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Electric Field Simulation and Sheds Optimization of Anti-ice and Anti-lightning Composite Insulator under Heavy Icing Condition

机译:大锦冰条件下防冰和防雷镀膜绝缘子的电场仿真和棚

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In order to study the electric field distribution of anti-ice and anti-lightning insulators under heavy icing condi-tions,thus optimizing the shed structures and alleviating the dis-tortion of electric field caused by icing,finite element simulation models of 220 kV anti-ice and anti-lightning insulators are built in this paper.The electric field distributions of the insulators with different extra-large sheds are calculated under clean and icing conditions.Based on the simulated results,the insulator sheds are optimized.Electric field comparisons are made be-tween the insulators before and after optimization.The results show: under clean condition,the extra-large sheds have little influence on the electric field;under icing condition,optimized extra-large sheds can alleviate the distortion of electric field caused by icing,thus raising the icing flashover voltage.And it can better alleviate the distortion of electric field caused by heavy icing when the extra-large sheds number is 5.
机译:为了在重结冰条件下研究防冰和防雷避险绝缘子的电场分布,从而优化梭孔结构,减轻了由结冰的电场造成的电场,有限元模拟220 kV抗体仿真模型在本文中建立了和抗避雷绝缘子。在清洁和结冰条件下,使用不同超大棚屋的绝缘子的电场分布。基于模拟结果,绝缘体棚是优化的。电场比较是在优化之前和之后的绝缘子制作。结果表明:在清洁条件下,超大型棚子对电场影响不大;在糖霜条件下,优化的超大棚可以缓解电场造成的电场扭曲结冰,从而提高了结冰的闪络电压。当超大棚数为5时,它可以更好地减轻由较重结冰引起的电场的变形。

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