内华达大学拉斯维加斯分校内华达震波的现状

R. Schill, W. Culbreth, C. Nielsen, M. Popek, N. Sipe, B. Blackstone, S. Goldfarb, W. Fitzgerald, J. Larson, M. Walker, S. Nosal, G. Lull, J. Viggato, T. Raymond, V. Subramanian, R. Kant, B. Murugan, S. Çapar
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引用次数: 0

摘要

内华达震波器是基于马克思银行和Blumlein技术的540千伏,7 /spl ω / 50 ns脉冲功率装置。马克思银行是由9个60千伏电容器串联充电与一个伽马高压源通过罗斯继电器连接在空气环境。用一个隔离的微型电容器组激励的三管开关来建立马克思组。三管开关和安装电极包含在气体歧管中,用干燥空气加压至20 /spl plusmn/ 1 psi。能量通过电感器和充水的充电传输线依次释放到浸入去离子水中的Blumlein。Blumlein在放电时将能量成形并压缩为50ns脉冲。自断水开关启动Blumlein的能量释放。能量通过充满水的放电传输线流到内华达激波器的二极管端。Blumlein的电流二极管端支持低至6.5 /spl倍/ 10/sup -6/ Torr的真空压力。该腔室由粗泵和低温真空泵泵送。内华达震波器的真空部分目前正在重建,以将机械和热载荷能力与位于实验中的传感器结合起来。目前正在进行一些诊断发展,以支持塑料的闪络研究。在6 GHz 20 GS/s TDS 6604实时示波器的帮助下,电阻探头和差分b点诊断证明了机器的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Status of the Nevada shocker at the University of Nevada Las Vegas
The Nevada shocker is a 540 kV, 7 /spl Omega/, 50 ns pulsed power device based on Marx bank and Blumlein technologies. The Marx bank is composed of nine 60 kV capacitors charged in series with a gamma high voltage source connected by means of Ross relays in an air environment. A trigatron switch energized with an isolated mini capacitor bank is used to erect the Marx bank. The trigatron switch and erecting electrodes are contained in a gas manifold pressurized to 20 /spl plusmn/ 1 psi with dry air. The energy is released sequentially through an inductor and a water filled charging transmission line to the Blumlein immersed in deionized water. The Blumlein shapes and compresses the energy into a 50 ns pulse upon discharge. A self-breaking water switch initiates the release of energy in the Blumlein. The energy flows through a water filled discharging transmission line to the diode end of the Nevada Shocker. The current diode end of the Blumlein supports vacuum pressures as low as 6.5 /spl times/ 10/sup -6/ Torr. The chamber is pumped with the aid of a roughing pump and a cryogenic vacuum pump. The vacuum section of the Nevada Shocker is currently being rebuilt to incorporate mechanical and thermal loading capabilities with sensors located at the experiment. A number of diagnostic developments are currently underway to support flashover studies on plastics. Resistive probe and differential B-dot diagnostics with the aid of a 6 GHz 20 GS/s TDS 6604 real time scope is documented demonstrating the capability of the machine.
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