毛细管侵蚀等离子体发生器和磁等离子体压缩机产生的高能非均匀等离子体形成的受激爆轰

IF 1.4 4区 化学 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
A. I. Klimov, V. G. Brovkin, A. S. Pashchina
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引用次数: 0

摘要

研究长寿命等离子体形成的物理性质可以帮助我们理解雷云、低层电离层、龙卷风、火山活动以及自然等离子体(如球状闪电、精灵、射流等)的相关外观中的电物理现象的本质。本文研究了在实验室用侵蚀等离子体发生器和磁等离子体压缩器组成的组合式等离子体发生器获得的长寿命高能等离子体的受激爆轰。发现爆炸的必要条件是超过一定的压力和温度阈值。建立了定向爆炸模式的存在性,该模式仅在脉冲侵蚀放电开始和MPC放电之间的最佳延迟时间(td ~ 2000 μs数量级)下实现。测量了受激爆模式下LEPs的激波参数、光谱学和x射线谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Stimulated Detonation of a High-Energy Heterogeneous Plasma Formation Created by a Capillary Erosive Plasma Generator and a Magneto-Plasma Compressor

Stimulated Detonation of a High-Energy Heterogeneous Plasma Formation Created by a Capillary Erosive Plasma Generator and a Magneto-Plasma Compressor

Studying the physical properties of long-lived plasma formations can help us understand the nature of electrophysical phenomena in thunder clouds, the lower ionosphere, tornadoes, volcanic activity, and the associated appearance of natural plasmoids (such as ball lightning, sprites, jets, etc.). The stimulated detonation of long-lived energy-consuming plasmoids (LEPs) obtained in a laboratory using a combined type of plasma generator consisting of an erosive plasma generator and a magnetoplasma compressor (MPC) is studied in this paper. It is found that a necessary condition for detonation is the excess of certain threshold values of pressure and temperature. The existence of a directed explosion mode is established, which is realized only at the optimal delay times (of the order of td ~ 2000 μs) between the beginning of a pulsed erosion discharge and the discharge of an MPC. The parameters of shock waves (SWs), as well as the optical and X-ray spectra of LEPs in the stimulated detonation mode are measured.

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来源期刊
Russian Journal of Physical Chemistry B
Russian Journal of Physical Chemistry B 化学-物理:原子、分子和化学物理
CiteScore
2.20
自引率
71.40%
发文量
106
审稿时长
4-8 weeks
期刊介绍: Russian Journal of Physical Chemistry B: Focus on Physics is a journal that publishes studies in the following areas: elementary physical and chemical processes; structure of chemical compounds, reactivity, effect of external field and environment on chemical transformations; molecular dynamics and molecular organization; dynamics and kinetics of photoand radiation-induced processes; mechanism of chemical reactions in gas and condensed phases and at interfaces; chain and thermal processes of ignition, combustion and detonation in gases, two-phase and condensed systems; shock waves; new physical methods of examining chemical reactions; and biological processes in chemical physics.
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