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

Investigation of multifaceted asymmetric radiation from the edge (MARFE) with impurity injection from the upper divertor on the Experimental Advanced Superconducting Tokamak

Yu Luo, Fang Ding, Liang Wang, Yanmin Duan, Tingfeng Ming, Songtao Mao, Yumin Wang, Xiahua Chen, Kedong Li, Dawei Ye2020年Plasma Physics and Controlled FusionIF 2.2出版社

The phenomenon of multifaceted asymmetric radiation from the edge (MARFE) is investigated with impurity gas puff from the upper divertor on the Experimental Advanced Superconducting Tokamak (EAST). A typical process in which dense radiation region in the vicinity of the X point (X-point MARFE) further evolves into MARFE on the high field side (wall MARFE) after the plasma makes a transition from H-mode to L-mode confinement is observed in discharges with the impurity gas seeding. The electron density distribution and evolution in the divertor volume are measured by means of spectroscopy. It is observed in the experiments that the final position of MARFE is related to the ion ∇B drift direction. After the phase difference of n = 1 resonant magnetic perturbation (RMP) change from 90° to 270°, MARFE begins to appear on the high field side, which may be caused by the density pump-out induced by RMP. At the same heating power, the density threshold for MARFE formation is somewhat higher in the Ne seeding discharge than in the Ar seeding discharge. This may be attributed to the fact that the divertor radiation fraction, Prad,div/Prad,main, in the Ne seeding discharge is lower than that in the Ar seeding discharge. In addition, MARFE is successfully suppressed by total radiated energy feedback control in radiative divertor experiments. Therefore, radiation feedback control may play a vital role in avoiding major disruption induced by impurity radiation in radiative divertor experiments.

日本語訳

周辺部における非対称放射(MARFE)の現象を、実験的先端超伝導トカマク(EAST)において上部ダイバータからの不純物ガス入射により調査した。不純物ガス入射を伴う放電において、HモードからLモード閉じ込めへの遷移後に、X点近傍の高密度放射領域(X点MARFE)がさらに高磁場側のMARFE(壁MARFE)へと発展する典型的な過程が観測された。ダイバータ領域における電子密度分布とその時間発展は、分光法により測定された。実験において、MARFEの最終的な位置はイオンの∇Bドリフト方向と関連することが観測された。n = 1共鳴磁気摂動(RMP)の位相差が90°から270°に変化した後、MARFEが高磁場側に現れ始めたが、これはRMPによって誘起された密度ポンプアウトに起因する可能性がある。同じ加熱パワーにおいて、MARFE形成のための密度閾値は、Arガス入射放電よりもNeガス入射放電の方がやや高いことが示された。これは、Neガス入射放電におけるダイバータ放射割合Prad,div/Prad,mainがArガス入射放電よりも低いことに起因すると考えられる。さらに、放射ダイバータ実験において、全放射エネルギー帰還制御によりMARFEが首尾よく抑制された。したがって、放射帰還制御は、放射ダイバータ実験における不純物放射によって誘起される大規模崩壊を回避する上で極めて重要な役割を果たす可能性がある。

装置

east高精度(タイトル一致)

wiki

DivertorImpurity
この論文にはまだAI要約がありません。

関連論文

Hall MHD simulations of MARFE movements in limiter and divertor configurations

2025Nuclear Fusion

Model for access and stability of the X-point radiator and the threshold for marfes in tokamak plasmas

2022Nuclear Fusion

Marfe: an edge plasma phenomenon

1984Nuclear Fusion

Formation of a natural X-point multifaceted asymmetric radiation from the edge in numerical simulations of divertor plasmas

2012Plasma Physics and Controlled Fusion

Improved confinement mode induced by the MARFE on the HT-7 superconducting tokamak

1999Plasma Physics and Controlled Fusion

Investigation of the influence of toroidal field direction on impurity radiation efficiency by SOLPS-ITER simulations with neon seeding for a typical EAST upper single-null configuration

2026Plasma Physics and Controlled Fusion

MARFE movement and density fluctuations after deuterium pellet injections in H-mode plasmas on EAST tokamak

2022Plasma Physics and Controlled Fusion

Divertor plasma behaviors with neon seeding at different locations on EAST with ITER-like divertor

2022Nuclear Fusion

Radiative divertor detachment and impurity transport with nitrogen and neon seeding in KSTAR H-mode plasmas

2026Nuclear Fusion

Radiation losses and global energy balance for Ohmically heated discharges in ASDEX

1982Nuclear Fusion