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Influence of Wind on the Electric Field and Ion Current Environment of HVDC Transmission Lines

机译:风对高压直流输电线路电场和离子电流环境的影响

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摘要

Transverse wind has a large influence on the electric field and ion current environment of HVDC transmission lines. The flux tracing method (FTM) is modified by including wind velocity in the defining equations of corona-generated monopolar dc space-charge modified fields. The modified method, called FTM-Wind, is derived by making appropriate assumptions and identifying wind-modified pattern of flux lines. Computations are made using FTM-Wind for hypothetical monopolar and bipolar dc transmission-line configurations to obtain a physical understanding of the influence of wind in changing the pattern of flux lines and, as a consequence, changing the ion current distributions on the ground plane. The FTM-Wind is also applied to study the influence of wind on the ion current profiles of a 900-kV bipolar dc test line for which long-term measurement data are available. Calculations show reasonable agreement with measured ion current profiles grouped according to ranges of wind velocity.
机译:横向风对高压直流输电线路的电场和离子电流环境影响很大。通过将风速包含在电晕产生的单极直流空间电荷修饰场的定义方程中来修改通量跟踪方法(FTM)。修改后的方法称为FTM-Wind,是通过做适当的假设并确定通量线的风修改模式得出的。使用FTM-Wind对假设的单极和双极dc传输线配置进行计算,以物理了解风在改变通量线模式以及因此改变接地面上的离子电流分布方面的影响。 FTM-Wind还用于研究风对900 kV双极直流测试线的离子电流分布的影响,该测量线可获得长期测量数据。计算表明与根据风速范围分组的测得的离子电流曲线合理吻合。

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