流光放电的近似解析方法:解

IF 1.6 4区 物理与天体物理 Q3 PHYSICS, FLUIDS & PLASMAS IEEE Transactions on Plasma Science Pub Date : 2025-01-07 DOI:10.1109/TPS.2024.3522083
Qizheng Ye
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引用次数: 0

摘要

本文首先在前人提出的流线放电简化数学模型的基础上,得到了流线头部电子数密度随位置变化的闭式解析解,其中包括稳定流线、雪崩流线和火花流线三种类型的流线。其中,稳定流和火花流过去无法解析描述,而雪崩类型与Townsend的理论模型一致。其次,本文介绍了稳定色光的极性效应,以及色光消光的两种类型和条件。最后,导出了拖曳头位置随时间变化的闭式解析解,其特征参数与空间域相同。上述结果提供了一种统一、简化的流线流量近似分析方法。
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Approximate Analytical Method of Streamer Discharge: Solutions
Based on the simplified mathematical model of streamer discharge proposed in the previous work, this article first obtains the closed-form analytical solution of the electron number density in the streamer head as a function of position, which includes three types of streamers (stable streamer, avalanche, and spark streamer). Among these, the stable streamer and the spark streamer could not be described analytically in the past, while the avalanche type is consistent with Townsend’s theoretical model. Second, this article presents the polarity effect of the stable streamer, as well as the two types and conditions for streamer extinction. Finally, the closed-form analytical solution of the streamer head position changing with time is derived, whose characteristic parameters are the same as those in the spatial domain. The above results provide a unified and simplified approximate analysis method of streamer discharge.
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来源期刊
IEEE Transactions on Plasma Science
IEEE Transactions on Plasma Science 物理-物理:流体与等离子体
CiteScore
3.00
自引率
20.00%
发文量
538
审稿时长
3.8 months
期刊介绍: The scope covers all aspects of the theory and application of plasma science. It includes the following areas: magnetohydrodynamics; thermionics and plasma diodes; basic plasma phenomena; gaseous electronics; microwave/plasma interaction; electron, ion, and plasma sources; space plasmas; intense electron and ion beams; laser-plasma interactions; plasma diagnostics; plasma chemistry and processing; solid-state plasmas; plasma heating; plasma for controlled fusion research; high energy density plasmas; industrial/commercial applications of plasma physics; plasma waves and instabilities; and high power microwave and submillimeter wave generation.
期刊最新文献
Table of Contents IEEE Transactions on Plasma Science information for authors Call for Papers: IEEE Transactions on Plasma Science Special Issue on Dense Z-Pinch Plasmas Demonstration of High-Efficiency Pulsed-Mode Operation of Commercial Continuous-Wave Magnetron KEVMD Optimized Fusion Network for Antenna Response Prediction in UWB HPM Environment
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