FusionPapers
図版検索AI要約wiki日本の研究装置ジャーナルChatGPTAbout
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Scaling study for positive magnetic shear ELMy H-mode plasmas in JT-60U

Yoshiaki Ohtani, Maiko Yoshida, Mitsuru Honda, Emi Narita, Hajime Urano, Naoyuki Oyama, Hidenobu Takenaga2019年Plasma Physics and Controlled FusionIF 2.2出版社

Scaling of the density peaking for positive magnetic shear ELMy H-mode plasmas in JT-60U has been developed. Although the density peaking generally depends on collisionality, a variation of the density peaking factor for the same collisionality exists, and the variation is different between plasmas with co-directed and ctr-directed toroidal rotation(co-VT plasmas and ctr-VT plasmas). The variation of the co-VT plasmas can be explained by particle source profile. As a result of scaling, the peaking factor of the co-VT plasmas depends on the particle source rate profile from neutral beams (NBs) as much as collisionality. The dataset of the ctr-VT plasmas has a larger variation of the peaking factor compared to that of the co-VT plasmas. The larger variation stems from that the peaking factor of the ctr-VT plasmas also depends on the normalized ion temperature gradient at the edge region. As a result of scaling, the normalized ion temperature gradient influences the peaking factor as much as or a little larger than collisionality. The parameter regime of the ctr-VT plasmas ranges from the trapped electron mode (TEM) to the ion temperature gradient mode (ITG mode). The plasmas with the positive correlation between the normalized density gradient and the normalized ion temperature gradient are dominated by the TEM. On the other hand, the plasmas with the negative correlation are dominated by the ITG mode.

wiki

Edge localized modeH-modeJT-60UMagnetic shearELMy H-mode
この論文にはまだAI要約がありません。

関連論文

Density sensitivity of intrinsic rotation profiles in ion cyclotron range of frequency-heated L-mode plasmas

2013Plasma Physics and Controlled Fusion

Extended investigations of isotope effects on ECRH plasma in LHD

2020Plasma Physics and Controlled Fusion

Understanding the core density profile in TCV H-mode plasmas

2012Plasma Physics and Controlled Fusion

Impact of plasma triangularity and collisionality on electron heat transport in TCV L-mode plasmas

2007Nuclear Fusion

Collisional drift instability in hollow and coaxial plasmas

1986Plasma Physics and Controlled Fusion

Core density turbulence in the HSX Stellarator

2015Nuclear Fusion

Inward particle transport by plasma collective modes

1979Nuclear Fusion

Internal transport barrier production and control in Alcator C-Mod

2004Plasma Physics and Controlled Fusion

Confinement physics of H-mode discharges in DIII-D

1989Plasma Physics and Controlled Fusion

A solvable model for the basic properties of a simple magnetized plasma torus

2018Plasma Physics and Controlled Fusion