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首页> 外文期刊>Plasma Science, IEEE Transactions on >Hybrid Computer Simulation Scheme for Computational Study of Low-Temperature Plasma Containing Micrometer-Sized Dust Particles
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Hybrid Computer Simulation Scheme for Computational Study of Low-Temperature Plasma Containing Micrometer-Sized Dust Particles

机译:包含微米级粉尘颗粒的低温等离子体计算研究的混合计算机模拟方案

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摘要

In this paper, an algorithm for the computational study of low-temperature argon plasma containing small micrometer-sized solid dust particulates is presented. In the first section, the numerical and computational approaches that are most frequently used in this area of research are summarized, and the references on some theoretical and experimental works are given. Consequently, we describe a hybrid model that is capable to express physical quantities depending on the electron energy distribution function (like reaction rates, diffusion coefficients, coefficients of mobility, etc.) as functions of space coordinates $(x, y, z)$ and given time $t$. This way, the precision of calculation is increased in comparison with fluid modeling techniques. Some results of illustrative calculations are presented and discussed in the last section.
机译:本文提出了一种计算研究的算法,该算法用于计算包含微小微米级固体灰尘颗粒的低温氩等离子体。在第一部分中,总结了在该研究领域中最常用的数值和计算方法,并提供了一些理论和实验工作的参考。因此,我们描述了一种混合模型,该模型能够根据电子能量分布函数(如反应速率,扩散系数,迁移率系数等)来表示物理量,并将其表示为空间坐标$(x,y,z)$并给定时间$ t $。这样,与流体建模技术相比,提高了计算精度。最后一部分介绍并讨论了说明性计算的一些结果。

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