FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

High beta discharges with neutral beam injection in CHS

S. Okamura, K. Matsuoka, K. Nishimura, K. Tsumori, R. Akiyama, S. Sakakibara, H. Yamada, S. Morita, T. Morisaki, N. Nakajima1995年被引用 46Nuclear FusionIF 3出版社

High beta plasmas with a volume averaged equilibrium beta value of 2.1% were produced in CHS using tangential neutral beam injection. This beta value was achieved with the confinement improvement (reheat mode) observed after turning off strong gas puffing. Wall conditioning with titanium gettering was used to make high density operation (ne ⩽ 8 × 1019 m-3) possible for low magnetic fields (Bt = 0.6 T). The discharges start with the magnetic hill configuration (in vacuum) and finally achieve Mercier stable equilibrium owing to the self-stabilization effect given by the magnetic well which is produced by the plasma pressure. The Shafranov shift was about 40% of a plasma minor radius. Magnetic fluctuations did not increase with increasing plasma pressure when the beta value exceeded 1%. Dynamic poloidal field control was applied to suppress the outward plasma shift with increasing plasma pressure. Such operation gave an additional increase of beta value compared with the constant poloidal field operation

日本語訳

体積平均平衡ベータ値2.1%の高ベータプラズマが、接線方向中性粒子ビーム入射を用いてCHSで生成された。このベータ値は、強いガスパフを止めた後に観測される閉じ込め改善(リヒートモード)によって達成された。チタンゲッタリングによる壁調整を用いて、低磁場(Bt = 0.6 T)での高密度運転(ne ⩽ 8 × 10^19 m^-3)を可能にした。放電は(真空状態での)磁気丘配位で開始し、最終的にプラズマ圧力によって生成される磁気井戸による自己安定化効果によって、Mercier安定平衡を達成する。Shafranovシフトはプラズマ小半径の約40%であった。磁気揺動は、ベータ値が1%を超えると、プラズマ圧力の増加とともに増加しなかった。動的ポロイダル磁場制御を適用して、プラズマ圧力の増加に伴う外向きのプラズマシフトを抑制した。このような運転は、一定ポロイダル磁場運転と比較して、ベータ値の追加的な増加をもたらした。

wiki

Neutral beamNeutral beam injectionCompact Helical System
この論文にはまだAI要約がありません。

関連論文

Studies of currentless, high-beta plasma in the Heliotron E device

1985Nuclear Fusion

Equilibrium of high beta plasma in closed magnetic line system (MBT)

1985Plasma Physics and Controlled Fusion

Wall stabilization of high-beta anisotropic plasmas in an axisymmetric mirror trap

2023Nuclear Fusion

Particle and energy balance analysis of a currentless high beta plasma in Heliotron E

1986Nuclear Fusion

Joint DIII-D/EAST research on the development of a high poloidal beta scenario for the steady state missions of ITER and CFETR

2018Plasma Physics and Controlled Fusion

Progress in extending high poloidal beta scenarios on DIII-D towards a steady-state fusion reactor and impact of energetic particles

2020Nuclear Fusion

Detection of the free boundary plasma shift in a toroidal helical plasma on Heliotron-E

1995Nuclear Fusion

Change of plasma boundaries due to beta in heliotron plasma with helical divertor configuration

2007Plasma Physics and Controlled Fusion

Rotation of edge fluctuations in a high beta , low q tokamak plasma

1996Nuclear Fusion

Overview of confinement and MHD stability in the Large Helical Device

2005Nuclear Fusion