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首页> 外文期刊>International journal of electrical power and energy systems >AC failure voltage of iced and contaminated composite insulators in different natural environments
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AC failure voltage of iced and contaminated composite insulators in different natural environments

机译:不同自然环境中冰和受污染的复合绝缘子的交流故障电压

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It is found that some composite insulators with faults in transmission lines have no defect when they are tested in the laboratory, so there is a certain difference between the laboratory and the actual transmission lines. Accordingly, in this paper, flashover tests of natural iced and contaminated composite insulators were conducted at Xuefeng Mountain Natural Icing Test Base in different natural environments, which overcomes the shortcomings of traditional laboratory simulation test methods. Then, AC failure voltages in 5 natural conditions (Dry, rime ice, pollution in cold fog, glaze-ice without icicles and glaze-ice with icicles) of composite insulators were obtained. In addition, the flashover processes in typical conditions were recorded and analyzed. Finally, withstand voltages with different failure probabilities were calculated. The results indicate that the flashover voltage varies greatly in different environments. The maximum flashover voltage is 2.43 times more than the minimum. Besides, both rime ice and dry flashover voltage and equivalent salt deposit density (ESDD) are independent of each other. But there is a negative power function (NPF) relationship between both pollution and glaze-iced flashover voltage and ESDD in natural environment. What's more, compared with exponential function, power function is more suitable for fitting function between glaze-ice flashover voltage and glaze-ice weight. Last, the gradient flashover voltage E-alpha with alpha% failure probability can be calculated by tested flashover voltages through variable substitution. Further, E-10, E-5 and E(mu-3 sigma) were obtained which can provide important guidance for insulation design in different natural environments.
机译:发现一些具有在实验室测试时传输线路故障的复合绝缘体在实验室中没有缺陷,因此实验室与实际传输线之间存在一定的差异。因此,在本文中,在不同自然环境中的Xuefeng山自然糖霜试验基础上进行了天然冰和受污染的复合绝缘体的闪络试验,克服了传统实验室模拟试验方法的缺点。然后,获得了5个天然条件(干燥,霜冰,冷雾污染,没有冰柱和冰布的釉冰与冰柱)的AC失效电压得到了复合绝缘体的。此外,记录和分析了典型条件下的闪络过程。最后,计算了具有不同故障概率的耐受电压。结果表明,闪络电压在不同的环境中变化很大。最大闪络电压比最小值大2.43倍。此外,霜冰和干燥闪络电压和等效盐沉积密度(ESDD)彼此独立。但是在自然环境中污染和釉料刷新电压和ESDD之间存在负功率功能(NPF)关系。更重要的是,与指数函数相比,功率功能更适合于釉冰闪络电压和釉料 - 冰重的拟合功能。最后,可以通过通过可变替换测试的闪络电压来计算具有α%故障概率的梯度闪光镜电压E-α。此外,获得了E-10,E-5和E(MU-3 Sigma),其可以为不同的自然环境中的绝缘设计提供重要指导。

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