王恩哲, 陈向荣, 张添胤, 朱汉山, 乐军耀. 基于双侧消去法的隧道电缆系统故障环流计算及接地散流优化[J]. 中国电机工程学报, 2025, 45(3): 1160-1171. DOI: 10.13334/j.0258-8013.pcsee.231976
引用本文: 王恩哲, 陈向荣, 张添胤, 朱汉山, 乐军耀. 基于双侧消去法的隧道电缆系统故障环流计算及接地散流优化[J]. 中国电机工程学报, 2025, 45(3): 1160-1171. DOI: 10.13334/j.0258-8013.pcsee.231976
WANG Enzhe, CHEN Xiangrong, ZHANG Tianyin, ZHU Hanshan, LE Junyao. Fault Circulation Calculation and Grounding Scattering Optimization in Tunnel Cable System Based on Double-sided Elimination Method[J]. Proceedings of the CSEE, 2025, 45(3): 1160-1171. DOI: 10.13334/j.0258-8013.pcsee.231976
Citation: WANG Enzhe, CHEN Xiangrong, ZHANG Tianyin, ZHU Hanshan, LE Junyao. Fault Circulation Calculation and Grounding Scattering Optimization in Tunnel Cable System Based on Double-sided Elimination Method[J]. Proceedings of the CSEE, 2025, 45(3): 1160-1171. DOI: 10.13334/j.0258-8013.pcsee.231976

基于双侧消去法的隧道电缆系统故障环流计算及接地散流优化

Fault Circulation Calculation and Grounding Scattering Optimization in Tunnel Cable System Based on Double-sided Elimination Method

  • 摘要: 由隧道电缆接地短路所引起的故障受到广泛的关注,针对隧道电缆故障模型的建立和工作井的优化设计对其安全稳定运行尤为重要。该文通过π型电路等效,基于双侧消去法建立隧道电缆系统故障环流模型,推导隧道电缆短路接地故障时金属护套故障环流公式;基于有限元法构建螺旋式和立笼式接地模式下工作井的接地散流模型,推导2种接地模式下工作井接地点地表电势计算方法。利用上述方法对甬舟铁路项目海底隧道220 kV电缆系统开展故障环流计算及接地散流优化研究。结果表明:随着隧道电缆系统短路设置点的后移,金属护套故障环流最大值逐渐减小,幅值最高为136.74 kA。相比于螺旋式,立笼式接地模式具有更好的散流效果,且当立笼式导体根数增加至6根时,工作井接地点地表电势为917.64 V,在人体接触和跨步电势所允许的安全范围(< 955 V)之内。研究结果可为隧道电缆系统故障环流计算和接地散流优化提供新的计算方法和实际工程应用参考。

     

    Abstract: The issue stemming from the short circuit in the tunnel cable system has garnered significant attention. The development of a fault model for tunnel cables and the optimal design of the working shaft are crucial factors for ensuring the safe and stable operation of the system. The tunnel cable system is divided into a π-type equivalent circuit. The formula for fault circulation is derived through double-sided elimination method. Spiral and cage grounding scattering models are constructed employing the finite element method. Moreover, each provided model ground surface potential of working shaft is deduced. The 220 kV submarine tunnel power cable project at Ningbo-Zhoushan in China is considered as a case study by double-sided elimination method. The results reveal that the sheath fault circulation initially rises before subsequently declining, reaching its maximum fault circulation at 136.74 kA within the tunnel system. Furthermore, the cage grounding model demonstrates superior scattering effects when compared to the spiral model. When the number of vertical cage conductors are 6, the grounding potential of working shaft is only 917.64 V, which is an allowable range of human contact and step potential of 955 V. This research provides a new method and a reference for the calculation of fault circulation in tunnel cable system and the grounding scattering optimization method.

     

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