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Design of grading ring for 624KV gapless zinc oxide surge arrester

机译:624KV无间隙氧化锌电涌放电器分级环设计

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Zinc oxide (ZnO) surge arresters are being used extensively in high voltage power systems for providing protection to transmission lines and associated substation equipment from over voltages caused due to lightning and switching. It is well known that the voltage distribution in a tall multi section arrester under normal operating conditions is non-uniform unless corrective measure is taken. As a result, the ZnO blocks at the top section share higher voltage and hence higher thermal stresses than the ZnO blocks at the bottom section. This leads to accelerated thermal ageing of the blocks at the top if proper measures like providing suitable grading ring are not taken to make the voltage distribution uniform along the entire length of the surge arrester. In this study the adequacy of the grading ring proposed as first approximation by M./S. Lamco Electrical Industries Hyderabad, India for their 624kV surge arrester was evaluated. As the voltage distribution deviated very much from the acceptable deviation of 12 to 15%, the authors have attempted to arrive at an optimum grading ring diameter, tube diameter and tube position to control the deviation of voltage distribution to around 12%. The methodology and results of the optimization of the grading ring using Finite Element based 2-D Elecnet software is presented in this paper.
机译:氧化锌(ZnO)电涌放电器已广泛用于高压电力系统中,以保护输电线路和相关变电站设备免受雷击和开关引起的过电压。众所周知,除非采取纠正措施,否则在正常工作条件下高多节避雷器中的电压分布是不均匀的。结果,与底部的ZnO块相比,顶部的ZnO块具有更高的电压,因此具有更高的热应力。如果不采取适当的措施(如提供合适的分级环)来使电涌放电器的整个长度方向上的电压分布均匀,则会导致顶部模块的热老化加速。在这项研究中,建议用M./S作为近似值的分级环是否足够。对Lamco Electric Industries印度海得拉巴的624kV避雷器进行了评估。由于电压分布大大偏离了可接受的12至15%的偏差,因此作者试图达到最佳的分级环直径,管直径和管位置,以将电压分布的偏差控制在12%左右。本文介绍了基于有限元的二维Elecnet软件优化分级环的方法和结果。

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