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Particle control in DIII-D with helium glow discharge conditioning

G.L. Jackson, T.S. Taylor, P.L. Taylor1990年被引用 45Nuclear FusionIF 3出版社

Helium glow discharge conditioning of DIII-D is routinely used before every tokamak discharge to desorb hydrogen from the graphite tiles, which are the plasma facing surfaces for the floor, inner wall and top of the vessel. In addition to reducing hydrogen fuelling of the plasma by the graphite surfaces, helium glow discharges are also effective in removing low-Z impurities, primarily in the form of carbon monoxide and hydrocarbons, and this has permitted higher current divertor operation and more rapid recovery from tokamak disruptions. Since the implementation of repetitive helium glow wall conditioning, the parameter space in which tokamak discharges in DIII-D can be obtained has been expanded to include the first observations of limiter H-mode confinement, the Ohmic H-mode with periods of up to 150 ms that are free of edge localized modes, more reliable low q operation with volume averaged beta of up to 9.3%, improved control over locked modes and plasma discharges at lower electron density.

日本語訳

DIII-Dのヘリウムグロー放電コンディショニングは、毎回のトカマク放電前に、容器の床、内壁、および天井のプラズマ対向面であるグラファイトタイルから水素を脱離させるために日常的に使用されている。ヘリウムグロー放電は、グラファイト表面によるプラズマへの水素供給を低減することに加えて、主に一酸化炭素および炭化水素の形態の低Z不純物の除去にも効果的であり、これにより高電流でのダイバータ運転と、ディスラプションからのより迅速な回復が可能となった。反復的なヘリウムグロー壁コンディショニングの導入以降、DIII-Dにおいて達成可能なトカマク放電のパラメータ空間は拡大し、エッジ局在モードのない最大150ミリ秒の周期を有するオーミックHモードの初観測、体積平均ベータ値が最大9.3%のより高ベータでの信頼性の高い低q運転、ロックモードの改善された制御、およびより低い電子密度でのプラズマ放電が実現された。

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diii-d高精度(タイトル一致)

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DIII-DHeliumGlow discharge
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