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Suppression of drift wave turbulence and zonal flow formation by changing axial boundary conditions in a cylindrical magnetized plasma device

机译:通过改变圆柱形磁化等离子体装置中的轴向边界条件来抑制漂移波湍流和地层流形成

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摘要

For drift wave turbulence, due to charge conservation, the divergence of the parallel current is coupled to the divergence of the perpendicular polarization current, which determines the effective radial momentum flux, i.e., the Reynolds stress. Changes in the current flow patterns also affect the nonlinear energy transfer from smaller to larger scales. Here, we show that by changing the end plate boundary conditions in a cylindrical plasma device, the radial currents through the plasma and hence the net momentum transport and the nonlinear coupling for the inverse energy transfer are strongly modified. The transition to drift wave turbulence and the formation of low frequency zonal flows can be either suppressed with conducting boundaries or enhanced with insulating boundaries.
机译:对于漂移波湍流,由于电荷守恒,并联电流的发散与垂直极化电流的发散有关,这决定了有效的径向动量通量,即雷诺应力。电流模式的变化也会影响非线性能量从小到大的传递。在这里,我们表明,通过改变圆柱形等离子装置中的端板边界条件,可以强烈地改变通过等离子的径向电流,从而净动量传输和逆能量传递的非线性耦合。可以通过传导边界来抑制向漂移波湍流的过渡以及低频地带流的形成,也可以通过绝缘边界来抑制。

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