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Influence of air gaps on the DC withstand voltage of ice-covered UHV insulators

机译:气隙对覆冰超高压绝缘子直流耐压的影响

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The influence of the number and position of air gaps on the maximum withstand voltage of a typical 735-kV ice-covered station post insulator under DC voltage was investigated both experimentally and numerically. Numerical results obtained by the Finite Element Method (FEM) with the presence of a water film on the ice surface showed that the number of air gaps has a direct effect on the distribution of potential along the iced insulator. Moreover, experimental results showed that the number and position of air gaps have a significant effect on the maximum withstand voltage of ice-covered insulators. In the same way, for the three air gap configurations tested in this study, the maximum withstand voltages obtained showed the lowest value when two of the air gaps are located at the top and bottom of the insulator. The results obtained will be helpful in the design of HVDC insulators in regions subjected to atmospheric icing.
机译:实验和数值研究了气隙数量和位置对典型的735 kV覆冰站后绝缘子最大耐压的影响。在冰表面上存在水膜的情况下,通过有限元方法(FEM)获得的数值结果表明,气隙的数量直接影响沿冰绝缘子的电势分布。此外,实验结果表明,气隙的数量和位置对覆冰绝缘子的最大耐压有重要影响。同样,对于本研究中测试的三种气隙配置,当两个气隙位于绝缘子的顶部和底部时,获得的最大耐压值显示为最低值。所获得的结果将有助于在经受大气结冰的区域中设计HVDC绝缘子。

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