首页> 外文期刊>International Journal of Applied Mathematics and Computer Science >A MIXED TYPE BOUNDARY-VALUE PROBLEM RELATED TO THE ELECTROSTATICS OF COLD PLASMA JET REACTORS BASED ON DIELECTRIC BARRIER DISCHARGE
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A MIXED TYPE BOUNDARY-VALUE PROBLEM RELATED TO THE ELECTROSTATICS OF COLD PLASMA JET REACTORS BASED ON DIELECTRIC BARRIER DISCHARGE

机译:基于介质屏障放电的冷等离子体射流反应器静电相关的混合型边值问题

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摘要

A semi-analytical model is presented for the determination of the electric field in reactors used for cold atmospheric pressure plasma (CAPP) jet production, based on the concept of dielectric barrier discharge (DBD). These systems are associated with various applications in contemporary engineering, ranging from material processing to biomedicine, and at the same time they provide many challenges for fundamental research. Here, we consider a simplified system configuration of a single driven electrode, surrounding a thin dielectric tube, which does not contribute to the electric field, since the potential variation is immediate due to its negligible size. By employing the cylindrical coordinate system that perfectly fits the present plasma jet reactor, we separate the area of electric activity into three distinct domains according to the imposed external conditions, while our analysis is restricted to the electrostatic limit of Maxwell's equations. To this end, cylindrical harmonic field expansions are used for the potential, which produce the corresponding electric fields in each subdomain. Due to the imposed mixed-type boundary value problem, additional linear terms are incorporated, leading to three possible analytical solutions of the physical problem under consideration. The efficiency of the method is demonstrated by comparing the final formulae with a numerical solution, followed by the relevant discussion.
机译:基于介电阻挡放电(DBD)的概念,提出了用于冷却大气压等离子体(CAPP)喷射产生的反应器中电场的半分析模型。这些系统与当代工程中的各种应用相关,从物料处理到生物医学,同时它们为基础研究提供了许多挑战。这里,我们考虑一个简化的单个驱动电极的系统配置,围绕薄电介质管,其对电场没有贡献,因为电位变化是由于其可忽略的尺寸而立即。通过采用完全适合本等离子体射流反应器的圆柱坐标系,我们根据施加的外部条件将电活动区域分成三个不同的结构域,而我们的分析仅限于麦克斯韦方程的静电极限。为此,圆柱形谐波场膨胀用于电位,其在每个子域中产生相应的电场。由于施加的混合型边值问题,并入了额外的线性术语,导致所考虑的物理问题的三种可能的分析解。通过将最终公式与数值解决方案进行比较,然后进行相关讨论来证明该方法的效率。

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