The Thermal Properties of Gliding arc Plasma Produced by Laboratory Reverse Vortex Flow System

Farah A. Lazem, H. Humud
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Abstract

A low-cost reverse flow plasma system powered by argon gas pumping was built using homemade materials in this paper. The length of the resulting arc change was directly proportional to the flow rate, while using the thermal camera to examine the thermal intensity distribution and demonstrating that it is concentrated in the centre, away from the walls at various flow rates, the resulting arc's spectra were also measured. The results show that as the gas flow rate increased, so did the ambient temperature. The results show that the medium containing the arc has a maximum temperature of 34.1 ˚C at a flow rate of 14 L/min and a minimum temperature of 22.6 ˚C at a flow rate of 6 L/min.
实验室反涡流系统产生的滑动电弧等离子体的热特性
本文采用自制材料,研制了一种低成本的氩气泵送等离子体系统。所得电弧的长度变化与流量成正比,同时利用热像仪检查热强度分布,并证明在不同流量下,它集中在远离壁面的中心,并测量了所得电弧的光谱。结果表明,随着气体流量的增加,环境温度也随之升高。结果表明:当流量为14 L/min时,含电弧介质的最高温度为34.1˚C,当流量为6 L/min时,最低温度为22.6˚C;
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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