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在DIII-D托卡马克中应用三维场时环形局部湍流的证据。

Evidence of Toroidally Localized Turbulence with Applied 3D Fields in the DIII-D Tokamak.

作者信息

Wilcox R S, Shafer M W, Ferraro N M, McKee G R, Zeng L, Rhodes T L, Canik J M, Paz-Soldan C, Nazikian R, Unterberg E A

机构信息

Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, Tennessee 37831, USA.

Princeton Plasma Physics Laboratory, Princeton, New Jersey 05764, USA.

出版信息

Phys Rev Lett. 2016 Sep 23;117(13):135001. doi: 10.1103/PhysRevLett.117.135001. Epub 2016 Sep 21.

Abstract

New evidence indicates that there is significant 3D variation in density fluctuations near the boundary of weakly 3D tokamak plasmas when resonant magnetic perturbations are applied to suppress transient edge instabilities. The increase in fluctuations is concomitant with an increase in the measured density gradient, suggesting that this toroidally localized gradient increase could be a mechanism for turbulence destabilization in localized flux tubes. Two-fluid magnetohydrodynamic simulations find that, although changes to the magnetic field topology are small, there is a significant 3D variation of the density gradient within the flux surfaces that is extended along field lines. This modeling agrees qualitatively with the measurements. The observed gradient and fluctuation asymmetries are proposed as a mechanism by which global profile gradients in the pedestal could be relaxed due to a local change in the 3D equilibrium. These processes may play an important role in pedestal and scrape-off layer transport in ITER and other future tokamak devices with small applied 3D fields.

摘要

新证据表明,当施加共振磁扰动以抑制瞬态边缘不稳定性时,弱三维托卡马克等离子体边界附近的密度涨落存在显著的三维变化。涨落的增加与测量到的密度梯度增加相伴而生,这表明这种环形局部梯度增加可能是局部通量管中湍流失稳的一种机制。双流体磁流体动力学模拟发现,尽管磁场拓扑结构的变化很小,但通量面内的密度梯度存在显著的三维变化,且这种变化沿磁力线延伸。该模型与测量结果在定性上相符。所观察到的梯度和涨落不对称性被认为是一种机制,通过这种机制,由于三维平衡的局部变化,基座中的全局分布梯度可能会得到松弛。这些过程可能在国际热核聚变实验堆(ITER)以及其他未来施加小三维场的托卡马克装置的基座和刮离层输运中发挥重要作用。

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