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Strong turbulence, self-organization and plasma confinement

机译:强烈的湍流,自我组织和等离子体约束

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This paper elucidates the close connections between hydrodynamic models of two-dimensional fluids and reduced models of plasma dynamics in the presence of a strong magnetic field. The key element is the similarity of the Coriolis force to the Lorentz force. The reduced plasma model, the Hasegawa-Mima equation, is equivalent to the two-dimensional ion vortex equation. The paper discusses the history of the Hasegawa-Mima model and that of a related reduced system called the Hasegawa-Wakatani model. The 2D fluid magnetized plasma analogy is exploited to argue that magnetized plasma turbulence exhibits a dual cascade, including an inverse cascade of energy. Generation of ordered mesoscopic flows in plasmas (akin to zonal jets) is also explained. The paper concludes with a brief explanation of the relevance of the quasi-2D dynamics to aspects of plasma confinement physics.
机译:本文阐明了二维流体的流体动力学模型与强磁场存在下等离子体动力学模型之间的密切连接。 关键元素是科里奥利力对洛伦兹力的相似性。 降低的等离子体模型,HAPEGAWA-MIMA方程等同于二维离子涡旋等式。 本文讨论了Hasegawa-MIMA模型的历史,以及称为Hasegawa-Wakatani模型的相关减少系统。 利用2D流体磁化等离子体类比来争论磁化等离子体湍流呈现双级联,包括逆级联能量。 还解释了在等离子体(类似于Zonal Jets)中的有序的介面流量的产生。 本文的结论是简要解释了准2D动力学与等离子体监禁物理学方面的相关性。

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