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Field observation and experimental investigation on breakdown of air gap of AC transmission line under forest fires

机译:森林火灾下交流输电线路气隙击穿的现场观察与实验研究。

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Many power transmission lines are across mountain areas and occurrences of fires under lines are responsable for a great number of line outages. Field observation indicates that insulation strength of gap may reduce to 19kV/m under forest fire condition. The influences of electrode geometry configuration, flame temperature, alkali metal salts KCl, solid particles and air gap filled with smoke&flame on the conductor-plane gap breakdown characteristics are studied by the fire of burning wooden cribs in this paper. AC breakdown voltage of conductor plane gaps under fire is reduced to one third of that under standard conditions. When particles are on the surface of conductor, the breakdown voltages reduce and are affected weakly by electrode configurations. The flame conductivity is increased after alkali metal salts are added into the flame and flashover voltage is 33% lower than that in the wood flame. Results indicated that flame temperature, solid particles and ion & electron of fire volume are the main cause of gap insulation strength reduction under forest fire conditions. Consequently, transmission line insulation failure under forest fire was is attributed to flame temperature, electrons and ions and solid particles which promote the discharge development.
机译:许多输电线路横穿山区,线路下发生火灾是造成大量线路中断的原因。现场观察表明,在森林大火条件下,缝隙的绝缘强度可能降低到19kV / m。本文通过燃烧木质婴儿床来研究电极的几何构型,火焰温度,碱金属盐KCl,固体颗粒和充满烟气的气隙对导体平面间隙击穿特性的影响。着火时导体平面间隙的交流击穿电压降低到标准条件下的三分之一。当颗粒在导体表面时,击穿电压会降低,并且受电极配置的影响很小。在火焰中添加碱金属盐后,火焰的电导率增加,闪络电压比木质火焰中的闪络电压低33%。结果表明,在森林火灾条件下,火焰温度,固体颗粒以及火势离子和电子是造成间隙绝缘强度降低的主要原因。因此,森林火灾下的传输线绝缘故障归因于火焰温度,电子和离子以及固体颗粒,它们促进了放电的发展。

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