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

Flux ropes and 3D dynamics in the relaxation scaling experiment

T P Intrator, X Sun, L Dorf, J A Sears, Y Feng, T E Weber, H O Swan2013年Plasma Physics and Controlled FusionIF 2.2出版社

Flux ropes form basic building blocks for magnetic dynamics in many plasmas, are macroscopic analogues of magnetic field lines, and are irreducibly three dimensional (3D). We have used the relaxation scaling experiment (RSX) to study flux ropes, and have found many new features involving 3D dynamics, kink instability driven reconnection, nonlinearly stable but kinking flux ropes, and large flows.

日本語訳

磁束管は多くのプラズマにおける磁気ダイナミクスの基本構成要素であり、磁力線の巨視的類似物であり、本質的に三次元(3D)である。我々は緩和スケーリング実験(RSX)を用いて磁束管を研究し、3Dダイナミクス、キンク不安定性駆動リコネクション、非線形安定であるがキンクする磁束管、および大規模フローを含む多くの新たな特徴を発見した。

この論文にはまだAI要約がありません。

関連論文

Flux rope dynamics in three dimensions

2014Plasma Physics and Controlled Fusion

Simulated flux-rope evolution during non-inductive startup in Pegasus

2014Plasma Physics and Controlled Fusion

Self-organization in magnetic flux ropes

2014Plasma Physics and Controlled Fusion

Sequentially released tilted flux ropes in the Earth's magnetotail

2014Plasma Physics and Controlled Fusion

Morphology and dynamics of three interacting kink-unstable flux ropes in a laboratory magnetoplasma

2012Physics of Plasmas

Signatures of secondary collisionless magnetic reconnection driven by kink instability of a flux rope

2014Plasma Physics and Controlled Fusion

Flux pumping and bifurcated relaxations of helical core in 3D magnetohydrodynamic modelling of ASDEX Upgrade plasmas

2026Nuclear Fusion

Two-fluid and magnetohydrodynamic modelling of magnetic reconnection in the MAST spherical tokamak and the solar corona

2016Plasma Physics and Controlled Fusion

Plasmoid instability and secondary island evolution in three-dimensional complex magnetic configurations

2026Plasma Physics and Controlled Fusion

Experimental multiple-scale investigation of guide-field reconnection dynamics

2016Plasma Physics and Controlled Fusion