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首页> 外文期刊>Mathematical research letters: MRL >Boltzmann transport equation solver based on phase-point trajectory method for argon gas
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Boltzmann transport equation solver based on phase-point trajectory method for argon gas

机译:基于氩气的相位点轨迹法的Boltzmann运输方程求解器

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摘要

A method of phase point trajectory (PPT) is presented to solve the Boltzmann transport equation (BTE), which makes it possible to study the time-dependent behaviors of the electron velocity distribution function (EVDF) of ionized gases. The important features of the PPT method are: (a) It is recurrence-free. (b) The governing equations on the phase point trajectories are quite similar to those governing particle dynamics in the particle in cell (PIC) simulation and therefore, the technique is easy to use. (c) It has a unique and cost-effective second-order interpolation scheme. (d) In the PPT method, the full EVDF is calculated (i.e., it is not expanded). In order to illustrate how the PPT method works, the BTE is simulated for argon gas under the influence of an external uniform electric field, and the following are examined as benchmark: (i) Collisionless behaviors of EVDF and (ii) the time-dependent behavior of swarm parameters and their equilibrium values in the presence of elastic and inelastic collisions. (iii) The role of each of the collision terms in the behavior of EVDF and electron density. Finally, it is shown that the results of the PPT simulation are in good agreement with the results of the known relevant simulation methods.
机译:提出了一种相位点轨迹(PPT)以解决Boltzmann传输方程(BTE),这使得可以研究电离气体的电子速度分布功能(EVDF)的时间依赖性行为。 PPT方法的重要特征是:(a)它是无复发的。 (b)相位点轨迹的控制方程与细胞(PIC)模拟中的粒子中的控制粒子动力学非常相似,因此,该技术易于使用。 (c)它具有独特且经济高效的二阶插值方案。 (d)在PPT方法中,计算完整EVDF(即,它不扩展)。为了说明PPT方法如何工作,在外部均匀电场的影响下模拟BTE用于氩气,并将以下内容作为基准:(i)EVDF的碰撞行为和(ii)时间依赖群体参数的行为及其在弹性和非弹性碰撞存在下的平衡值。 (iii)每个碰撞术语在EVDF和电子密度的行为中的作用。最后,结果表明,PPT模拟的结果与已知的相关模拟方法的结果吻合良好。

著录项

  • 来源
  • 作者

    Naeimabadi A.; Abbasi H.;

  • 作者单位

    Amirkabir Univ Technol Fac Phys &

    Energy Engn POB 15875-4413 Tehran Iran;

    Amirkabir Univ Technol Fac Phys &

    Energy Engn POB 15875-4413 Tehran Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 数学;
  • 关键词

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