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

Experiments and gyrokinetic simulations of TCV plasmas with negative triangularity in view of DTT operations

A Balestri, P Mantica, A Mariani, F Bagnato, T Bolzonella, J Ball, S Coda, M Dunne, M Faitsch, P Innocente2024年Plasma Physics and Controlled FusionIF 2.2出版社

Negative triangularity (NT) scenarios in TCV have been compared to positive triangularity (PT) scenarios using the same plasma shapes foreseen for divertor tokamak test tokamak operations. The experiments provided a NT/PT L-mode pair and a PT H-mode with different heating mixes. Regardless of the heating mix, NT L-modes always reached higher values of plasma pressure with respect to PT L-modes with the same power and recovered the central pressure of PT H-mode scenarios heated with up to twice the injected power. The experimental analysis shows that this enhanced performance in NT is due to larger temperature and density gradients close to the edge () and higher values of pressure at the separatrix. Local gyrokinetic simulations agree with the experimental results and are able to catch the effect of shaping alone. Integrated modeling performed with ASTRA-TGLF reproduces reasonably well the PT shot but is not able to fully capture the improvements in the NT shot.

日本語訳

TCVにおける負三角形度(NT)シナリオを、ダイバータ・トカマク試験トカマク運転のために想定された同じプラズマ形状を用いた正三角形度(PT)シナリオと比較した。実験により、異なる加熱混合を伴うNT/PT Lモード対とPT Hモードが得られた。加熱混合にかかわらず、NT Lモードは、同じパワーのPT Lモードと比較して常に高いプラズマ圧力値に達し、最大で2倍の入射パワーで加熱されたPT Hモードシナリオの中心圧力を回復した。実験解析は、NTにおけるこの性能向上が、端近傍のより大きな温度・密度勾配()とセパラトリックスでのより高い圧力値によるものであることを示している。局所ジャイロ運動論シミュレーションは実験結果と一致し、形状のみの効果を捉えることができる。ASTRA-TGLFを用いた統合モデリングはPTショットを合理的に再現するが、NTショットにおける改善を完全に捕捉することはできない。

wiki

GyrokineticTCVTriangularityDTTNegative triangularity
この論文にはまだAI要約がありません。

関連論文

Negative triangularity scenarios: from TCV and AUG experiments to DTT predictions

2024Nuclear Fusion

First-principle based predictions of the effects of negative triangularity on DTT scenarios

2024Nuclear Fusion

Global gyro-kinetic ion temperature gradient and trapped electron mode turbulence modelling in X-point geometry in negative and positive triangularity

2026Plasma Physics and Controlled Fusion

System size scaling of triangularity effects on global temperature gradient-driven gyrokinetic simulations

2024Plasma Physics and Controlled Fusion

Modelling of power exhaust in TCV positive and negative triangularity L-mode plasmas

2024Plasma Physics and Controlled Fusion

Experiments and modelling of negative triangularity ASDEX Upgrade plasmas in view of DTT scenarios

2024Plasma Physics and Controlled Fusion

Edge radial electric field in positive and negative triangularity plasmas in the TCV tokamak

2026Nuclear Fusion

Impact of triangularity on edge transport and divertor detachment: a SOLPS-ITER study of TCV L-mode plasmas

2025Nuclear Fusion

Overview of initial negative triangularity plasma studies on the ASDEX Upgrade tokamak

2023Nuclear Fusion

Enhanced confinement in diverted negative-triangularity L-mode plasmas in TCV

2022Plasma Physics and Controlled Fusion