Effect of nitrogen/oxygen ratios on surface charge distributions generated by repetitive surface dielectric barrier discharges

Takuma Uemura, Hiroyuki Nishida, Ryo Ono, A. Komuro
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Abstract

Studies on the dielectric surface parameters and dielectric barrier discharges (DBD) characteristics considering the influence of gases in DBD on the surface charge distribution are scarce. Thus, to overcome this research gap, this study measured the potential distributions of AC-driven surface dielectric barrier discharges (SDBD) in oxygen (O2), synthetic air, and nitrogen (N2) as background gases using the Pockels effect. The results showed that the patterns of the filamentary discharges generated during the positive voltage polarity phase differed depending on the O2 ratio. In addition, the electrostatic repulsion forces between the residual charge and the newly created filament were analysed from the measured potential distribution, and the greatest effect was observed in air, rather than in N2 and O2. The potential distribution was transformed into a charge density distribution and compared with the discharge luminescence in air and N2. The results showed that the shape of the filament tip differed between the charge density and discharge luminescence only in the case of air, which was attributed to the effect of attachment reactions on the formation of residual charge. The measurements showed that in a surface discharge, similar to the case in a volume discharge, the photoionisation and ionisation coefficients significantly affected the geometrical properties of the discharges.
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氮氧比对重复表面介质势垒放电产生的表面电荷分布的影响
关于介质表面参数和介质势垒放电(DBD)特性的研究很少考虑到 DBD 中气体对表面电荷分布的影响。因此,为了克服这一研究空白,本研究利用波克尔斯效应测量了氧气(O2)、合成空气和氮气(N2)作为背景气体的交流驱动表面介质势垒放电(SDBD)的电势分布。结果表明,在正电压极性阶段产生的丝状放电形态因氧气比例而异。此外,还根据测得的电势分布分析了残余电荷与新产生的丝状物之间的静电斥力,结果表明,在空气中的影响最大,而在 N2 和 O2 中的影响最小。电势分布被转化为电荷密度分布,并与空气和 N2 中的放电发光进行比较。结果表明,只有在空气中,电荷密度和放电发光之间的灯丝尖端形状才有所不同,这归因于附着反应对残余电荷形成的影响。测量结果表明,在表面放电中,与体积放电的情况类似,光离子化和电离系数对放电的几何特性有显著影响。
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