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Analytical modelling of resistive wall mode stabilization by rotation in toroidal tokamak plasmas

机译:环形托卡马克等离子体中通过旋转稳定电阻壁模式的解析模型

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Stabilization of the resitive wall mode (RWM) may allow fusion power to be doubled for a given magnetic field in advanced tokamak operation. Experimental evidence from DIII-D and other machines suggests that plasma rotation can stabilize the RWM. Several authors (Finn 1995 Phys. Plasmas 2 3782, Bondeson and Xie 1997 Phys. Plasmas 4 2081) have constructed analytical cylindrical models for the RWM, but these do not deal with toroidal effects. The framework of Connor et al (1988 Phys. Fluids 31 577) is used to develop ideal plasma analytic models with toroidicity included. Stepped pressure profiles and careful ordering of terms are used to simplify the analysis. First, a current driven kink mode model is developed and a dispersion relation for arbitrary current profile is calculated. Second, the external pressure driven kink mode is similarly investigated as the most important RWM arises from this mode. Using this latter model it is found that the RWM is stabilized by Alfvén continuum damping with rotation levels similar to those seen in experiments. An expression for the stability of the external kink mode for more general current profiles and a resistive wall is derived in the appendix.
机译:在先进的托卡马克操作中,对于给定的磁场,电阻壁模式(RWM)的稳定可以使融合能力加倍。 DIII-D和其他机器的实验证据表明,等离子体旋转可以稳定RWM。几位作者(Finn 1995 Phys.Plasmas 2 3782,Bondeson和Xie 1997 Phys.Plasmas 4 2081)已经为RWM构造了分析圆柱模型,但是这些没有处理环形效应。 Connor等人(1988 Phys.Fluids 31 577)的框架用于开发理想的血浆分析模型,其中包括环形性。逐步的压力曲线和术语的仔细排序可简化分析。首先,建立电流驱动的扭结模式模型,并计算任意电流分布的色散关系。其次,类似地研究了外部压力驱动的扭结模式,因为最重要的RWM源自该模式。使用后一种模型,发现RWM通过Alfvén连续介质阻尼而稳定,其旋转水平类似于实验中看到的水平。附录中给出了针对更常见的电流分布图和电阻壁的外部扭结模式稳定性的表达式。

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