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Assessment of lightning shielding performance of double-circuit UHV overhead transmission lines

机译:双回特高压架空输电线路雷电屏蔽性能评估

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Field study indicates that more than 90% lightning stroke trip-out accidents for UHV transmission lines are caused by lightning shielding failure flashover. The large scale of the tower and the high operation AC voltage increase the probability of direct lightning strokes attaching to the phase conductor of double circuit UHV transmission line. The unexpected high lightning shielding failure flashover rate of double circuit UHV transmission line in Japan is obtained which has been in 500kV-operation for 10 years. Moreover the characteristics of direct lightning strokes attaching to phase conductor conflicts to the prediction result of classical EGM method. A new double circuit UHV transmission line is planned to be under construction in eastern China and the lightning shielding design is one of the key aspects to ensure a well reliability of this double circuit UHV system. Firstly, a new 2-D analysis model based on leader propagation concept for lightning shielding performance assessment is proposed in this paper. The extrapolation utility of existing upward leader inception criterion is discussed and the critical corona radius method is used in this study. A new upward leader continuous progression criterion is developed based on the classical long air gap discharge theory. The typical terrain including plain area, mountain top, valley and side slope is established in this model by using Schwarz-Christoffel mapping. Secondly, the lightning shielding performance of double circuit UHV transmission line in Japan is analyzed by employing this model, and the calculation result is in a good agreement with the field observation by TEPCO which verifies the utility of this model. Finally, the lightning shielding performance assessment of double circuit UHV transmission line in China is carried out. The lightning shielding performance of designed double circuit UHV transmission line in China is better than that of Japan in typical terrain corresponding to ground flash densit--y is 2.8 flashes/km2/year which is recommended in Chinese standard of design technology for overvoltage Protection of power apparatus. The lightning shielding failure flashover rate will rise taking into account the lightning activity frequency is much stronger in the partial line segments.
机译:现场研究表明,UHV输电线路超过90%的雷击行程发生事故是由雷电屏蔽失效闪光透过引起的。大规模的塔和高操作AC电压增加了连接到双电路UHV传输线的相导体的直接闪电冲程的可能性。获得了日本的两次电路UHV输电线路的意外的高雷电屏幕故障速率闪光速率,其已有500kV操作10年。此外,连接到相导体的直接闪电冲程的特征与经典EGM方法的预测结果冲突。计划在中国东部建设中采用新的双电路UHV传输线,雷电设计是确保该双电路UHV系统的良好可靠性的关键方面之一。首先,本文提出了一种基于领导者传播概念的新的2-D分析模型,用于避雷屏蔽性能评估。讨论了现有向上的引导标准的外推效果,并在本研究中使用了临界电晕半径方法。基于经典的长空气隙放电理论,开发了新的向上的上述领导者的连续进展标准。通过使用Schwarz-Christoffel Mapping,在该模型中建立了典型的地形,包括平原区域,山顶,山谷和侧倾斜面。其次,通过采用该模型分析日本双电路UHV传输线的雷电屏蔽性能,并且计算结果与Tepco的现场观察符合验证该模型的效用。最后,正在进行中国双电路UHV输电线路的雷电屏蔽性能评估。在中国设计的双电路UHV传输线的闪电屏蔽性能优于日本的典型地形,对应于地面闪光灯 - - Y是2.8闪光/ km 2 /年,推荐在中国的电压装置过电压保护设计技术标准中。闪电屏蔽故障闪络速率将考虑到闪电活动频率在部分线段中更强大。

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