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Investigation of a Single Dielectric Barrier Discharge in Submillimeter Air Gaps: Uniform Field

机译:亚毫米空气隙中单个介质阻挡放电的研究:均匀场

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摘要

The characteristics of a single discharge in 0.01-0.2-cm air gaps are investigated under atmospheric pressure between the metal electrodes and in the presence of a polymer barrier on one of the electrodes. The experimentally determined surface charge density distributions are satisfactorily described by a 2D Gaussian function with the proposed parameters. In the uniform field, the breakdown voltage weakly depends on the presence of a dielectric barrier. At the same time, the change from the positive to negative polarity of the metal electrode leads to a manifold increase in the discharge current and in the surface charge. The breakdown occurs under considerable overvoltage; the estimates indicate the streamer mechanism of the breakdown.
机译:在金属电极之间的大气压下,在其中一个电极上存在聚合物阻挡层的情况下,研究了0.01-0.2-cm气隙中的单次放电特性。实验确定的表面电荷密度分布可通过带有建议参数的二维高斯函数令人满意地描述。在均匀场中,击穿电压几乎取决于介电势垒的存在。同时,从金属电极的正极性到负极性的变化导致放电电流和表面电荷的增加。击穿是在相当大的过电压下发生的。估计值表明故障的流光机制。

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