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A case study of ruptures in overhead ground wire under a large lightning over 400kA

机译:400ka大闪电下架空地线破裂案例研究

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The rupture accident of overhead ground wire (OGW) may happen when the overhead transmission line gets struck by lightning, especially in the case of a large lightning current. This may trigger a short-circuit fault of the overhead transmission line and cause serious harm to the safety and stable operation of the power grid. The Lightning samples are very limited and it is difficult to simulate the actual lightning current in the laboratory accurately. Besides, the standard are short of the consideration to the thermo-mechanical properties of OGW under lightning current. Therefore, it is of considerable significance to study the reason and process of rupture accident of OGW caused by lightning strike. In this paper, a rupture accident of 220 kV OGW happened in Qingyuan, Guangdong Province due to a large lightning strike (475.9kA) is investigated. Firstly, the rupture process of OGW is preliminarily inferred through the fractography analysis of the broken OGW samples. Then, a three-dimensional thermoelectric coupling simulation model of OGW is established, and the melting area and average temperature of each wire of OGW under a lightning strike are calculated. Based on the fractography analysis results and the simulation results of the OGW samples, and taking the correlation between the temperature and the tensile strength of metal material into consideration, a more detailed discussion on the rupture process of OGW is conducted. Finally, the rationality of wire diameter selection for OGW is demonstrated by calculating the residual tensile strength of each wire of OGW under different lightning current. The method for analyzing the rupture accident of OGW caused by lightning strike presented in this paper, which is based on various influencing factors, can provide reference and suggestions for the investigation and solution in similar cases.
机译:当架空传输线通过闪电击中时,可能发生架空接地线(OGW)的破裂事故,尤其是在大的雷电电流的情况下。这可能会触发开销线路的短路故障,并对电网的安全性和稳定运行引起严重危害。闪电样品非常有限,很难精确地模拟实验室中的实际雷电电流。此外,该标准缺乏对雷电下OGW的热机械性能的考虑。因此,研究雷击引起的OGW破裂事故的原因和过程具有相当大的意义。本文在广东省雷区张园发生了220千伏OGW的破裂事故,由于大幅雷击(475.9KA)。首先,通过破碎的OGW样本的Fractography分析预先推断OGW的破裂过程。然后,建立了OGW的三维热电耦合模拟模型,并且计算了在雷击下的OGW的每根电线的熔化区域和平均温度。基于Fractography分析结果和OGW样品的仿真结果,并考虑了金属材料的温度与拉伸强度之间的相关性,对OGW的破裂过程进行了更详细的讨论。最后,通过计算不同雷电流下的每个导线的残余拉伸强度来说明OGW的线径选择的合理性。本文提出的雷击引起的灰尘破裂事故的方法,基于各种影响因素,可以为类似病例中的调查和解决方案提供参考和建议。

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