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Analysis of ion flow field of UHV/EHV AC transmission lines

机译:超高压/超高压交流输电线路的离子流场分析

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In this work, the calculation method of the ion flow field of AC transmission lines based on the charge simulation method is improved. As the previous works, the problem is solved in time domain with representing the space charges as discrete line charges. In each discrete time step, the procedures of charge emission, space charge displacement, and space charge recombination are simulated. As improvements, the influence of the conductor surface field uniformity on corona discharge is taken into account, so that the ion flow field of multi-phase or bundle conductors can be simulated in this work. The corona losses of a 3-phase 8-conductor bundle HVAC transmission line is calculated. Acceptable agreement is obtained with the experimental results. The ground level total electric field of different line configurations is calculated. The influences of line configurations such as subconductor radius, bundle spacing, number of subconductors, wire spacing, and phase height on ground level total electric field are analyzed based on the calculation.
机译:在这项工作中,改进了基于电荷模拟方法的交流输电线路离子流场的计算方法。如先前的工作,该问题在时域中得以解决,将空间电荷表示为离散的线电荷。在每个离散时间步骤中,模拟了电荷发射,空间电荷位移和空间电荷重组的过程。作为改进,考虑了导体表面场均匀性对电晕放电的影响,因此可以在此工作中模拟多相或束导体的离子流场。计算了三相8线束HVAC传输线的电晕损耗。与实验结果获得可接受的一致性。计算出不同线路配置的地面总电场。在此基础上,分析了子导体的半径,线束间距,子导体的数量,线间距和相高等线形对地面总电场的影响。

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