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Induced voltages on overhead transmission lines because of nearby included lightning channel

机译:由于附近包含雷电通道,架空输电线路上的感应电压

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The power system networks can be adversely affected by indirect coupling with the cloud-to-ground lightning return stroke. In most computations of lightning-induced voltages on overhead transmission lines, the overhead transmission lines are considered as straight lines and the return stroke channel is assumed to be a straight and a vertical channel. However, in reality, the line is not straight and is not parallel to the ground level because of the sag produced by its weight. In addition, the lightning channel is most often inclined. This study studies the effect of conductors' sag as well as the inclination angle of the lightning channel on the lightning-induced voltage on the three-phase power lines because of inclined lightning channel. This study has been evolved, formulated and applied on Egyptian 500 kV three-phase transmission line. Moreover, the effect of the ground conductivity on induced overvoltages in case of sagged transmission lines is considered. It can be observed that, taking into account the effects of the ground conductivity, the presence of the ground wire and the sag of the transmission lines reduce the values of the calculated induced voltages.
机译:电力系统网络会受到与云对地雷电回程的间接耦合的不利影响。在架空传输线上的雷电感应电压的大多数计算中,将架空传输线视为直线,并且将返回行程通道假定为直线通道和垂直通道。然而,实际上,由于其重量产生的垂度,该线不是直线,也不平行于地面。另外,雷电通道通常是倾斜的。本研究研究导体的垂度以及雷电通道的倾斜角度对由于雷电通道倾斜而引起的三相电力线上雷电感应电压的影响。该研究已经发展,制定并应用于埃及500 kV三相输电线路。此外,考虑了传输线凹陷时接地电导率对感应过电压的影响。可以观察到,考虑到接地电导率的影响,接地线的存在和传输线的下垂会降低计算出的感应电压的值。

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