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Application of photoionization models based on radiative transfer and the Helmholtz equations to studies of streamers in weak electric fields

机译:基于辐射转移和Helmholtz方程的光电离模型在弱电场中的拖缆研究中的应用

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摘要

Recent advances in development of photoionization models in air based on radiative transfer and Helmholtz equations open new perspectives for efficient solution of nonthermal gas discharge problems involving complex geometries. Many practical applications require accurate modeling of streamer discharges developing in weak electric fields, in which the photoionization process significantly contributes to discharge dynamics. This paper (1) reports original studies, which demonstrate the validity and accuracy of the recently proposed photoionization models for studies of streamers in weak electric fields, and (2) introduces efficient boundary conditions for the photoinization models based on radiative transfer theory.
机译:基于辐射转移和亥姆霍兹方程的空气光电离模型开发的最新进展为有效解决涉及复杂几何形状的非热气体排放问题开辟了新的前景。许多实际应用需要对在弱电场中产生的流光放电进行精确建模,其中光电离过程会极大地影响放电动力学。本文(1)报告了原始研究,这些研究证明了最近提出的用于在弱电场中研究拖缆的光电离模型的有效性和准确性,以及(2)为基于辐射转移理论的光电化模型引入了有效的边界条件。

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