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On a Mixed–Boundary Value Problem Related to the Electrostatics of Plasma Jet Reactors

机译:与等离子射流反应器的静电有关的混合边值问题

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A semi–analytical model is presented for the determination of the electric field in Cold Atmospheric–Pressure Plasma jet systems (CAPP jets) in applications associated with plasma science and contemporary engineering. We consider a simplified system configuration of a single charged electrode, surrounding a dielectric tube of minor contribution to the field. Introducing the cylindrical geometry, we separate our domain in three distinct areas, as dictated from the external conditions. Based on the electrostatic limit of Maxwell’s equations, we use cylindrical harmonic potential field expansions that 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 solutions of the physical problem. The efficiency of our method is demonstrated by comparing the final formulae with a numerical solution, followed by the necessary discussion.
机译:提出了一种半分析模型,用于确定与等离子科学和当代工程相关的应用中的冷常压等离子射流系统(CAPP射流)中的电场。我们考虑了单个带电电极的简化系统配置,该带电电极围绕对电场贡献较小的介电管。在介绍圆柱几何形状时,我们根据外部条件将我们的区域划分为三个不同的区域。根据麦克斯韦方程组的静电极限,我们使用圆柱谐波势场展开来在每个子域中产生相应的电场。由于强加了混合型边值问题,因此合并了其他线性项,从而得出了物理问题的三种可能解决方案。通过将最终公式与数值解进行比较,然后进行必要的讨论,证明了我们方法的有效性。

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