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

Geodesic acoustic mode evolution in L-mode approaching the L–H transition on JET

C Silva, J C Hillesheim, L Gil, C Hidalgo, C F Maggi, L Meneses, E R Solano, JET Contributors2019年Plasma Physics and Controlled FusionIF 2.2出版社

Geodesic acoustic modes (GAMs) may generate strong oscillations in the radial electric field and therefore are considered as a possible trigger mechanism for the L–H transition. This contribution focuses on the characterization of GAMs in JET plasmas when approaching the L–H transition aiming at understanding their possible role in triggering the transition. GAM and turbulence characteristics are measured at the plasma edge using Doppler backscattering for different plasma current and line-averaged densities. The radial location of the GAM often moves further inside when neutral beam injection is applied possibly as a response to changes in the turbulence drive. GAMs are found to have modest amplitude at the transition except for high density discharges where GAMs are stronger, suggesting that the GAM is not responsible for facilitating the transition as the L–H power threshold also increases with density in the high density branch of the L–H transition. Our results suggest that the GAM alone does not play a leading role for causing the L–H transition at JET.

日本語訳

測地音響モード(GAM)は、径方向電場に強い振動を引き起こす可能性があり、したがってL-H遷移の引き金となる機構の一つと考えられている。本稿では、L-H遷移に近づく際のJETプラズマにおけるGAMの特性評価に焦点を当て、遷移の引き金におけるそれらの可能な役割の理解を目指す。GAMおよび乱流の特性は、異なるプラズマ電流および線平均密度に対して、ドップラー後方散乱を用いてプラズマ端部で測定される。GAMの径方向位置は、中性粒子ビーム入射が適用されると、しばしばより内側へ移動するが、これはおそらく乱流駆動の変化への応答である。GAMは、遷移時において控えめな振幅を示すが、高密度放電ではGAMがより強く、L-H遷移の高密度領域ではL-H出力閾値も密度とともに増加することから、GAMが遷移を促進する役割を担っているわけではないことが示唆される。我々の結果は、GAM単独ではJETにおけるL-H遷移を引き起こす主導的役割を果たさないことを示唆している。

装置

jet高精度(タイトル一致)

wiki

JETL-modeAcoustic modeGeodesic acoustic modeL-H transition
この論文にはまだAI要約がありません。

関連論文

Physics of GAM-initiated L–H transition in a tokamak

2017Plasma Physics and Controlled Fusion

Recent progress in understanding the L–H transition physics from ASDEX Upgrade

2012Plasma Physics and Controlled Fusion

Edge plasma dynamics during L-H transition in the JFT-2M tokamak

2015Nuclear Fusion

Experimental investigation of geodesic acoustic modes on JET using Doppler backscattering

2016Nuclear Fusion

Electron density evolution after L–H transitions and the L–H/H–L cycle in ASDEX Upgrade

2012Nuclear Fusion

Survey of the H-mode power threshold and transition physics studies in ASDEX Upgrade

2013Nuclear Fusion

Investigation of magnetic fluctuations in L-H and H-L transition dynamics on DIII-D

2025Plasma Physics and Controlled Fusion

The role of turbulence–flow interactions in L- to H-mode transition dynamics: recent progress

2017Nuclear Fusion

Transition dynamics and confinement scaling in COMPASS-D H mode plasmas

2001Nuclear Fusion

Relating the L–H power threshold scaling to edge turbulence dynamics

2013Nuclear Fusion