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A MODEL FOR DC INTERRUPTION IN DIFFUSE VACUUM ARCS.

机译:扩散真空弧中的直流中断模型。

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摘要

A theoretical model for current interruption in a diffuse vacuum arc is described. Before current zero, the interelectrode plasma is modeled as an ion-neutral fluid through which the electrons are flowing. Immediately after current zero there is a short period during which the plasma resistance remains low while the direction of the electron flow is reversed. Upon reversal of the electron flow, a positive ion sheath grows into the plasma from the fomer anode driven by the transient recovery voltage.; The decay of the interelectrode plasma during interruption is described mathematically by the one-dimensional unsteady compressible flow equations, which are solved numerically using a modified method of characteristics, whereby the characteristic directions are calculated at points on a predetermined grid.; The growth of the positive ion sheath into the plasma after current zero is calculated using the unsteady sheath equations, enabling the post-arc current, the electric field at the former anode, and the power input to that same electrode to be evaluated using a fourth order Runge Kutta technique.; The post-arc data generated with the interruption model can be used to study reignition mechanisms in vacuum arcs. It is postulated that the electric field at the former anode and the power input to that electrode are critical factors in the establishment of a cathode spot which can lead to reignition during the first microseconds after current zero.; The theoretical model has been applied to practical interrupters with copper and beryllium electrodes. In order to check the theoretical analysis a DC commutation circuit has been constructed to test vacuum interrupters under severe conditions. The initial experimental post-arc data for interrupters with copper electrodes is in good agreement with the theoretical predictions. A comparison of the conditions under which failures occur experimentally with the model results, indicates that the interrupters reignite when the electric field at the former anode is greater than 10('7) V/m and the power input to that same surface exceeds 3 x 10('7) W/m('2).; The model predictions of the post-arc current for interrupters with beryllium electrodes are somewhat lower than the data of other experimenters would indicate. The validity of the ion-neutral model, used successfully for copper vacuum arcs, is in some doubt for beryllium vacuum arcs, due to the longer mean free paths between collisions in the beryllium metal vapor. Some suggestions for improving the plasma model under these conditions are given.
机译:描述了扩散真空电弧中电流中断的理论模型。在电流为零之前,将电极间等离子体建模为电子流过的离子中性流体。在电流为零之后立即有一个短时间,在此期间,等离子体电阻保持较低,而电子流的方向反向。当电子流逆转时,在瞬态恢复电压的驱动下,正离子鞘层从自发阳极进入等离子体。电极间等离子体在中断期间的衰减通过一维非定常可压缩流动方程进行数学描述,该方程使用改进的特征方法进行数值求解,从而在预定网格上的点处计算特征方向。使用非稳态鞘层方程计算电流为零后正离子鞘层向等离子体的生长,从而可以使用第四种方法评估弧后电流,前一个阳极处的电场以及输入该相同电极的功率订购Runge Kutta技术。由中断模型生成的弧后数据可用于研究真空电弧中的点火机制。假定前一个阳极处的电场和输入该电极的功率是建立阴极点的关键因素,在电流为零后的最初几微秒内,阴极点可能导致重新点火。该理论模型已应用于带有铜和铍电极的实用灭弧室。为了检查理论分析,已经构造了直流换向电路以在恶劣条件下测试真空灭弧室。带有铜电极的灭弧室的初始实验弧后数据与理论预测非常吻合。通过实验将失效条件与模型结果进行比较,表明当前一个阳极上的电场大于10('7)V / m且输入到同一表面的功率超过3 x时,灭弧室重新点燃。 10('7)W / m('2)。带有铍电极的灭弧室的电弧后电流模型预测比其他实验者的数据要低一些。对于铍真空电弧,成功地用于铜真空电弧的离子中性模型的有效性在一定程度上令人怀疑,这是由于铍金属蒸气之间的碰撞之间的平均自由程更长。提出了在这些条件下改善等离子体模型的一些建议。

著录项

  • 作者

    CHILDS, SUSAN ELIZABETH.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1980
  • 页码 234 p.
  • 总页数 234
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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