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A Study of Two-Dimensional Microdischarge Pattern Formation in Dielectric Barrier Discharges

机译:介质阻挡放电中二维微放电图形形成的研究

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Although microdischarges in dielectric-barrier discharges (DBDs) have been studied for the past century, their mutual interaction was explained only recently. This interaction is responsible for the formation of microdischarge patterns reminiscent of two-dimensional crystals. Depending on the application, microdischarge patterns may have a significant influence on DBD performance, particularly when spatial uniformity is desired. This paper presents the results of study of regular microdischarge pattern formation in DBD in air at atmospheric pressure. Experimental images of DBD (Lichtenberg figures) were obtained using photostimulable phosphors. A new method for analysis of microdischarge patterns that allow measuring the degree of pattern regularity was developed. Simulated and experimental patterns were compared using the newly developed method and comparison indicates the presence of interaction between microdischarges. Analysis of microdischarge patterns shows that regularity of the patterns increases with the number of excitation cycles used to produce the pattern.
机译:尽管在过去的一个世纪中已经研究了介电势垒放电(DBD)中的微放电,但它们的相互作用只是在最近才得到了解释。这种相互作用负责形成使人联想到二维晶体的微放电图形。取决于应用,微放电模式可能会对DBD性能产生重大影响,尤其是在需要空间均匀性时。本文介绍了在大气压下空气中DBD中规则的微放电模式形成的研究结果。使用光激发磷光体获得了DBD的实验图像(Lichtenberg图)。开发了一种用于分析微放电图案的新方法,该方法可以测量图案规则性的程度。使用最新开发的方法对模拟和实验模式进行了比较,比较表明微放电之间存在相互作用。对微放电图形的分析表明,图形的规律性随用于产生图形的激励周期数的增加而增加。

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