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Evaluation of the toroidal torque driven by external non-resonant non-axisymmetric magnetic field perturbations in a tokamak

机译:托卡马克中由外部非共振非轴对称磁场扰动驱动的环形转矩的评估

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摘要

The toroidal torque driven by external non-resonant magnetic perturbations (neoclassical toroidal viscosity) is an important momentum source affecting the toroidal plasma rotation in tokamaks. The well-known force-flux relation directly links this torque to the non-ambipolar neoclassical particle fluxes arising due to the violation of the toroidal symmetry of the magnetic field. Here, a quasilinear approach for the numerical computation of these fluxes is described, which reduces the dimension of a standard neoclassical transport problem by one without model simplifications of the linearized drift kinetic equation. The only limiting condition is that the non-axisymmetric perturbation field is small enough such that the effect of the perturbation field on particle motion within the flux surface is negligible. Therefore, in addition to most of the transport regimes described by the banana (bounce averaged) kinetic equation also such regimes as, e. g., ripple-plateau and resonant diffusion regimes are naturally included in this approach. Based on this approach, a quasilinear version of the code NEO-2 [W. Kernbichler et al., Plasma Fusion Res. 3, S1061 (2008).] has been developed and benchmarked against a few analytical and numerical models. Results from NEO-2 stay in good agreement with results from these models in their pertinent range of validity.
机译:由外部非共振磁扰动(新古典环形粘度)驱动的环形转矩是影响托卡马克中环形等离子体旋转的重要动量源。众所周知的力-磁通关系直接将此转矩与由于违反磁场的环形对称性而产生的非双极性新古典粒子通量联系起来。这里,描述了一种用于这些通量的数值计算的准线性方法,该方法通过不对线性化漂移动力学方程进行模型简化的方法就减小了标准新古典运输问题的维数。唯一的限制条件是,非轴对称扰动场足够小,以至于扰动场对通量表面内粒子运动的影响可以忽略不计。因此,除了香蕉(平均反弹)动力学方程式所描述的大多数传输方式外,还包括诸如e的传输方式。例如,这种方法自然包括了波纹平稳和共振扩散机制。基于这种方法,代码为NEO-2 [W. Kernbichler等,等离子融合研究。 [3,S1061(2008)。]已开发并以一些分析和数值模型为基准。 NEO-2的结果在其相关的有效范围内与这些模型的结果保持很好的一致性。

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