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首页> 外文期刊>Plasma Science, IEEE Transactions on >Characteristics of Self-Organized Structure in Microgap Dielectric Barrier Discharge at Atmospheric Pressure
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Characteristics of Self-Organized Structure in Microgap Dielectric Barrier Discharge at Atmospheric Pressure

机译:大气压下微涂层介质屏障放电自组织结构特征

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摘要

In the microplasma generated by dielectric barrier discharge (DBD), a huge variety of discharge patterns are generated by self-organization. In this study, we experimentally observed variation in the hexagonal structures in capacity-coupled microgap DBD using a helium (He)/argon (Ar) mixture. The spatial distribution of the self-organized structure was revealed via a discharge experiment in which the equivalent barrier capacitance was continuously changed within the range of 56–1500 pF. The results demonstrate that the lattice spacing of the patterns can be continuously controlled within the range of 1.22–1.59 mm for an equivalent barrier capacitance of 56–172 pF. It is likely that an increase in external capacitance increases the discharge cell voltage. In contrast, the lattice constant remained unchanged with an increase in barrier capacitance within a range of 172–1500 pF. The lattice spacing of the patterns could be continuously controlled within a range of 0.66–0.74 mm for all He/Ar gas mixing ratios.
机译:在通过介电阻挡放电(DBD)产生的显微载体中,通过自组织产生巨大的放电模式。在这项研究中,我们使用氦(HE)/氩气(AR)混合物在实验中观察到容量偶联的微藻DBD中的六边形结构的变化。通过放电实验揭示了自组织结构的空间分布,其中等同的阻挡电容在56-1500pf的范围内连续变化。结果表明,图案的晶格间距可以在1.22-1.59mm的范围内连续控制,用于56-172pf的等效阻隔电容。外部电容的增加可能会增加放电电池电压。相反,晶格常数保持不变,在172-1500pF的范围内增加阻挡电容。对于所有HE / AR气体混合比例,图案的晶格间距可以连续控制在0.66-0.74mm的范围内。

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