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Ground Return Current Behaviour in High Voltage Alternating Current Insulated Cables

机译:高压交流绝缘电缆的接地回路电流行为

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The knowledge of ground return current in fault occurrence plays a key role in the dimensioning of the earthing grid of substations and of cable sealing end compounds, in the computation of rise of earth potential at substation sites and in electromagnetic interference (EMI) on neighbouring parallel metallic conductors (pipes, handrails, etc.). Moreover, the ground return current evaluation is also important in steady-state regime since this stray current can be responsible for EMI and also for alternating current (AC) corrosion. In fault situations and under some assumptions, the ground return current value at a substation site can be computed by means of k-factors. The paper shows that these simplified and approximated approaches have a lot of limitations and only multiconductor analysis can show the ground return current behaviour along the cable (not only the two end values) both in steady-state regime and in short circuit occurrence (e.g., phase-to-ground and phase-to-phase-to-ground). Multiconductor cell analysis (MCA) considers the cable system in its real asymmetry without simplified and approximated hypotheses. The sensitivity of ground return current on circuit parameters (cross-bonding box resistances, substation earthing resistances, soil resistivity) is presented in the paper.
机译:故障发生时的接地回路电流知识在变电站的接地网和电缆密封端部化合物的尺寸设计,变电站现场的地电位上升的计算以及相邻并联系统的电磁干扰(EMI)中起着关键作用金属导体(管道,扶手等)。此外,接地返回电流评估在稳态状态下也很重要,因为该杂散电流可能会导致EMI以及交流电(AC)腐蚀。在故障情况和某些假设下,变电站现场的接地回路电流值可以通过k因子进行计算。本文表明,这些简化和近似的方法有很多局限性,只有多导体分析才能显示出在稳态和短路情况下(例如,相对地和相对地)。多导体单元分析(MCA)在没有简化和近似假设的情况下考虑了电缆系统的实际不对称性。本文介绍了接地回路电流对电路参数(交叉接线盒电阻,变电站接地电阻,土壤电阻率)的敏感性。

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