雷电冲击电压下氧化锌避雷器瞬态电场计算

Shiyi Zhou, Haoran Wang, H. Tian, Zehua Wu, Jianwei Cheng, Peng Liu, Zongren Peng
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引用次数: 3

摘要

氧化锌避雷器受雷击电压等快速变化的激励时,其频域波形包含许多不同频率的谐波分量,其响应是各谐波分量的响应之和。然而,现有的电力设备耐雷击性能仿真分析几乎没有考虑某些材料的影响,如压敏电阻,其介电常数随频率变化。此外,在IEC中,氧化锌避雷器聚合物外壳的耐雷击电压试验不使用压敏电阻或用变压器油代替压敏电阻。本文考虑了介电常数随频率的变化,并从实验中获得了计算材料的参数。通过MATLAB软件和傅里叶分析,将雷电波分解为不同频率波形的和。利用COMSOL有限元软件计算了氧化锌避雷器在雷击电压作用下的瞬态电场分布。另外两种不考虑介电常数变化和用变压器油代替压敏电阻的相同模型分别计算。对三种结果进行比较,最大电场强度的相对增幅可达20.18%。因此,这种计算氧化锌避雷器瞬态电场(TEF)分布的方法更准确,更有意义,可以推广到其他电力设备中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transient Electric Field Calculation of Zinc oxide arrester under Lightning Impulse Voltage
For a fast changing excitation like lightning impulse voltage which is applied to a zinc oxide arrester, its waveform in frequency domain contains many different frequency harmonic components and its response is the sum of the response of each harmonic component. Nevertheless, the existing simulation analysis of electric power equipment's lightning withstand performance almost doesn't consider the effects of some materials, like varistors, whose permittivity vary with frequency. Moreover, in the IEC, the lightning impulse withstand voltage test of zinc oxide arrester's polymeric house is without the varistors or with transformer oil instead of the varistors. In this paper, the variation of permittivity with frequency is considered, and material parameters for calculation are acquired from experiments. By using software MATLAB and Fourier analysis, the lightning wave is resolved into a sum of different frequency waveforms. The transient electric field (TEF) distribution of a zinc oxide arrester under lightning impulse voltage is computed with finite element software COMSOL. Other two same models without considering the variation of permittivity and with transformer oil instead of the varistors are computed separately. The three results are compared and the relative increase of maximum electric field strength can be as high as 20.18%. Therefore, this method for calculating the transient electric field (TEF) distribution of the zinc oxide arrester is more accurate and more meaningful, and can be promoted to other electric power equipment.
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