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

Direct electron heating experiment on the Aditya tokamak using fast waves in the ion cyclotron resonance frequency range

Kishore Mishra, S V Kulkarni, D Rathi, Atul D Varia, H M Jadav, K M Parmar, B R Kadia, R Joshi, Y S S Srinivas, Raj Singh2011年Plasma Physics and Controlled FusionIF 2.2出版社

Second harmonic heating experiments using fast waves are carried out on the Aditya tokamak in the ion cyclotron resonance frequency (ICRF) range with the help of a 200 kW, 20–40 MHz RF heating system, which is developed indigenously. Significant direct electron heating is observed in a hydrogen plasma. The rise in electron temperature is prompt with the application of RF power and the increment in electron temperature increases linearly with RF power. A corresponding increase in plasma beta and hence an increase in stored diamagnetic energy are also observed in the presence of RF power. The low-Z impurity radiation and electron density do not increase significantly with RF power. The direct electron heating by fast wave in Aditya is also predicted by the ion cyclotron resonance heating code TORIC.

日本語訳

第二高調波加熱を用いた高速波による加熱実験が、イオンサイクロトロン共鳴周波数(ICRF)領域において、国内で開発された200 kW、20–40 MHzのRF加熱システムを用いてAdityaトカマクで実施された。水素プラズマにおいて、顕著な直接電子加熱が観測された。電子温度の上昇はRF出力の印加に対して即時的であり、電子温度の増分はRF出力とともに線形に増加した。プラズマベータの対応する増加、ひいては蓄積反磁性エネルギーの増加も、RF出力の存在下で観測された。低Z不純物放射および電子密度は、RF出力によって有意には増加しなかった。Adityaにおける高速波による直接電子加熱は、イオンサイクロトロン共鳴加熱コードTORICによっても予測されている。

wiki

Fusion Advanced Studies TorusCyclotron resonanceADITYAIon cyclotron resonanceElectron heating
この論文にはまだAI要約がありません。

関連論文

Fast wave heating experiments in the ion cyclotron range of frequencies on ATF

1992Nuclear Fusion

RF experiments on PLT

1986Plasma Physics and Controlled Fusion

Review of Tokamak plasma heating by wave damping in the ion cyclotron range of frequency

1987Plasma Physics and Controlled Fusion

Study and analysis of ion cyclotron resonance heating scenarios for ADITYA-U Tokamak

2025Nuclear Fusion

Experimental investigation of ion cyclotron range of frequencies heating scenarios for ITER's half-field hydrogen phase performed in JET

2012Plasma Physics and Controlled Fusion

Heating experiments in the ion cyclotron range of frequencies on EBT-S

1983Nuclear Fusion

Lower hybrid electron cyclotron heating and associated parallel cooling

1991Plasma Physics and Controlled Fusion

Fokker–Planck studies of high power electron cyclotron heating in tokamaks

1986Nuclear Fusion

Application of the intermediate frequency range fast wave to the JIPP TII-U plasma

1991Nuclear Fusion

On the role of electron energy distribution function in double frequency heating of electron cyclotron resonance ion source plasmas

2014Review of Scientific Instruments