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首页> 外文期刊>The Journal of Engineering >Electric field calculation and grading ring design for 750 kV four-circuits transmission line on the same tower with six cross-arms
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Electric field calculation and grading ring design for 750 kV four-circuits transmission line on the same tower with six cross-arms

机译:具有六个横臂750 kV四电路传输线的电场计算和分级环设计

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摘要

The transmission corridors can be effectively saved using 750 kV four-circuit transmission line on the same tower. In order to reduce the corona level, structure optimisation of fittings plays an important role in the transmission line design. In this study, the electric field distribution of 750 kV transmission line on six cross-arms tower was calculated based on finite element method, and the influences of pipe diameter, ring diameter and installation position of the grading ring were analysed. The results show that the increase of pipe diameter can reduce the electric field strength of grading ring while the increase of installation position and decrease of ring diameter are important to protect the end fitting of composite insulator. When using grading ring with the pipe diameter of 100 mm, the ring diameter of 700–900 mm and the installation position of 150–250 mm, the electric field strength can be controlled in a reasonable range. These results can provide references for the grading ring design of 750 kV four-circuit transmission line on the same tower.
机译:可以在同一塔上使用750 kV四电路传输线有效地保存传输走廊。为了降低电晕等级,配件结构优化在传输线路设计中起着重要作用。在该研究中,基于有限元方法计算了六个横臂塔上的750kV传输线的电场分布,分析了分级环的管直径,环直径和安装位置的影响。结果表明,管道直径的增加可以降低分级环的电场强度,同时安装位置的增加和环径的减小对于保护复合绝缘体的端部配件很重要。当使用管道直径为100毫米的分级环时,环径为700-900 mm,安装位置为150-250毫米,可以在合理的范围内控制电场强度。这些结果可以为同一塔上的750 kV四电路传输线进行分级环设计的参考。

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