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A spectral model for interchange transport in tokamak scrape-off layers

机译:托克马克刮除层交汇处的光谱模型

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摘要

The intermittent convection of plasma filaments, or blobs, is commonly considered to be responsible of the transport across flux surfaces in scrape-off layer (SOL) of fusion devices. Isolated filament models are generally derived from vorticity conservation in order to deduce the speed of these filaments, showing good predictions against experimental measurements on individual filaments, but yet unable to predict the total flux associated to these events. In this work, the isolated filament approach is extended to a model of poloidal spectra for both potential and density fluctuations. An heuristic closure is used to derive analytical descriptions of these spectra are obtained, resulting in predictions for a wide variety of observables from fluctuation levels, correlation lengths and associated fluxes. Results are verified against flux-driven simulations and then validated against a broad set of experimental measurements from circular plasma. Predictions for the SOL width take the form of the engineering scaling law that finds sound agreement with experimental scaling built from multi-machine databases.
机译:等离子体细丝或斑点的间歇对流通常被认为是在融合装置的刮擦层(溶胶)中穿过​​磁通表面的运输负责。孤立的灯丝模型通常来自涡旋保护,以推导出这些细丝的速度,显示出对单个长丝的实验测量的良好预测,但尚未预测与这些事件相关的总通量。在这项工作中,孤立的灯丝方法延伸到潜在和密度波动的针线光谱模型。获得启发式封闭物用于获得这些光谱的分析描述,从而导致来自波动水平,相关长度和相关助熔剂的各种可观察到的预测。结果针对磁通驱动模拟验证,然后针对来自圆形等离子体的广泛的实验测量验证。 SOL宽度的预测采用工程缩放法的形式,该法律与从多机数据库构建的实验缩放找到声音协议。

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