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Numerical investigation of the spatiotemporal distribution of chemical species in an atmospheric surface barrier-discharge

机译:大气表面阻挡放电中化学物质时空分布的数值研究

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摘要

Using a one dimensional time dependent convection-reaction-diffusion model, the temporal and spatial distributions of species propagating downstream of an atmospheric pressure air surface barrier discharge was studied. It was found that the distribution of negatively charged species is more spatially spread compared to positive ions species, which is attributed to the diffusion of electrons that cool down and attach to background gas molecules, creating different negative ions downstream of the discharge region. Given the widespread use of such discharges in applications involving the remote microbial decontamination of surfaces and liquids, the transport of plasma generated reactive species away from the discharge region was studied by implementing mechanical convection through the discharge region. It was shown that increased convection causes the spatial distribution of species density to become uniform. It was also found that many species have a lower density close to the surface of the discharge as convection prevents their accumulation. While for some species, such as NO_2, convection causes a general increase in the density due to a reduced residence time close to the discharge region, where it is rapidly lost through reactions with OH. The impact of the applied power was also investigated, and it was found that the densities of most species, whether charged or neutral, are directly proportional to the applied power.
机译:利用一维时间相关的对流反应扩散模型,研究了在大气压空气表面障碍物排放下游传播的物种的时空分布。发现与正离子种类相比,带负电荷的种类的分布在空间上散布得更多,这归因于冷却并附着在背景气体分子上的电子的扩散,在放电区域的下游产生了不同的负离子。考虑到这种放电在涉及对表面和液体的远距离微生物净化的应用中的广泛使用,通过在放电区域内进行机械对流来研究等离子体产生的反应性物种从放电区域的迁移。结果表明,对流的增加导致物种密度的空间分布变得均匀。还发现,由于对流阻止了它们的积累,许多物质在排放表面附近的密度较低。尽管对于某些物种(例如NO_2),对流会导致密度普遍增加,这是由于靠近放电区域的停留时间缩短,在该区域中,由于与OH的反应,对流迅速消失。还研究了施加功率的影响,发现大多数种类的密度(带电或中性)都与施加功率成正比。

著录项

  • 来源
    《Journal of Applied Physics》 |2016年第20期|203302.1-203302.9|共9页
  • 作者

    M.I. Hasan; J. L. Walsh;

  • 作者单位

    Department of Electrical Engineering and Electronics, The University of Liverpool, Brownlow Hill L69 3GJ, United Kingdom;

    Department of Electrical Engineering and Electronics, The University of Liverpool, Brownlow Hill L69 3GJ, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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