分子氢中潘宁放电的电动结构的扩散漂移模型

IF 1 4区 工程技术 Q4 MECHANICS
S. T. Surzhikov
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引用次数: 0

摘要

摘要 采用气体放电等离子体的扩散漂移双液双温模型来描述分子氢在 1 mTorr 压力下的潘宁放电的电动力学结构。通过数值模拟研究了放电室的几何参数、外部电路电源电磁场的变化以及轴向磁场感应对放电结构的影响。等离子体流围绕放电室对称轴的方位运动过程中形成的高能电子流对中性气体电离的决定性作用得到了展示。发现了带电粒子流在轴向区域的准单调和振荡平均运动模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Diffusion-Drift Modeling of the Electrodynamic Structure of the Penning Discharge in Molecular Hydrogen

Diffusion-Drift Modeling of the Electrodynamic Structure of the Penning Discharge in Molecular Hydrogen

Diffusion-Drift Modeling of the Electrodynamic Structure of the Penning Discharge in Molecular Hydrogen

A diffusion-drift two-liquid two-temperature model of a gas-discharge plasma is used to describe the electrodynamic structure of the Penning discharge in molecular hydrogen at a pressure of the order of 1 mTorr. The effect of the discharge chamber’s geometrsic parameters, variations in the EMF of the power supply of an external electrical circuit, and the axial magnetic field induction on the discharge structure is studied by numerical simulation. The determining role of the flow of high-energy electrons formed during the azimuthal motion of plasma flows around the axis of symmetry of the discharge chamber on the ionization of neutral gas is shown. The modes of the quasi-monotonic and oscillatory averaged motion of charged particle fluxes in the axial regions are found.

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来源期刊
Fluid Dynamics
Fluid Dynamics MECHANICS-PHYSICS, FLUIDS & PLASMAS
CiteScore
1.30
自引率
22.20%
发文量
61
审稿时长
6-12 weeks
期刊介绍: Fluid Dynamics is an international peer reviewed journal that publishes theoretical, computational, and experimental research on aeromechanics, hydrodynamics, plasma dynamics, underground hydrodynamics, and biomechanics of continuous media. Special attention is given to new trends developing at the leading edge of science, such as theory and application of multi-phase flows, chemically reactive flows, liquid and gas flows in electromagnetic fields, new hydrodynamical methods of increasing oil output, new approaches to the description of turbulent flows, etc.
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