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An analysis of reducing back flashover faults with surge arresters on 69/138 kV double circuit transmission lines due to direct lightning strikes on the shield wires

机译:分析通过屏蔽线直接雷击在69/138 kV双回输电线路上使用电涌放电器来减少反向闪络故障

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Back flashover faults resulting from lightning strokes hitting the shield wire(s) or tower(s) are one of the major causes of power interruptions on the double-circuit 69/138 kV overhead transmission lines in Jamaica. Computational analysis with the aid of Alternative Transient Program-Electromagnetic Transient Program (ATP-EMTP) simulations was performed on a section of the affected lines to identify the main factors causing back flashover faults with an attempt to reduce the effects and to improve both power reliability and financial losses. A model of the selected line section suitable for transient overvoltage studies was developed to investigate fast transient studies of flashover occurrences of the line insulator with respect to lightning amplitudes and wave fronts; as well as the tower footing impulse resistances and the tower surge impedance. The results show that the 69 kV transmission line was more sensitive to flashover faults, which was due mainly to its relatively lower basic lightning impulse insulation level (BIL) of the line insulators, compared to the 138 kV line. However, the results also indicate that the installation of surge arresters on the affected towers significantly reduce the transient overvoltages well below the insulators' withstand voltages and thereby providing effective protection against back flashover faults. The energies absorbed by the surge arresters were also investigated and presented herein.
机译:雷击击中屏蔽线或铁塔导致的反向闪络故障是牙买加双回路69/138 kV架空输电线路断电的主要原因之一。借助替代暂态程序-电磁暂态程序(ATP-EMTP)仿真对部分受影响的线路进行了计算分析,以找出引起反向闪络故障的主要因素,从而尝试减少影响并提高两个电源的可靠性和财务损失。建立了适合于瞬态过电压研究的所选线路截面模型,以研究针对闪电幅度和波阵面的线路绝缘子闪络发生的快速瞬态研究。以及塔基础脉冲电阻和塔电涌阻抗。结果表明,与138 kV线路相比,69 kV输电线路对闪络故障更加敏感,这主要是由于其线路绝缘子的基本雷电冲击绝缘水平(BIL)相对较低。但是,结果还表明,在受影响的塔架上安装电涌放电器可将瞬态过电压大大降低,远低于绝缘子的耐压,从而提供了有效的保护,防止了反向闪络故障。避雷器吸收的能量也在本文中进行了研究和介绍。

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