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Sheath layer modeling for switching arcs

机译:用于切换电弧的护套层建模

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摘要

Nowadays, in the field of electric arc simulation one the main research points focuses on the physically correct description of the near-electrodes regions that have been found to have a high influence on the entire discharge. Considerable advances for the theoretical description and the mathematical modeling of the sheath layers has been done in the last years. Simulation models that consider the interaction between the electrode and the plasma system through the sheath layers have been developed, improved, and compared with experimental data especially in the field of cutting arcs where the discharge has a much more stable behavior over the entire experimental time. In this paper an overview of the existing theoretical models will be given and their applicability in the field of switching arc modeling will be discussed. The main focus of the current study will be on the method used for implementing the empirical sheath layer models (Voltage-Current Density characteristics) considering three different simulation models. The main advantages and disadvantages of each model will be discussed together with the results obtained from experimental research.
机译:如今,在电弧模拟领域,主要的研究重点集中在对已发现对整个放电有很大影响的近电极区域的物理正确描述上。近年来,在对护套层进行理论描述和数学建模方面取得了相当大的进步。已经开发,改进了考虑到电极和等离子体系统通过鞘层之间相互作用的仿真模型,并将其与实验数据进行了比较,特别是在切割电弧的领域中,在整个放电时间内,放电行为都更加稳定。本文将概述现有的理论模型,并讨论它们在开关电弧建模领域的适用性。当前研究的主要重点是考虑三种不同的仿真模型来实现经验鞘层模型(电压-电流密度特性)的方法。将讨论每种模型的主要优点和缺点,以及从实验研究中获得的结果。

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