变压器绕组轴向振动建模及其模态特性影响因素的研究

Minghui Duan, Liqing Liu, Jufang Wei, Hao Ma, Xiaoguang Ma, C. Yao, Junji Feng, He Zhang
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引用次数: 0

摘要

大型电力变压器绕组在短路时的振动特性是决定其抗短路能力的重要因素。建立了包括夹紧环在内的卷绕盘轴向振动的“质量-弹簧-阻尼”模型,提出了等效质量和等效刚度的计算方法,揭示了卷绕盘的模态特性与力学参数之间的关系。在此基础上,分析了sfsz - 400000 /110变压器低压绕组的固有频率和模态振型,并讨论了弹性模量、端盘与夹紧环之间的间隔片数量和间隔片厚度对绕组固有频率和模态振型的影响。结果表明,绕组的固有频率满足多重关系,轴向振动模态呈现同向或反向振动;固有频率随弹性模量的增加和隔震片数量的增加而增加。端盘的轴向位移随绕组端垫片厚度的增加而增大。该结论可为进一步研究变压器绕组抗短路能力的评定提供重要依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the modelling of transformer windings’ axial vibration and factors to influence its modal characteristics
The vibration characteristics of large power transformer windings in the short circuit are important to determine its withstand ability to short circuit. This paper establishes a “mass-spring-damping” model to describe the axial vibration of the winding disks including clamping rings, proposes the calculation of the equivalent mass and stiffness, and reveals the relationship between modal characteristics of and the windings’ mechanical parameters. On this basis, the natural frequencies and mode shapes of the low-voltage winding of an SFSZS-40000/110 transformer are analyzed, and the influence of the elastic modulus, the number of spacers, and the thickness of the spacers between end disks and clamping rings are discussed. The results show that windings’ natural frequencies satisfy the multiple relationship, and the axial vibration modes show winding disk vibration in the same or opposite direction. The natural frequencies increase with the increasing elastic modulus and quantity of spacers. The axial displacement of end disks increases with the increasing thickness of spacers at winding ends. The conclusion can provide an important basis for further research on the assessment of the withstand ability to short circuit of transformer windings.
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