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Kinetic-magnetohydrodynamic hybrid simulation of infernal modes in circular tokamak plasmas with effects of kinetic thermal ions

M. Sato, Y. Todo, N. Aiba, M. Takechi2024年7月Nuclear FusionIF 3出版社

Effects of the kinetic thermal ions (KTIs) on ideal infernal modes and resistive infernal modes have been investigated by using magnetohydrodynamic (MHD) simulation without KTIs and kinetic-MHD hybrid simulation with KTIs. For the ideal infernal modes, the pressure profile is significantly flattened at the saturated state for both the models with and without the KTIs. As the beta value decreases, the ideal infernal modes are stabilized while the resistive infernal modes are still unstable. For the resistive infernal modes, while the saturated pressure profile is significantly flattened in the MHD simulation without KTIs, the pressure profile is not flattened at the saturated state in the kinetic-MHD hybrid simulation with KTIs. The suppression of the saturation level by the effects of the KTIs results from the phase mismatch between the radial velocity and perturbed pressure mode structures. This indicates that KTIs play an essential role for the suppression of pressure profile flattening due to slowly growing resistive MHD instabilities.

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Magnetohydrodynamics

AIによる論文要約

円形トカマク プラズマにおける理想的インフェルナル モードおよび抵抗性インフェルナル モードに及ぼす運動論的熱イオンの影響に関する運動論-磁気流体力学ハイブリッド シミュレーション
JAこの論文は、核融合プラズマの安定性に関心のある研究者や学生に有益です。特に、運動論的効果がプラズマ不安定性に及ぼす影響を理解したい人にお勧めです。#核融合プラズマ #プラズマ不安定性 #運動論的効果 #圧力プロファイル

この論文では、理想的および抵抗性のインフェルナル モードに及ぼす運動論的熱イオンの影響を調べています。運動論的熱イオンの存在により、圧力プロファイルの平坦化が抑制されることがわかりました。これは、運動論的熱イオンが徐々に成長する抵抗性MHD不安定性による圧力プロファイルの平坦化を抑制する重要な役割を果たすことを示しています。

Kinetic-magnetohydrodynamic hybrid simulation of infernal modes in circular tokamak plasmas with effects of kinetic thermal ions
ENThis paper is of interest to fusion researchers studying plasma instabilities and their impact on plasma confinement in tokamak devices. It provides insights that can help improve the design and operation of fusion reactors.#FusionPlasmaInstabilities #KineticThermalIons #MagnetohydrodynamicSimulation #TokamakPlasmas #PlasmaConfinement

This paper investigates the effects of kinetic thermal ions (KTIs) on ideal and resistive infernal modes in tokamak plasmas using MHD and kinetic-MHD hybrid simulations. It shows that KTIs can suppress the flattening of pressure profiles caused by these instabilities, which is important for maintaining plasma confinement.

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