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Causes Analysis of Burst Fault for 500 kV Porcelain Bushing Based on Explosion Theory

机译:基于爆炸理论的500 kV瓷衬套的爆破故障原因分析

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In this paper, a burst fault occurred in the normal operation of a porcelain bushing for 500 kV tank circuit breaker is considered. Based on the explosion theory, the energy range and the mechanism of the chemical and physical explosion of the porcelain bushing were calculated through the analysis of the projective kinetic energy of the porcelain block, the 3D dynamic simulation of the explosion process and the physical and chemical analysis of the ceramic fragments. On this basis, the characteristics and reasons of the explosion of porcelain bushing were systematically analyzed. The results show that the chemical explosion energy of porcelain bushing is estimated as 55-75 g TNT according to the fragmentation distance of porcelain fragments, which is much larger than the energy generated by physical explosion. Thus, the explosion could be considered as chemical explosion. From the physical and chemical analysis of the porcelain fragments and the 3D dynamic simulation results of the explosion process, it could be preliminary conclude that an intensive partial discharge in the porcelain bushing leads to the generation of a large amount of thermal energy. Meanwhile, thermal energy leads to the SF_6 gas filled in bushing rapidly decomposing and expanding which generates gas shock waves and resulting in the explosion. The possible reason of explosion accident could be considered as the abnormal discharge existing in porcelain bushing.
机译:在本文中,考虑了用于500kV罐断路器的瓷套管正常操作中发生的突发故障。基于爆炸理论,通过分析瓷器块的投影动能的分析,计算瓷衬套的能量范围和瓷衬套的物理爆炸机制,爆炸过程的3D动态模拟和物理化学陶瓷碎片分析。在此基础上,系统地分析了瓷套爆炸的特点和原因。结果表明,根据瓷碎片的碎片距离,瓷套管的化学爆炸能量估计为55-75克TNT,这远远大于物理爆炸产生的能量。因此,爆炸可以被认为是化学爆炸。从瓷碎片的物理和化学分析和爆炸过程的3D动态仿真结果,可以初步结论,瓷衬套中的密集部分放电导致产生大量热能。同时,热能导致填充在衬套的SF_6气体快速分解和扩展,从而产生气体冲击波并导致爆炸。爆炸事故的可能原因可以被认为是瓷套管存在的异常放电。

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