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

Observation of neoclassical tearing modes in JET

JET Team (prepared by G.T.A. Huysmans)1999年被引用 34Nuclear FusionIF 3出版社

Neoclassical tearing modes have been identified in JET ELMy H mode discharges at medium to high β. The n = 2 modes, as observed in both ECE and SXR data, have a clear island structure and a global character. The critical normalized β at the onset of the modes is found to scale with the normalized Larmor radius. The scaling with collisionality is much weaker and has a negative power. At high β, large amplitude n = 1 modes limit the maximum normalized β.

日本語訳

新古典テアリングモードは、中程度から高ベータのJET ELMy Hモード放電において同定された。ECEおよびSXRデータの両方で観測されたn = 2モードは、明確な島構造とグローバルな特性を示す。モード発生時の臨界規格化ベータは、規格化ラーモア半径に比例してスケーリングすることが見出された。衝突性に対するスケーリングははるかに弱く、負のべき乗を示す。高ベータでは、大振幅のn = 1モードが最大規格化ベータを制限する。

装置

jet高精度(タイトル一致)

wiki

JETTearing modeNeoclassical tearing mode
この論文にはまだAI要約がありません。

関連論文

β limiting MHD activity and mode locking in Alcator C-Mod

2002Plasma Physics and Controlled Fusion

Neoclassical islands on COMPASS-D

1997Nuclear Fusion

Neoclassical islands, β-limits, error fields and ELMs in reactor scale tokamaks

1999Nuclear Fusion

Magnetohydrodynamic behaviour during core transport barrier experiments with ion Bernstein wave heating in PBX-M: II n = m - 1 and n = m modes

1998Nuclear Fusion

Marginal β-limit for neoclassical tearing modes in JET H-mode discharges

2002Plasma Physics and Controlled Fusion

Characteristics of a new class of transport-related MHD modes in JET H-mode plasmas

1999Plasma Physics and Controlled Fusion

Excitation of high frequency pressure driven modes in non-axisymmetric equilibrium at high βpol in PBX-M

1993Nuclear Fusion

Characterization of low-frequency inter-ELM modes of H-mode discharges at ASDEX Upgrade

2018Nuclear Fusion

The beta scaling of energy confinement in ELMy H-modes in JET

2004Plasma Physics and Controlled Fusion

The improved H-mode at ASDEX Upgrade: a candidate for an ITER hybrid scenario

2005Nuclear Fusion