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AC flashover characteristics of insulators under haze–fog environment

机译:雾霾环境下绝缘子的交流闪络特性

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The occurrence of large-scale haze-fog weather in some developing countries brings a new threat to the safe operation of outdoor insulation. In order to study the effect of the haze-fog on the flashover performance of insulators and the flashover mechanism, kieselguhr, calcium sulphate (CaSO4) and ammonium sulphate ((NH4)2SO4) in different particle sizes were mixed with ultrasonic fog to simulate the haze-fog environment and quantitative ac flashover experiments on the standard suspension porcelain insulator were carried out. The test results indicate that the flashover voltage is related with the pollution degree, particle component, particle size and fog-water conductivity, and may decrease by more than 20% under haze-fog environment. The effect of salt aerosols on flashover voltage is determined by the solubility and larger than that of non-soluble mineral aerosols or organic carbon aerosols. The flashover voltage increases with the increase of the particle size, but decreases with the increase of fog-water conductivity. The flashover of insulator under haze-fog condition is a special kind of pollution flashover in essence.
机译:在某些发展中国家,大雾霾天气的发生给室外保温材料的安全运行带来了新的威胁。为了研究雾霾对绝缘子闪络性能的影响和闪络机理,将不同粒径的硅藻土,硫酸钙(CaSO4)和硫酸铵((NH4)2SO4)与超声雾混合以模拟雾化。在标准悬浮式瓷绝缘子上进行了雾霾环境和交流闪络定量实验。测试结果表明,闪络电压与污染程度,颗粒成分,粒径和雾水电导率有关,在雾霾环境下可能降低20%以上。盐气溶胶对闪络电压的影响由溶解度决定,并且大于非可溶性矿物气溶胶或有机碳气溶胶。闪络电压随粒径的增加而增加,但随雾水电导率的增加而降低。雾霾条件下绝缘子的闪络本质上是一种特殊的污染闪络。

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