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Response of microscale turbulence and transport to the evolution of resistive magnetohydrodynamic magnetic island

机译:微观湍流和输运对电阻磁流体动磁岛演化的响应

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摘要

Nonlinear evolution of microscale turbulence interacting with a naturally growing MHD magnetic island is simulated based on a Landau-fluid model. Here, we report on a new short wavelength magnetic-island-induced ion temperature gradient (ITG) instability triggered by a critical threshold of magnetic island width in multiscale turbulence, which is referred to as sw-MITG mode. The sw-MITG mode is characterized by a substantially low stability threshold and a global structure propagating along the ion diamagnetic drift direction. Its generation results from the response of microscale fluctuations to turbulent cross-field heat transport associated with increasing boundary layer width about the island separatrix. An intermittency of heat transport is caused by the sw-MITG mode interacting with dynamical magnetic island and microturbulence.
机译:基于Landau流体模型,模拟了微湍流与自然生长的MHD磁岛相互作用的非线性演化。在这里,我们报告了由多尺度湍流中的磁岛宽度的临界阈值触发的新的短波磁岛诱导的离子温度梯度(ITG)不稳定性,这被称为sw-MITG模式。 sw-MITG模式的特点是稳定性阈值很低,并且整体结构沿离子反磁性漂移方向传播。它的产生是由于微观尺度波动对湍流交叉场传热的响应,而该传热与岛分离层周围边界层宽度的增加有关。热传递的间歇性是由sw-MITG模式与动态磁岛和微湍流相互作用引起的。

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