Experimental Investigation of Effects of Electric Operating Parameters on Pulsed Corona Discharges in Humid Air at Atmospheric Pressure

Hasna Guedah, A. Abahazem, N. Merbahi, M. Yousfi, K. Saber, A. Ihlal
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引用次数: 1

Abstract

The present work is devoted to electrical and optical study of a point-plane atmospheric pressure corona discharge reactor in humid air powered by pulsed high voltage supply. The corona current and the injected energy are analyzed as a function of several parameters such as applied voltage and humidity rate. Then, investigations based on emission spectroscopy analysis were used in UV range (from 200 nm to about 400 nm). The main observed excited species were the second positive (SPS), the first negative (FNS) systems and OH(A-X) rotational bands. The latter band was used to simulate the rotational temperature (Tr), whereas the N2+ (FNS) band was used to determine the vibrational temperature (Tv). The electron temperature (Te ) is determined from the ratio of line intensities of the spectral bands of both N2+ FNS at 391.4 nm and N2SPS at 394.4 nm. The rotational, vibrational and electronic temperatures are analyzed as a function of above parameters (applied voltage, frequency and hygrometry rate) near the anodic tip. As well we study the axial variation of electronic temperature for a fixed applied voltage at 6.4 kV, frequency at 10 kHz and 100% of humidity. It is found that the rotational, vibrational and electronic temperatures increased with increasing applied voltage, frequency and humidity rate. The increase of rate hygrometry for an inter-electrode distance fixed at 10 mm causes an increase in both the amplitude of the corona current discharge and the energy injected in corona discharge. This is indicative of more intense reactive plasma while increasing hygrometry rate.
常压下湿空气中电工作参数对脉冲电晕放电影响的实验研究
本文对脉冲高压供电的湿润空气中点平面常压电晕放电电抗器进行了电学和光学研究。分析了电晕电流和注入能量随外加电压和湿度等参数的变化规律。然后,在紫外(200 ~ 400 nm)范围内进行了发射光谱分析。观测到的主要激发态为第二正(SPS)、第一负(FNS)体系和OH(A-X)旋转带。后一波段用于模拟旋转温度(Tr),而N2+ (FNS)波段用于确定振动温度(Tv)。电子温度Te由N2+ FNS在391.4 nm处和N2SPS在394.4 nm处的谱线强度之比确定。分析了阳极尖端附近的旋转、振动和电子温度作为上述参数(施加电压、频率和测湿速率)的函数。我们还研究了在固定施加电压为6.4 kV,频率为10 kHz,湿度为100%的情况下,电子温度的轴向变化。结果表明,随着施加电压、频率和湿度的增加,旋转温度、振动温度和电子温度均有所升高。当电极间距固定为10 mm时,速率测湿量的增加会导致电晕电流放电幅度和电晕放电注入能量的增加。这表明随着测湿率的增加,反应性血浆的强度增加。
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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