干带对特高压避雷器性能的影响及泄漏电流监测,采用新开发的模型

A. Zahedi
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引用次数: 9

摘要

金属氧化物压敏电阻用作电压依赖开关器件,以保护高压设备和低压电子设备免受瞬态过电压的影响。氧化锌避雷器的性能取决于金属氧化物的电学和热学性能、所用的绝缘材料以及避雷器的设计特点。应用金属氧化物SA的主要考虑因素是对环境的热考虑。环境温度和环境条件直接影响金属氧化物SA吸收的内部电流和输入的能量的性能。受污染的瓷壳与内压敏电阻柱之间由于电容耦合而产生的相互作用是导致压敏电阻元件温升的原因。如果机组的瓷壳受到工业粉尘、海岸盐等污染,则金属氧化物SAs暴露在严重的热和电应力下。本文第一部分提出了一种电学模型,并对其进行了计算机模拟,用于泄漏电流的研究;第二部分介绍了干带对SA性能的影响以及干带造成的损伤。
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Effect of dry band on performance of UHV surge arrester and leakage current monitoring, using new developed model
The metal oxide varistors are used as voltage dependent switching devices to protect high voltage equipment and also low voltage electronic devices against transient overvoltages. The performance of a ZnO surge arrester (SA) is determined by the electrical and thermal properties of metal oxide elements, insulating materials used and design features of SA. The primary consideration in applying metal oxide SA is the thermal consideration of the environment. Ambient temperature and environmental conditions directly affect the performance of internal current drawn by and energy input to the metal oxide SA. The interaction between the polluted porcelain housing and the inner varistor columns due to capacitive coupling is responsible for the temperature rise of the varistor element. Metal oxide SAs are exposed to heavy thermal and electrical stresses if the porcelain housings of the units are polluted by industrial dusts, coastal salts, etc. The first part of this paper proposes an electrical model of SA that is computer simulated for leakage current investigation and the second part presents the effect of dry band on the performance of SA and damage due to this dry band.<>
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