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FDTD Simulation of Lightning Surges on Overhead Wires in the Presence of Corona Discharge

机译:存在电晕放电时架空电线雷电浪涌的FDTD模拟

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A simplified model of corona discharge for finite-difference time-domain (FDTD) computations has been applied to analyzing lightning surges propagating along overhead wires with corona discharge. The FDTD computations simulate the experiments of Inoue and Wagner . In Inoue's experiment, a 12.65-mm radius, 1.4-km-long overhead wire was employed, and in Wagner 's experiment, a 21- or 25-mm radius, 2.2-km-long overhead horizontal wire was employed. The critical electric field on the surface of the 12.65-mm-radius wire for corona initiation is set to E$_0$ = 1.4, 2.4, or 2.9 MV/m, and those for 21- and 25-mm-radius wires are set to E$_0$ = 2.2 and 2.1 MV/m, respectively. The critical background electric field for streamer propagation is set to E$_{cp}$ = 0.5 MV/m for positive voltage application and E$_{cn}$ = 1.5 MV/m for negative voltage application. The FDTD-computed waveforms (including wavefront distortion and attenuation at later times) of surge voltages at three different distances from the energized end of the wire agree reasonably well with the corresponding measured waveforms. Also, the FDTD-computed waveforms of surge voltages induced on a nearby parallel bundled conductor agree fairly well with the corresponding measured waveforms.
机译:用于有限差分时域(FDTD)计算的电晕放电简化模型已用于分析电晕放电沿架空导线传播的雷电浪涌。 FDTD计算模拟了Inoue和Wagner的实验。在Inoue的实验中,使用了半径为12.65毫米,长度为1.4公里的架空线,在Wagner的实验中,使用了在21或25毫米半径下,长度为2.2公里的架空线。用于电晕引发的12.65毫米半径半径的导线表面上的临界电场设置为E $ _0 $ = 1.4、2.4或2.9 MV / m,而设置21和25毫米半径半径的导线上的临界电场至E $ _0 $ = 2.2和2.1 MV / m。对于正电压应用,用于拖缆传播的临界背景电场设置为E $ _ {cp} $ = 0.5 MV / m,而对于负电压应用设置为E $ _ {cn} $ = 1.5 MV / m。距离导线通电端三个不同距离处的电涌电压的FDTD计算波形(包括波前失真和后期衰减)在相当程度上与相应的测量波形吻合。另外,在附近的平行束导体上感应的浪涌电压的FDTD计算波形与相应的测量波形非常吻合。

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