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Analysis of short-circuit performance of split-winding transformer using coupled field-circuit approach

机译:耦合场回路法分析剖分式变压器的短路性能

摘要

The split-winding arrangement requires special short-circuit design considerations. During short-circuit conditions, there is a considerable distortion of the leakage field, which in turn produces high axial short-circuit forces. This paper deals with the computation and analysis of electromagnetic forces in windings of split-winding transformers. A nonlinear-transient field-circuit coupled finite element model is used to simulate the split-winding transformer. A 70-MVA, three-phase, 220/ 6.9/6.9-kV split-winding transformer is modeled under preset and postset short-circuit test conditions. Under the preset condition, the transformer is analyzed with one as well as both the LV windings short circuited to compare the axial forces produced in the windings for these two cases. The results show that there is a considerable rise in the axial forces when one winding is short circuited as compared with the case when both windings are short circuited. The effect of initial magnetization of core on axial short-circuit forces is calculated and discussed. It is also shown that even though postset method eliminates inrush related problems there is not much respite in short-circuit forces.
机译:分流绕组布置需要特殊的短路设计考虑。在短路状态下,泄漏场会发生较大的变形,进而产生较大的轴向短路力。本文研究了分体式绕组变压器绕组中电磁力的计算和分析。非线性瞬态场电路耦合有限元模型用于模拟分流绕组变压器。在预设和后置短路测试条件下,对70 MVA三相220 / 6.9 / 6.9-kV分裂绕组变压器进行建模。在预设条件下,对变压器进行分析,同时将两个低压绕组短路,以比较这两种情况下绕组中产生的轴向力。结果表明,与两个绕组都短路的情况相比,一个绕组短路时的轴向力有很大的提高。计算并讨论了磁芯初始磁化对轴向短路力的影响。还表明,即使后置方法消除了与浪涌有关的问题,短路力也没有多少缓解。

著录项

  • 作者

    KUMBHAR GB; KULKARNI SV;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
  • 中图分类

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