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Research on calculation method of space electric field around paralleled double-circuit lines and effects of phasing arrangements

机译:并联双回线周围空间电场的计算方法及定相安排的影响研究

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The transmission form of two-circuit lines on the same tower has been increasingly widely used in the actual power grid. With the increase of wires, the space electric field of transmission lines becomes more and more complex. Research shows that the space electric field of transmission lines will be affected by many factors, such as tower structure, wire properties and phase sequence arrangement. First, this paper expounded the tower structure and phase sequence arrangement of common two-circuit lines on the same tower. Then the paper gave the detailed modeling and computing methods of space electric field, and combined with this method to carry out a simulation analysis on 330kV two-circuit lines on the same tower in the northwest power grid. Here comes the conclusion, the intensity of space electric field is not the same when using different phase sequence arrangement for the same two-circuit lines on the same tower. Besides, the paper also gave some measures and suggestions on space electric field environment optimization on this basis.
机译:同一塔上的两回路线路的传输形式已在实际电网中得到越来越广泛的应用。随着导线的增加,传输线的空间电场变得越来越复杂。研究表明,输电线路的空间电场将受塔架结构,导线特性和相序排列等诸多因素的影响。首先,本文阐述了同一塔架上公用两回路线的塔架结构和相序安排。然后给出了详细的空间电场建模和计算方法,并结合该方法对西北电网同一座塔上的330kV两回路线路进行了仿真分析。得出的结论是,当对同一塔上的相同两回路线使用不同的相序排列时,空间电场的强度并不相同。在此基础上,还对空间电场环境优化提出了一些措施和建议。

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