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首页> 外文期刊>Electric power systems research >FDTD simulation of back-flashover at the transmission-line tower struck by lightning considering ground-wire corona and operating voltages
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FDTD simulation of back-flashover at the transmission-line tower struck by lightning considering ground-wire corona and operating voltages

机译:考虑接地线电晕和工作电压的雷电击中输电线路塔的反闪络的FDTD模拟

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In this paper, we simulated transient voltages across insulators and back-flashover at the transmission line tower struck by lightning in the presence of corona on the ground wires. The FDTD method and simplified (engineering) model of corona discharge were used. Three two-circuit 60-m high towers, separated by 400 m, with two overhead ground wires, and six phase conductors (two three-phase circuits) were considered. Back-flashover was assumed to occur at the upper, middle, or lower phase. Operating voltages of phase conductors were modeled by using a voltage source inserted between each phase conductor and ground. It is observed that ground-wire corona serves to reduce voltage peaks and delay the occurrence of flashover. For the upper-phase back-flashover due to a positive 50-kA stroke, the peak voltages across the upper-, middle-, and lower-phase insulators are reduced by 11%, 12%, and 12% by the ground-wire corona, and for a negative 50-kA stroke they are reduced by 8%, 9%, and 9%. Influences of ground-wire corona on transient voltages were also studied for the back-flashover at the middle or lower phase. Presence of operating voltages can lead to either increase or decrease of the peak of transient voltage, with the change being less than 20%. To the best of our knowledge, this is the first FDTD simulation of back-flashover at a transmission-line tower considering both ground-wire corona and operating voltages. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,我们在接地线上存在电晕的情况下,模拟了雷电击中的输电线路塔架两端的绝缘子两端的瞬态电压和反向闪络。使用了FDTD方法和简化的电晕放电(工程)模型。考虑了三个两回路高60 m的铁塔,相隔400 m,带有两根架空地线和六个相导体(两个三相回路)。假定反向闪络发生在上,中或下阶段。相导体的工作电压通过使用插入每个相导体和地之间的电压源来建模。可以观察到,接地线电晕可降低电压峰值并延迟闪络的发生。对于由于50 kA正冲程而引起的上相反向闪络,通过地线,上,中,下相绝缘子上的峰值电压分别降低了11%,12%和12%电晕,并且对于50 kA的负冲程,它们分别降低了8%,9%和9%。还研究了接地线电晕对瞬态电压的影响,以用于中间或较低阶段的反向闪络。工作电压的存在会导致瞬态电压峰值的增加或减少,其变化小于20%。据我们所知,这是同时考虑了接地线电晕和工作电压的传输线塔架上反闪跳的首次FDTD模拟。 (C)2017 Elsevier B.V.保留所有权利。

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