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Effect of antenna phasing and wall conditioning on ICRH in TEXTOR

A Messiaen, J -M Beuken, L de Keyser, T Delvigne, P Descamps, F Durodie, M Gaigneaux, M Jadoul, R Koch, D Lebeau1989年Plasma Physics and Controlled FusionIF 2.2出版社

Four new low field side antennae grouped in pairs have been installed on TEXTOR. It is found that the interaction with the wall (density rise, impurity generation) is significantly reduced when operating each pair out of phase ( pi ) as opposed to in phase (0). The beneficial effect in the pi configuration is obtained without drop in plasma loading. This experimental property is shown, from theory, to be explained by the judicious choice of the geometrical configuration. A further improvement in the wall interaction is made possible by an appropriate choice of wall conditioning (wall carbonization with liner at 400 degrees C or, above all, boronization). As a result record low values of Prad/Ptotal were achieved during ICRH. The large reduction in wall interaction during ICRH allows routine long pulse (>1 s) ICRH operation at the maximum power level available ( equivalent to 2.5 MW).

日本語訳

TEXTORには、ペアでグループ化された4つの新しい低磁場側アンテナが設置された。各ペアを同位相(0)ではなく逆位相(π)で動作させると、壁との相互作用(密度上昇、不純物生成)が大幅に低減されることが見出された。π配置におけるこの有益な効果は、プラズマ負荷の低下なしに得られる。この実験的性質は、理論から、幾何学的配置の適切な選択によって説明されることが示されている。壁相互作用のさらなる改善は、壁調整の適切な選択(400℃でのライナーによる壁カーボン化、あるいは何よりもボロン化)によって可能となる。その結果、ICRH中にPrad/Ptotalの記録的な低い値が達成された。ICRH中の壁相互作用の大幅な低減により、利用可能な最大電力レベル(2.5 MWに相当)での定常的な長パルス(>1秒)ICRH運転が可能となる。

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textor高精度(タイトル一致)

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Ion cyclotron heatingTEXTORWall conditioning
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