Effect of Flexibility of Axial Supporting Spacers on the Buckling Strength of Transformer Inner Winding

Irala Kumar, A. Bakshi
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Abstract

The transformer inner winding conductors may fail due to buckling when an enormous compressive electromagnetic force is applied on them under the short-circuit situation. In literature, the analytical expression for the critical forced buckling stress of the transformer winding is given in which the winding section, between the three adjacent axial supporting spacers, has been modeled as a circular arch. In the model, the axial spacers are considered as a rigid body, but they may have some flexibility. In this paper, an investigation has been done, through case studies, to analyze the influence of the flexibility of the spacers on the critical stress of the inner winding.
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轴向支撑垫片柔性对变压器内绕组屈曲强度的影响
在短路情况下,对变压器内绕组导体施加较大的压缩电磁力时,会发生屈曲失效。在文献中,给出了变压器绕组临界强迫屈曲应力的解析表达式,其中绕组部分在三个相邻的轴向支撑间隔之间,被建模为一个圆拱。在该模型中,轴向垫片被视为刚体,但它们可能具有一定的柔性。本文通过实例研究,分析了垫片柔性对内绕组临界应力的影响。
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A Numerical-Based Model to Determine the Resonance of the Steel Cores of Transformers Fast Transient Overvoltage Analysis in Current Transformers due to Disconnector Switching Operation Grid-Ready Flexible Transformers for Resilient Transmission Networks ARWtr 2022 Preface ARWtr 2022 Back Cover Page
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