した。ELMy Hモードの準定常状態では、βp≒2.5〜3、βN≒2.5〜3.1、H因子≒1.8〜2.2が、完全電流駆動条件下(ブートストラップ電流60%、ビーム駆動電流48%、Ip=0.5 MA)で約1秒間同時に維持された。過渡状態では、βp、βNの最大値はそれぞれ4.7、4.2に達した。達成可能なβp値は、エッジでの安全係数とともに系統的に増加する。これらの改善された高βプラズマを得るためには、MHD活動の制御が不可欠であり、電流分布および圧力分布の変更によるβp崩壊と中程度のm/n(ポロイダルモード数/トロイダルモード数)モードの抑制、ならびに加熱パワーの適切な選択によるELM活動の制御が必要である。

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Current driveJT-60U
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