Optical Diagnostics of the ZR Gas Switch

J. Woodworth, D. Bliss, M. Savage, K. LeChien, J. Maenchen, J. Lehr, J. Corley, K. Hodge, D. Guthrie, Z. Wallace, V. Anaya, G. Feltz, P. Wakeland, T. Thompson, J. Blickem, M. Hardin
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引用次数: 2

Abstract

Summary form only given. The ZR gas switch is a multistage gas switch designed to hold off a voltage of ~6 MV and then transmit a 600-kA current pulse to the water section of ZR. The first stage of the switch, which holds off approximately 900 kV, is laser triggered by the focused beam from a frequency-quadrupled ND:YAG laser operating at 266 nm. The breakdown of the laser-triggered section causes a wave of breakdowns in the remaining 22 gaps in the switch, starting near the laser-triggered section and cascading to the other end of the switch. The gaps in this "cascade" section normally break down in multiple arc channels, which lowers the overall inductance of the switch. We are observing the details of normal and abnormal switch operation with fast framing and streak cameras, observing the time-history of the light emitted by the switch with fast photo-detectors and taking time-integrated photographs of the switch. The diagnostics indicate that the laser-triggered gap normally begins conducting current 10-to-15 ns after the laser arrives in the gap, with the entire switch breaking down 45-to 55-ns after the laser beam arrives in the switch. Details of the experiments and the operation of different switches are presented.
ZR气体开关的光学诊断
只提供摘要形式。ZR气体开关是一种多级气体开关,设计用于保持~6 MV的电压,然后将600 ka电流脉冲传输到ZR的水段。开关的第一阶段,保持大约900千伏,是由激光触发的四倍频ND:YAG激光器的聚焦光束,工作在266nm。激光触发部分的击穿在开关剩余的22个间隙中引起击穿波,从激光触发部分附近开始,级联到开关的另一端。这个“级联”部分的间隙通常在多个电弧通道中击穿,这降低了开关的总体电感。我们正在用快速分幅相机和条纹相机观察开关正常和异常操作的细节,用快速光电探测器观察开关发出的光的时程,并拍摄开关的时间积分照片。诊断结果表明,激光触发的间隙通常在激光到达间隙后10 ~ 15ns开始传导电流,整个开关在激光束到达开关后45 ~ 55ns击穿。详细介绍了实验和不同开关的操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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