Simultaneous measurement of electrical potential on both sides of the dielectric surface in a parallel-plate dielectric barrier discharges and analysis of net electric field

Yuanmeng Lu, Ryo Ono, A. Komuro
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Abstract

Dielectric barrier discharges (DBDs) are widely used for ozone generation and surface treatment owing to their ability to generate reactive species. Surface charges generated during discharges distort the electric field between the dielectrics and affect the generation of reactive species. Therefore, the net electric field variations are of significant interest. Herein, a DBD measurement system based on the Pockels effect is established for the first time. The proposed system can simultaneously measure the surface potentials on both sides of the dielectric, thereby obtaining the net electric field at the discharge gap. The net electric field distribution varies insignificantly with the magnitude of the applied voltage but significantly with gap length. Moreover, the breakdown electric field increases with a decreasing gap length. This study provides a physical explanation for microgap reactors, demonstrating that the electric field in a DBD can be manipulated.
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平行板介电势垒放电中介质表面两侧电势的同步测量和净电场分析
介质阻挡放电(DBD)由于能够产生活性物质,因此被广泛用于臭氧生成和表面处理。放电过程中产生的表面电荷会扭曲电介质之间的电场,影响活性物质的生成。因此,净电场变化具有重要意义。本文首次建立了基于波克尔斯效应的 DBD 测量系统。该系统可同时测量电介质两侧的表面电位,从而获得放电间隙处的净电场。净电场分布随外加电压大小的变化不大,但随间隙长度的变化很大。此外,击穿电场随着间隙长度的减小而增大。这项研究为微隙反应器提供了一种物理解释,证明了 DBD 中的电场是可以操控的。
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