Modeling and Experimental Verification of Plasma Jet Electromagnetic Signals

P. Drexler, Z. Szabó, R. Pernica, Jirí Zukal, Radim Kadlec, M. Klíma, P. Fiala
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引用次数: 3

Abstract

Herein, we discuss the modeling and verification of RF sensed signals in a simple plasma channel (plasma jet) at the generator frequency of f = 13.56 MHz, assuming plasma discharge at atmospheric pressure. The actual experiment was preceded by a basic numerical analysis and evaluation of several variants of the geometric/numerical model of a simple plasma channel formed in a glass capillary chamber; this step was performed with different electrode configurations. The analyses also included the impact of the location of the sensing element (i.e., the antenna) on the resulting evaluated electromagnetic signal. Furthermore, a numerical model with concentrated parameters facilitated a comparative analysis centered on the impact of plasma concentration and composition in the monitored electromagnetic RF spectrum of the channel. The theoretical outputs were verified via experiments and compared. This methodology finds use in the radio-frequency evaluation of plasma parameters in both simple capillary nozzles and more complex, slit-designed plasma chambers.
等离子体射流电磁信号的建模与实验验证
本文讨论了在发生器频率为f = 13.56 MHz的简单等离子体通道(等离子体射流)中,假设等离子体在大气压下放电,射频传感信号的建模和验证。在实际实验之前,对玻璃毛细管腔内形成的简单等离子体通道的几何/数值模型的几种变体进行了基本的数值分析和评价;这一步是在不同的电极配置下进行的。分析还包括感应元件(即天线)的位置对最终评估的电磁信号的影响。此外,一个具有集中参数的数值模型促进了以等离子体浓度和组成对通道监测的电磁射频频谱的影响为中心的比较分析。通过实验对理论结果进行了验证和比较。该方法可用于简单毛细管喷嘴和更复杂的缝状等离子体室的等离子体参数的射频评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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