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Effect of eddy currents on the current interruption performance of axial magnetic field type of vacuum interrupters

机译:涡流对真空断电器轴磁场型电流中断性能的影响

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In the axial magnetic field (AMF) type of vacuum interrupters (VI), the design of their contact system is such that the magnetic field is oriented parallel to the arc. AMF keeps the arc diffused, and the value of the current-up to which the arc stays diffused depends on the contact diameter and the magnitude of the axial field. A certain minimum AMF is required to keep the arc diffused. AMF also induces eddy currents in the contact discs. This paper analyses the effect of eddy currents induced in the discs on AMF between the contacts, especially near the current zero region. This analysis incorporates the opening motion of the contacts along with the variation of the coil currentwith time. Initially, a 2-D axis symmetric model of the AMF contact is simulated to determine the radial variation ofthe magnetic field along a plane mid-way between the two separating contacts. A 3-D model of the AMF contact is then analyzed to include the effect of radial slots in the contact plate. The change in the magnetic field profile with the number of slots is studied.
机译:在轴向磁场(AMF)类型的真空中断器(VI)中,其接触系统的设计使得磁场与弧平行定向。 AMF使电弧扩散,并且电流扩散的电流的值取决于轴向场的触头直径和大小。需要一定的最小AMF来保持电弧扩散。 AMF还诱导接触盘中的涡流。本文分析了在触点之间的圆盘上诱导的涡流的效果,特别是在电流零区附近。该分析包括触点的开口运动以及线圈电流的变化。最初,模拟AMF接触的2-D轴对称模型以确定沿两个分离触点之间的平面中途的磁场的径向变化。然后分析AMF接触的3d模型以包括径向槽在接触板中的效果。研究了具有槽数的磁场轮廓的变化。

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