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Understanding the turbulent mechanisms setting the density decay length in the tokamak scrape-off layer

机译:了解在Tokamak刮擦层中设置密度衰减长度的湍流机制

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Mechanisms setting the density decay in the scrape-off layer (SOL) at the outer midplane of a tokamak plasma are disentangled using two-fluid numerical simulations in a double-null magnetic configuration and analytical estimates. Typical experimental observations are retrieved, in particular increasing intermittency of the turbulence going from the near to the far SOL, which is reflected in two different density decay lengths. The decay length of the near SOL is well described as the result of transport driven by a nonlinearly saturated ballooning instability, while in the far SOL, the density decay length is described using a model of intermittent transport mediated by blobs. The analytical estimates of the decay lengths agree well with the simulation results and typical experimental values and can therefore be used to guide tokamak design and operation.
机译:在Tokamak等离子体的外层处于刮削层(溶胶)中的机制在托卡马克等离子体的外平面上使用双空磁配置和分析估计中的双流量数值模拟解开。 检索典型的实验观察,特别是从近距离溶胶的湍流中的间歇性增加,这在两种不同的密度衰减长度中反射。 接近溶胶的衰减长度很好地描述,因为通过非线性饱和的膨胀不稳定驱动的运输结果,而在远溶胶中,使用由Blob介导的间歇运输的模型描述密度衰减长度。 衰减长度的分析估计与仿真结果和典型的实验值相吻合,因此可以用于引导Tokamak设计和操作。

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