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

Fluctuation characteristics of the TCV snowflake divertor measured with high speed visible imaging

N R Walkden, B Labit, H Reimerdes, J Harrison, T Farley, P Innocente, F Militello, the TCV Team, the MST1 Team2018年Plasma Physics and Controlled FusionIF 2.2出版社

Tangentially viewing fast camera footage of the low-field side snowflake minus divertor in TCV is analysed across a four-point scan in which the proximity of the two X-points is varied systematically. The motion of structures observed in the post-processed movie shows two distinct regions of the camera frame exhibiting differing patterns. One type of motion in the outer scrape-off layer remains present throughout the scan whilst the other, apparent in the inner scrape-off layer between the two nulls, becomes increasingly significant as the X-points contract towards one another. The spatial structure of the fluctuations in both regions is shown to conform to the equilibrium magnetic field. When the X-point gap is wide the fluctuations measured in the region between the X-points show a similar structure to the fluctuations observed above the null region, remaining coherent for multiple toroidal turns of the magnetic field and indicating a physical connectivity of the fluctuations between the upstream and downstream regions. When the X-point gap is small the fluctuations in the inner scrape-off layer between the nulls are decorrelated from fluctuations upstream, indicating local production of filamentary structures. The motion of filaments in the inter-null region differs, with filaments showing a dominantly poloidal motion along magnetic flux surfaces when the X-point gap is large, compared to a dominantly radial motion across flux-surfaces when the gap is small. This demonstrates an enhancement to cross-field transport between the nulls of the TCV low-field-side snowflake minus when the gap between the nulls is small.

日本語訳

接線方向から撮影した高速カメラ映像を用いて、TCVにおける低磁場側スノーフレーク・マイナス・ダイバータを、2つのX点の近接性を系統的に変化させた4点スキャンにわたって解析した。後処理された動画で観測される構造の動きは、カメラフレーム内の2つの異なる領域が異なるパターンを示すことを明らかにしている。外側スクレイプオフ層における一方のタイプの動きはスキャン全体を通じて存在し続ける一方、2つのヌル間の内側スクレイプオフ層で明らかになる他方の動きは、X点が互いに近づくにつれてますます顕著になる。両領域における変動の空間構造は、平衡磁場に一致することが示される。X点間隔が広い場合、X点間の領域で測定される変動は、ヌル領域の上方で観測される変動と類似した構造を示し、磁場の複数トロイダル回転にわたってコヒーレントを維持し、上流と下流の領域間での変動の物理的接続性を示唆する。X点間隔が狭い場合、ヌル間の内側スクレイプオフ層における変動は上流の変動と無相関となり、フィラメント構造の局所的な生成を示す。ヌル間領域におけるフィラメントの動きは異なり、X点間隔が広いときにはフィラメントが磁束面に沿って支配的にポロイダル運動を示すのに対し、間隔が狭いときには磁束面を横切る支配的なラジアル運動を示す。これは、ヌル間の間隔が小さい場合に、TCVの低磁場側スノーフレーク・マイナスにおけるヌル間の横断輸送が増強されることを実証している。

wiki

DivertorTCV
この論文にはまだAI要約がありません。

関連論文

The effect of the secondary x-point on the scrape-off layer transport in the TCV snowflake minus divertor

2019Nuclear Fusion

Numerical study of potential heat flux mitigation effects in the TCV snowflake divertor

2016Plasma Physics and Controlled Fusion

Power distribution in the snowflake divertor in TCV

2013Plasma Physics and Controlled Fusion

Experimental investigation of the parallel structure of fluctuations in the scrape-off layer of Alcator C-Mod

2014Nuclear Fusion

Local properties of the magnetic field in a snowflake divertor

2010Plasma Physics and Controlled Fusion

Sheared poloidal plasma flows in the island divertor scrape-off layer of Wendelstein 7-X

2026Plasma Physics and Controlled Fusion

Quiescence near the X-point of MAST measured by high speed visible imaging

2017Nuclear Fusion

Dependence of divertor turbulence on plasma density and current in TCV

2025Nuclear Fusion

Transport and drift-driven plasma flow components in the Alcator C-Mod boundary plasma

2013Nuclear Fusion

Enhanced drift effects in the TCV snowflake divertor

2015Nuclear Fusion