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Numerical Study of Arc Motion Process Considering Ferromagnetic Material in Multiple Parallel Contacts System

机译:多重并联接触系统中考虑铁磁材料的电弧运动过程的数值研究

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Air circuit breaker (ACB) is widely used in power distribution system. The movable contact of ACB consist of multiple parallel contacts and the arc will be ignited when the short-circuit current appears. This paper focuses on the arc motion process in multiple parallel contacts system. A 3-D magneto-hydro-dynamic (MHD) model of multiple parallel contacts system is built. In this model, the nonlinear B-H curve of splitter plate is used in calculation. The magnetic vector potential approach is adopted to calculate the time-varying electromagnetic field produced by the current loop. The difference of voltage drop between near-anode and near-cathode is considered. In addition, the interaction among multiple parallel contacts is included in numerical simulation. Based on this calculation, the arc voltage, temperature and current density were obtained. The arc motion process is analyzed by current density and temperature. The simulation results show that the anode arc root will appears on multiple contacts with the increase of current. The upper arc moves faster than low arc after the arc column is divided by the splitter plate.
机译:空气断路器(ACB)广泛用于配电系统。 ACB的活动触点由多个并联触点组成,当出现短路电流时,电弧会被点燃。本文着重研究多并联触头系统中的电弧运动过程。建立了多并联触头系统的3D磁流体动力学(MHD)模型。在该模型中,使用了隔板的非线性B-H曲线进行计算。采用磁矢量势方法来计算电流回路产生的时变电磁场。考虑了近阳极和近阴极之间的压降差。另外,数值模拟中包括多个并联触点之间的相互作用。基于该计算,获得了电弧电压,温度和电流密度。通过电流密度和温度分析电弧运动过程。仿真结果表明,随着电流的增加,阳极电弧根将出现在多个触点上。在弧形柱被分隔板分开后,上弧的运动快于下弧的运动。

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