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Numerical investigation of co-axial DBD: Influence of relative permittivity of the dielectric barrier, applied voltage amplitude and frequency

机译:同轴DBD的数值研究:介质阻挡层的相对介电常数,施加的电压幅度和频率的影响

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摘要

In this work, a one-dimensional numerical uid model is developed for co-axial dielec- tric barrier discharge (DBD) in pure helium and a parametric study is performed to systematically study the in uence of relative permittivity of the dielectric barrier and the applied voltage amplitude and frequency on the discharge performance. Discharge current, gap voltage and spatially averaged electron density pro les are presented as a function of relative permittivity and voltage parameters. For the geometry un- der consideration, both the applied voltage parameters are shown to increase the maximum amplitude of the discharge current peak up to a certain threshold value, above which it stabilized or decreased slowly. The spatially averaged electron density pro les follow a similar trend as the discharge current. Relative permittivity of the dielectric barrier is predicted to have a positive in uence on the discharge current. At lower frequency it is also shown to lead a transition from Townsend to glow dis- charge mode. Spatially and time averaged power density is also calculated and is shown to increase with increasing relative permittivity, applied voltage amplitude and frequency.
机译:在这项工作中,为纯氦中的同轴介电势垒放电(DBD)开发了一个一维数值uid模型,并进行了参数研究以系统地研究介电势垒的相对介电常数的影响及其应用。电压幅度和频率对放电性能的影响。放电电流,间隙电压和空间平均电子密度曲线是相对介电常数和电压参数的函数。考虑到几何形状,两个施加的电压参数均显示为将放电电流峰值的最大幅度增加到某个阈值,在此阈值之上,该电流稳定或缓慢降低。空间平均电子密度分布遵循与放电电流相似的趋势。预计介电势垒的相对介电常数对放电电流有正影响。在较低的频率下,它还显示出从Townsend到辉光放电模式的过渡。还计算了空间和时间平均功率密度,并显示出随着相对介电常数,施加的电压幅度和频率的增加而增加。

著录项

  • 作者

    Gadkari Siddharth; Gu Sai;

  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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