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Field reversal effects on divertor plasmas under radiative and detached conditions in JT-60U

N. Asakura, H. Hosogane, S. Tsuji-Iio, K. Itami, K. Shimizu, M. Shimada1996年被引用 43Nuclear FusionIF 3出版社

Reversal effects of the toroidal field Bt on the principal divertor plasma parameters were investigated under radiative and detached divertor conditions in L mode discharges. The ion flux to the inboard separatrix strike point decreased before a MARFE occurred, irrespective of the ion Del B drift direction. The local electron temperature, Te, div, decreased to around 10 eV. The maximum fraction of power radiated in the divertor was comparable between the two directions of Bt. With the power flowing into the two divertor fans being slightly larger on the outboard than on the inboard, a nearly symmetric in-out heat load was observed for the ion Del B drift away from the target. This was due to the outboard enhanced asymmetries in the particle flux and radiation loss distributions. From the viewpoint of in-out symmetry in the target heat load and Te, div, operation with the ion Del B drift away from the target plate is desirable as long as the attached divertor condition is maintained. On the contrary, during the MARFE, although deterioration of the energy confinement as well as the increase in the fuelling efficiency were comparable, for the ion Del B drift towards the target the plasma did not detach completely, and the strong in-out asymmetry in the particle recycling was relaxed to a relatively symmetric distribution. From the viewpoint of particle exhaust to the divertor, operation with the ion Del B drift towards the target is favourable

日本語訳

反転効果のトロイダル磁場B_tが主ダイバータプラズマパラメータに及ぼす影響を、Lモード放電における放射型ダイバータ状態および非放射型ダイバータ状態の条件下で調査した。イオンB×∇Bドリフト方向にかかわらず、MARFE発生前に内側セパラトリックス打ち込み点へのイオン束が減少した。このとき、局所電子温度T_e,divは約10 eVまで低下した。ダイバータにおける放射損失の最大割合は、両方のB_t方向で同等であった。イオンB×∇Bドリフトがターゲットから離れる方向の場合、ダイバータへの流入電力は外側でわずかに大きかったが、粒子束と放射損失分布の非対称性が外側で増強された結果、内外の熱負荷はほぼ対称となった。ターゲット熱負荷とT_e,divの内外対称性の観点からは、ダイバータが非放射型状態を維持する限り、イオンB×∇Bドリフトがターゲットから離れる方向の運転が望ましい。一方、MARFE発生中は、エネルギー閉じ込めの劣化と燃料補給効率の向上は同等であったが、イオンB×∇Bドリフトがターゲットに向かう方向ではプラズマが完全には非放射型状態に至らず、粒子リサイクリングの強い内外非対称性が比較的対称な分布へと緩和された。ダイバータへの粒子排気の観点からは、イオンB×∇Bドリフトがターゲットに向かう方向の運転が有利である。

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DivertorJT-60UDivertor plasma
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