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Three- and Two-Dimensional Finite-Element Computation of Inrush Current and Short-Circuit Electromagnetic Forces on Windings of a Three-Phase Core-Type Power Transformer

机译:三相铁芯电力变压器绕组上的涌入电流和短路电磁力的三维有限元计算

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摘要

Although short-circuit current is frequently considered the major design fundamental for power transformers, experience with transformer failures shows that inrush currents that occur when transformers are energized can also cause serious damage. To investigate the resultant forces due to energizing power transformer windings, we modeled a three-phase, three-legged 66/11 kV, 40 MVA power transformer in two and three dimensions. We calculated electromechanical forces for short-circuit cases and also for inrush current through the windings, using the finite-element method. The results show that the forces exerted on the windings due to inrush current in many regions are larger than those due to short-circuit currents. Since the inrush current appears more frequently with a much longer duration compared to a short-current event, its harmful effects are worse than those of the short-circuit case.
机译:尽管短路电流通常被认为是电力变压器的主要设计基础,但是变压器故障的经验表明,在变压器通电时产生的浪涌电流也会造成严重损坏。为了研究由于给电力变压器绕组通电而产生的合力,我们在二维和三维中对三相三足66/11 kV,40 MVA电力变压器建模。我们使用有限元方法计算了短路情况下的机电力以及通过绕组的涌入电流。结果表明,在许多区域中,由于涌入电流而在绕组上施加的力要大于由于短路电流而产生的力。由于与短路事件相比,涌入电流出现的频率更高,持续时间更长,因此其有害影响要比短路情况更严重。

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