Kinetic Effects on the Convective Plasma Diffusion and the Heat Transport

H. Naitou, T. Kamimura, J. Dawson
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引用次数: 26

Abstract

Cross field heat and particle transport due to the thermally excited convective cell mode is investigated both by theoretical work and by particle simulations. A parameter range exists where the heat diffusion coefficient is considerably less than the particle diffusion coefficient. This comes from the fact that high energy particles in a velocity distribution diffuse much more slowly than the low energy particles, because the fluctuating electric fields are averaged out over their finite Larmor radii. A velocity dependent diffusion coefficient is obtained by a simple theory, together with an estimate of the heat diffusion coefficient. Good agreement with the simulation results is obtained. The magnetic field scaling of heat diffusion/particle diffusion coefficients is also discussed. The results imply that ions in a thermonuclear reactor should be less affected by turbulence than are electrons, as appears to be the case.
对流等离子体扩散和热输运的动力学效应
通过理论工作和粒子模拟研究了热激发对流电池模式下的交叉场热输运和粒子输运。存在一个参数范围,其中热扩散系数大大小于颗粒扩散系数。这是因为在速度分布中,高能粒子的扩散速度比低能粒子慢得多,因为波动的电场在它们有限的拉莫尔半径上被平均掉了。通过一个简单的理论得到了与速度有关的扩散系数,并对热扩散系数进行了估计。仿真结果与仿真结果吻合较好。本文还讨论了热扩散/颗粒扩散系数的磁场标度。结果表明,在热核反应堆中,离子受湍流的影响应该比电子小,这似乎是事实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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