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Eddy drift wave and zonal flow dynamics in a linear magnetized plasma

机译:线性磁化等离子体中的涡流漂移波和区域流动力学

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摘要

Turbulence and its structure formation are universal in neutral fluids and in plasmas. Turbulence annihilates global structures but can organize flows and eddies. The mutual-interactions between flow and the eddy give basic insights into the understanding of non-equilibrium and nonlinear interaction by turbulence. In fusion plasma, clarifying structure formation by Drift-wave turbulence, driven by density gradients in magnetized plasma, is an important issue. Here, a new mutual-interaction among eddy, drift wave and flow in magnetized plasma is discovered. A two-dimensional solitary eddy, which is a perturbation with circumnavigating motion localized radially and azimuthally, is transiently organized in a drift wave – zonal flow (azimuthally symmetric band-like shear flows) system. The excitation of the eddy is synchronized with zonal perturbation. The organization of the eddy has substantial impact on the acceleration of zonal flow.
机译:湍流及其结构形成在中性流体和等离子体中普遍存在。动荡消灭了全球结构,但可以组织流动和漩涡。流动与涡流之间的相互作用使人们对湍流对非平衡和非线性相互作用的理解有了基本的认识。在聚变等离子体中,由磁化等离子体中的密度梯度驱动的由漂移波湍流引起的澄清结构形成是一个重要的问题。在这里,发现了磁化等离子体中的涡流,漂移波和流动之间的新的相互作用。二维孤立涡流是一种在径向和方位角上绕着圆周运动的扰动,它在漂移波–纬向流(方位角对称的带状剪切流)系统中暂时组织起来。涡流的激发与区域扰动同步。涡流的组织对地带流的加速有很大影响。

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