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The 3D numerical simulation of a transient vacuum arc under realistic spatial AMF profiles

机译:真实空间AMF轮廓下瞬态真空电弧的3D数值模拟

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Based on a transient and three-dimensional (3D) finite-volume model developed for diffuse vacuum arcs with external axial magnetic field (AMF), we analyse the characteristics of a transient vacuum arc plasma under different spatial AMF distributions in the contact gap. In particular, we discuss the influence of spatial AMF profiles typically found in commercial vacuum interrupters upon quantities of interest such as arc voltage, energy densities onto the anode, electron and ion temperatures. The dependence of the AMF field on the instantaneous current is explicitly taken into account as a function of time. The simulation results document that the distributions of current density and ion mass flow rate at the cathode have a significant effect on the quantities of the vacuum arc plasma, for example the density of the energy flux transported to the anode.
机译:基于为带有外部轴向磁场(AMF)的扩散真空电弧开发的瞬态和三维(3D)有限体积模型,我们分析了接触间隙中不同空间AMF分布下瞬态真空电弧等离子体的特性。特别是,我们讨论了通常在商用真空灭弧室中发现的空间AMF分布图对诸如电弧电压,阳极上的能量密度,电子和离子温度等感兴趣的量的影响。明确考虑了AMF场对瞬时电流的依赖关系,它是时间的函数。仿真结果表明,阴极处的电流密度和离子质量流率的分布对真空电弧等离子体的数量(例如,传输到阳极的能量通量的密度)有显着影响。

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