用液氮进行15分钟直流击穿试验

S. Fink, V. Zwecker
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引用次数: 2

摘要

液氮的介电强度是众多低温高压装置设计中的一个重要问题。在某些情况下,设计必须考虑由电阻加热引起的气泡,例如在电阻超导故障限流器的激活过程中。FASTGRID项目的目标是为直流电网提供液氮冷却超导故障限流器解决方案。高压测试设备Fatelini 2允许液氮高达325千伏的直流测试。采用钟形高压电极和地平面电极。在接地板内安装了加热器,以便通过视频观察验证气泡的产生。在不激活加热器的情况下,进行一小时电压应力作为初始电压步骤。在相同的电压下继续测试,持续时间为15分钟,但包括5个500w加热脉冲,每次持续时间为10 s。在没有击穿的情况下,在接下来的15分钟直流操作步骤中增加约10%的电压,每个步骤包括5个加热脉冲。仅在负极性情况下,最大检测间隙长度为96毫米。在大多数情况下,破裂发生在气泡产生的过程中。具有非常低干扰电压波形的轮廓线也确实出现了。这些试验获得的击穿电压值低于在不操作加热器的情况下进行的一系列试验。
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15 Min Dc breakdown tests with liquid nitrogen
The dielectric strength of liquid nitrogen is an important design issue for numerous cryogenic high voltage apparatus. In some cases the design must consider gas bubble occurrence caused by resistive heating, e.g. during activation of a resistive superconducting fault current limiter. The objective of the FASTGRID project is to support a liquid nitrogen cooled superconducting fault current limiter solution for DC grids. The high voltage test facility Fatelini 2 allows DC testing of liquid nitrogen up to voltages of 325 kV. A high voltage electrode with the shape similar to a bell and a ground plane electrode were used. A heater was installed within the ground plate in order to allow bubble generation which was verified via video observation. A one hour voltage stress was performed as an initial voltage step without activation of the heater. The test was continued with a duration of 15 min with the same voltage but including five 500 W heating impulses of 10 s duration, each. In case of no breakdown the test was followed by about 10% voltage increases for subsequent steps of 15 min DC operation including 5 heating impulses, each. The maximum examined gap length was 96 mm for negative polarity only. In most cases the breakdown occurred during bubble generation. An outliner with a very low disturbed voltage waveform did also occur. The breakdown voltage values obtained by these tests are lower than for test series which were performed without operation of the heater.
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