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Extended self-similarity of intermittent turbulence in edge magnetized plasmas

机译:边缘磁化等离子体中间歇性湍流的扩展自相似性

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摘要

We investigate the intermittency of the edge plasma turbulence in the T-10 tokamak, the Large Helical Device, the linear machine NAGDIS-Ⅱ and the HYBTOK-Ⅱ tokamak. The higher order structure functions are analysed to characterize the self-similarity of the plasma intermittency. The generalized scale invariance over three decades of time scales is observed by involving the extended self-similarity hypothesis. Turbulent fluctuations demonstrate multifractal statistics. The structure function scalings deviate strongly from Kolmogorov's K41 model prediction. The high-order structure functions have a nonlinear scaling being a nonlinear function of the order index. The nonlinear scaling is interpreted within the framework of the log-Poisson model considering 'hidden' statistical symmetry (dilatation group), hierarchy of moments, a generalized scale covariance and an underlying multifractal multiplicative cascading process.
机译:我们研究了T-10托卡马克,大型螺旋装置,线性机器NAGDIS-Ⅱ和HYBTOK-Ⅱ托卡马克中边缘等离子体湍流的连续性。分析高阶结构函数以表征等离子体间断的自相似性。通过涉及扩展的自相似假设,可以观察到三十年时间尺度上的广义尺度不变性。湍流波动表明多重分形统计。结构函数的缩放比例与Kolmogorov的K41模型预测有很大差异。高阶结构函数具有非线性缩放,该非线性缩放是阶数索引的非线性函数。考虑到“隐藏”统计对称性(扩张组),矩的层次,广义尺度协方差和潜在的多重分形级联过程,在log-Poisson模型的框架内解释了非线性比例。

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