Electrostatic Field Calculations for Liquid Nitrogen Gaps Assuming a Decisive Field Factor

S. Fink
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引用次数: 1

Abstract

Volume effect on breakdown voltage is well known in high voltage engineering. The breakdown voltage behavior of liquid nitrogen depending on a high field volume had been quantitatively described for gap lengths up to 20 mm. Breakdown curves for longer gap lengths up to 96 mm derived from measurements with a facility “Fatelini 2” show oscillations and partly low withstand voltages. Electrostatic field calculation for such long gaps shows remarkable high field volume differences between a model for ideal sphere and models including fixation rods. Calculation for the used setup does not show monotonically increasing high field volume depending on gap length but a maximum around 60 mm which can explain the special breakdown behavior in a “mid range” gap length. Further high field calculations were done for not yet used setups in order to make considerations, e.g. for the influence of cryostat material or diameter.
假设决定性电场因子的液氮间隙静电场计算
在高压工程中,体积效应对击穿电压的影响是众所周知的。液氮的击穿电压行为依赖于高场体积已经定量描述的间隙长度高达20毫米。从“Fatelini 2”设备测量得出的长达96毫米的较长间隙的击穿曲线显示振荡和部分低耐压。对这种长间隙的静电场计算表明,理想球模型与含固定棒模型的场体积差异很大。对所用装置的计算并没有显示出高场体积随间隙长度的单调增加,而是显示出最大在60 mm左右,这可以解释在“中程”间隙长度下的特殊击穿行为。为了考虑低温恒温器材料或直径的影响,对尚未使用的装置进行了进一步的高场计算。
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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