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Resistive MHD modelling of the quasi-single helicity state in the KTX regimes

Bing Luo, Ping Zhu, Hong Li, Wandong Liu, KTX Team2018年被引用 5Nuclear FusionIF 3出版社

The potential formation of a quasi-single-helicity (QSH) state in the Keda Torus eXperiment (KTX) is investigated in resistive MHD simulations using the NIMROD code. We focus on the effects of finite resistivity on the mode structure and characteristics of the dominant linear and nonlinear resistive tearing-mode in a finite β, cylindrical configuration of a reversed field pinch model for KTX. In the typical resistive regimes of KTX where the Lundquist number , the plasma transitions to a steady QSH state after evolving through an initial transient phase with multiple helicities. The dominant mode of the QSH state develops from the dominant linear tearing mode instability. In the lower β regime, the QSH state is intermittent and short in duration; in the higher β regime, the QSH state persists for a longer time and should be more easily observed in experiments.

日本語訳

Keda Torus eXperiment(KTX)における準単一ヘリシティ(QSH)状態の潜在的な形成を、NIMRODコードを用いた抵抗性MHDシミュレーションで調査する。我々は、KTXのための逆転磁場ピンチモデルの有限β、円筒形状における、有限抵抗率が支配的な線形および非線形抵抗性テアリングモードのモード構造と特性に及ぼす影響に焦点を当てる。ランドキスト数が であるKTXの典型的な抵抗性領域では、プラズマは複数のヘリシティを持つ初期の過渡位相を経た後、定常的なQSH状態へと遷移する。QSH状態の支配モードは、支配的な線形テアリングモード不安定性から発展する。低いβ領域では、QSH状態は間欠的であり持続時間が短いが、高いβ領域では、QSH状態はより長く持続し、実験においてより容易に観測されるはずである。

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