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Nonlinear convective heat transport in multiple interacting magnetized electron temperature filaments

机译:多个相互作用的磁化电子温度灯丝中的非线性对流传热

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Summary form only given. Results are presented from basic heat transport experiments and gyrokinetic simulations of multiple magnetized electron temperature filaments in close proximity. This arrangement samples cross-field transport from nonlinear drift-Alfven waves and large scale convective cells. Experiments are performed in the Large Plasma Device (LAPD) at UCLA. A biased LaB6 cathode injects low energy electrons (below ionization energy) along a strong magnetic field into a pre-existing large and cold plasma forming an electron temperature filament embedded in a colder plasma, and far from the machine walls. A carbon masking plate with several holes (each 1cm diameter, 1.5 cm apart) is used to create 3 electron temperature filaments. By covering two holes in the mask drift-Alfven and thermal waves from a single filament have been characterized and compared to previous studies with a different electron beam source1. The observed eigenmode structures also compares favor ably with recent 3D gyrokinetic simulations2. The 3-filament case exhibits a complex wave pattern and enhanced cross-field transport. Detailed mode analysis and comparison with non linear simulations is reported.
机译:仅提供摘要表格。结果来自基本的热传递实验和紧密相邻的多个磁化电子温度丝的陀螺动力学模拟。这种安排从非线性漂移-Alfven波和大规模对流单元采样跨场传输。实验是在加州大学洛杉矶分校的大型等离子设备(LAPD)中进行的。偏置的LaB6阴极沿着强磁场将低能电子(低于电离能)注入到预先存在的大而冷的等离子体中,从而形成嵌入在较冷的等离子体中且远离机器壁的电子温度灯丝。使用带有几个孔(每个直径1厘米,相距1.5厘米)的碳掩膜板制作3条电子温度灯丝。通过覆盖掩模上的两个孔,已对单根灯丝的Alfven和热波进行了表征,并与以前使用不同电子束源进行的研究进行了比较1。观察到的本征模结构也与最近的3D陀螺动力学模拟相吻合[2]。 3丝情况显示出复杂的波型和增强的交叉场传输。报告了详细的模式分析以及与非线性仿真的比较。

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