首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Modelling of flashover performance of an ice-covered resistive glazed post station insulator in presence of an air gap
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Modelling of flashover performance of an ice-covered resistive glazed post station insulator in presence of an air gap

机译:在存在气隙的情况下,覆冰的电阻玻璃桩后绝缘子的闪络性能建模

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The main objective of this paper is to study the electric field distributions around a standard post insulator for the power frequency, lightning impulse (1.2/50 mu s) and switching impulse (250/2500 mu s) voltages under icing conditions, and these were computed numerically using the finite element method. Thin glaze coating on the insulator requires a very large number of elements for finite element analysis because of the open boundary around the ice-covered insulator. To reduce the number of elements and hence computation time, the region between the domain of interest and infinity was modelled by a form of Kelvin transformation. The simulation results, confirmed by laboratory experiments, show that while a lightning impulse is the limiting factor in the design of a resistive glazed insulator under clean conditions, a switching impulse is the limiting factor under icing conditions.
机译:本文的主要目的是研究在结冰条件下,标准支柱绝缘子周围的电场分布,用于功率频率,雷电冲击(1.2 / 50μs)和开关冲击(250/2500μs)电压。使用有限元方法进行数值计算。绝缘子上的薄釉涂层需要大量元素来进行有限元分析,因为冰覆盖的绝缘子周围存在开放边界。为了减少元素的数量并因此减少计算时间,通过开尔文变换的形式对目标域和无穷大之间的区域进行建模。由实验室实验证实的仿真结果表明,尽管雷电脉冲是清洁条件下电阻琉璃绝缘子设计的限制因素,但开关脉冲是结冰条件下的限制因素。

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