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Numerical Study of Influence of Frequency and Eddy Currents on Arc Motion in Low-Voltage Circuit Breaker

机译:频率和涡流对低压断路器电弧运动影响的数值研究

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The air circuit breaker used for permanent magnet wind power generation systems should switch OFF the short-circuit current of variable frequencies. This paper focuses on the influence of frequency on the behavior of air arc. A 3-D magnetohydrodynamic (MHD) model of air arc plasma was developed to investigate the arc motion process at variable frequencies. In this model, the eddy currents in the whole calculation domains including the electrodes, the splitter plate, and the arc column were considered, and the magnetic vector potential approach was adopted to calculate the electromagnetic field produced by the current loop. A thin layer of elements with a nonlinear voltage-current density characteristic surrounding the splitter plate was employed to represent the formation of new arc roots and electrodes voltage drop. Based on this model, the evolutions of arc voltage, temperature, normalized time, and current density were obtained and compared among variable frequencies. The simulation results reveal that the normalized time, the eddy current density peak in splitter plate, and the arc voltage peak increase at a higher frequency.
机译:用于永磁风力发电系统的空气断路器应关闭可变频率的短路电流。本文着眼于频率对电弧行为的影响。建立了电弧等离子体的3D磁流体动力学(MHD)模型,以研究可变频率下的电弧运动过程。在该模型中,考虑了整个计算域中的涡流,包括电极,分隔板和弧形柱,并采用了磁矢量势方法来计算由电流回路产生的电磁场。围绕分隔板采用具有非线性电压-电流密度特性的薄元件层来表示新的电弧根和电极电压降的形成。在此模型的基础上,获得了电弧电压,温度,归一化时间和电流密度的变化,并在可变频率之间进行了比较。仿真结果表明,归一化时间,分流板中的涡流密度峰值和电弧电压峰值在较高频率下增加。

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