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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Barrier properties influence on the surface dielectric barrier discharge driven by single voltage pulses of different duration
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Barrier properties influence on the surface dielectric barrier discharge driven by single voltage pulses of different duration

机译:屏障特性对不同持续时间的单电压脉冲驱动的表面介质阻挡放电的影响

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This paper presents the measurements of discharge length for surface dielectric barrier discharge driven by single voltage pulses with different voltage slopes (0.05-3.4kV ns(-1)) and different amplitudes of the pulses (7-15 kV). The measurements were carried out for different barrier dielectric materials characterized by relative dielectric permittivity epsilon from 2 to 35 and different thickness (0.8-5 mm). For all the voltage pulses, the discharge has a channeled structure and the discharge length decreases with increased epsilon value. The discharge length dependence on dielectric thickness is not notable. The comparison of experimental results with predictions of the analytical model leads to the conclusion that for positive voltage pulses, the discharge development occurs as a set of separate 3D streamers rather than a 2D plasma sheet even in the case of maximal considered 3.4 kV ns(-1) voltage slope. The measured discharge lengths lay in between the predictions of the 2D and 3D models.
机译:本文介绍了由具有不同电压斜率(0.05-3.4kV ns(-1))和脉冲的不同幅度(7-15kV)的单电压脉冲驱动的表面介质阻挡放电的放电长度的测量。对不同的阻挡介电材料进行测量,其特征在于相对介电介电常数εε,来自2至35个,厚度(0.8-5mm)。对于所有电压脉冲,放电具有通道结构,并且放电长度随着ε值的增加而降低。对介电厚度的放电长度依赖性是不值得注意的。实验结果与分析模型的预测的比较导致结论是,对于正电压脉冲,即使在最大化的3.4kV ns( - )的情况下,也是作为一组单独的3D飘带而不是2D等离子体板的放电开发。 1)电压斜率。测量的放电长度置于2D和3D模型的预测之间。

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