高压频率对空气常压气体放电中粒子密度影响的数值研究

IF 0.9 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
Fariborz Momtazzadeh, Farshad Sohbatzadeh, Hamed Soltani Ahmadi, Ramin Mehrabifard
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引用次数: 0

摘要

在过去的几十年里,等离子体技术在各个领域的研究得到了扩展,其在不同工艺中的应用也有所增加。因此,实现理想和实用的等离子体具有特定的特性是特别重要的。施加电压的频率是影响其物理和化学特性的重要因素之一。在这项研究中,研究了使用介电屏障和空气工作气体的放电中产生的活性物质密度的变化,频率从500赫兹到500千赫,并通过施加2千伏的恒定电压进行了研究。为此,在COMSOL Multiphysics中定义了87种具有特定碰撞截面的不同反应。对电流-电压波形、电场、物种密度(\({\text{NO}}\)、\({\text{OH}}\)、\({\text{O}}_{2}^{ + }\)、\({\text{O}}_{3}\)等)等参数进行评价。结果表明:在完全相同的条件下,电子温度分布随施加频率的增加而变化,(\({\text{NO}}\), \({\text{OH}}\), \({\text{O}}_{3}\),.)等活性氧和活性氮(RONS)的密度减小,但\({\text{O}}_{2}^{ + }\)呈增加趋势;值得注意的是,仿真结果与以往的实验和仿真报告吻合较好。这些结果为优化不同应用的血浆参数提供了有价值的见解,可能在一系列治疗领域产生更好的治疗结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Numerical investigation of the effect of high-voltage frequency on the density of RONS species in the air atmospheric pressure gas discharge

Numerical investigation of the effect of high-voltage frequency on the density of RONS species in the air atmospheric pressure gas discharge

In the last few decades, studies in various fields of plasma technology have expanded and its application in different processes has increased. Therefore, the achievement of a desirable and practical plasma with specific characteristics is of particular importance. The frequency of the applied voltage is one of the important factors that play a role in the physical and chemical characteristics. In this research, changes in the density of active species produced in an electrical discharge using a dielectric barrier and air working gas have been investigated, from a frequency of 500 Hz to 500 kHz, and by applying a constant voltage of 2 kV, have been investigated. For this purpose, 87 different reactions with specific collision cross-sections were defined in COMSOL Multiphysics. Other parameters, including current–voltage waveform, electric field, species density including \({\text{NO}}\),\({\text{OH}}\),\({\text{O}}_{2}^{ + }\),\({\text{O}}_{3}\), etc., were evaluated. The results show that under completely identical conditions, the electron temperature distribution changes with increasing applied frequency, and the density of reactive oxygen and nitrogen species (RONS) like (\({\text{NO}}\), \({\text{OH}}\), \({\text{O}}_{3}\),..) decreases, but \({\text{O}}_{2}^{ + }\) shows an increasing trend. It should be noted that the simulation results are in good agreement with the previous experimental and simulation reports. These results offer valuable insights into optimizing plasma parameters for different applications, potentially resulting in better treatment outcomes across a range of therapeutic domains.

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来源期刊
Journal of the Korean Physical Society
Journal of the Korean Physical Society PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.20
自引率
16.70%
发文量
276
审稿时长
5.5 months
期刊介绍: The Journal of the Korean Physical Society (JKPS) covers all fields of physics spanning from statistical physics and condensed matter physics to particle physics. The manuscript to be published in JKPS is required to hold the originality, significance, and recent completeness. The journal is composed of Full paper, Letters, and Brief sections. In addition, featured articles with outstanding results are selected by the Editorial board and introduced in the online version. For emphasis on aspect of international journal, several world-distinguished researchers join the Editorial board. High quality of papers may be express-published when it is recommended or requested.
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