雷电对500kv输电线路塔基设计的影响

N. A. Mohd Nasir, M. S. Mohd Nasir, M. S. A. Rahman, M. Ab-Kadir, N. Azis, M. Osman, U. Amirulddin
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引用次数: 0

摘要

为了提高500kv输电线路的防雷性能,保证线路的连续运行,本文对几种塔式接地设计进行了评价。该研究包括对土壤剖面的评估,并对使用默认接地安排和新接地安排所获得的结果进行比较,这两种安排都旨在改善塔底电阻(稳定状态时的tfr)和塔底阻抗(雷电时的tfi)。对接地设计改进前后的TFR和TFI进行了评估。此外,还考虑了这些TFR和TFI的影响,它们也分别被定义为低接地和高频接地,依赖于不同地点的TFR和土壤电阻率(SR)范围的规范。本研究采用电流分布电磁场接地与土壤结构分析程序(CDEGS)的SESCAD工具以及相应的用于低频和高频接地的PSCAD/EMTDC软件进行。调查结果表明,对T41塔和T42塔的接地布置进行修改,对T41塔和T42塔的TFR分别降低了84.29%和88.34%。而对于TFI,结果显示,在高频工作时,TFR显著下降,这是由于闪电引起的土壤电离过程。这些数值明显低于TFR的事实证明了这一点。所有这些改进措施目前正在马来西亚所有500千伏电网中进行探索和评估,在这些电网中,闪电被认为是停电的主要风险因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Lightning on Tower Footing Design of 500 kV Transmission Line
This study evaluates several tower earthing designs for improving 500 kV transmission line’s lightning performance and ensure its continuous operation. The study includes the assessment of the soil profile and a comparison of the findings obtained using the default and new earthing arrangement, both of which are intended to improve the tower footing resistance (TFR-during steady-state) and tower footing impedance (TFI-during lightning). Assessment of the TFR and TFI has been performed before and after the earthing design improvement. In addition, the impacts of these TFR and TFI, which are also defined as low and high-frequency earthing, respectively, relying on a specification of TFR and soil resistivity (SR) ranges at different locations have also been taken into consideration. The study was performed with the help of the SESCAD tool of Current Distribution Electromagnetic Field Grounding and Soil Structure Analysis program (CDEGS), as well as the PSCAD/EMTDC software, which was used for low and high frequency earthing, accordingly. Upon the completion of the investigation, the findings revealed that the modification to the earthing arrangement had a beneficial effect on lowering the TFR by 84.29 % and 88.34 % for Towers T41 and T42, respectively. While for TFI, the results revealed a significant decrease below the TFR during high frequency operation, which was attributed to soil ionization process that occur due to lightning. This was proved by the fact that the values were significantly below the TFR. All these enhancements are now being explored and evaluated across all of Malaysia’s 500 kV networks, where lightning is regarded to be the primary risk factor for power outages.
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