Simulation of Free Burning Arcs and Arcs Inside Cylindrical Tubes Initiated by Exploding Wires

A. Kadivar, K. Niayesh
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引用次数: 2

Abstract

This paper is devoted to fundamental physics and numerical simulation of arcs initiated by an exploding wire. That is primarily used to perform simplified experiments on switching arcs without having complex moving contacts or for study the switching arc under controlled conditions. One of the main issues in the accuracy of these experiments is that a certain amount of metal vapor is inserted into the arcing medium, which can affect the switching arc characteristics through affecting the thermodynamic characteristics of the gas mixture.The current study aims to address this issue by solving the magneto-hydrodynamics (MHD) equations in local thermodynamic equilibrium (LTE) for temperature and electric potential. Impact of copper vapor on arc characteristics has been considered throughout modeling thermal and electrical conductivity as well as radiation properties for metal vapor percentage in the gas mixture.Current magnitude effect on arc characteristics is studied through increasing arc current to 300 and 600 A in experimentally verified MHD model for the free-burning arc. Results of the experimental setup are utilized to support and verify this study.Effects of severely arc quenching through very narrow tubes (150 A through nozzle diameter of 2 mm) on thermal arc behavior, maximum current density inside the tube and arc voltage oscillations near current zeros are investigated through MHD simulations. The simulation results show good agreement with the experimental results except at current zeros, where the LTE conditions are not fulfilled.
自由燃烧电弧和爆炸导线引发的圆柱管内电弧的模拟
本文研究了爆炸导线引发电弧的基本物理和数值模拟问题。它主要用于在没有复杂运动触点的情况下对开关电弧进行简化实验或在受控条件下研究开关电弧。这些实验准确性的主要问题之一是在电弧介质中插入一定量的金属蒸气,它会通过影响气体混合物的热力学特性来影响开关电弧特性。本研究旨在通过求解温度和电势局部热力学平衡(LTE)中的磁流体动力学(MHD)方程来解决这一问题。铜蒸气对电弧特性的影响在整个建模过程中都考虑到了热导率和电导率,以及气体混合物中金属蒸气百分比的辐射特性。在实验验证的自由燃烧电弧MHD模型中,通过将电弧电流增加到300和600 A,研究了电流大小对电弧特性的影响。利用实验装置的结果来支持和验证本研究。通过MHD模拟研究了极窄管(喷嘴直径为2mm,电流为150 A)剧烈灭弧对热电弧行为、管内最大电流密度和电流零点附近电弧电压振荡的影响。除了在电流零点处不满足LTE条件外,仿真结果与实验结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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