Structural Deformation and Displacement of a Disc Winding Due to Standard Switching Impulse Voltage via Finite Element Method

Nurul Farahwahida Md Yasid, N. Azis, J. Jasni, Mohd Fairouz Mohd Yousof, M. Talib, Avinash Srikanta Murthy
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Abstract

Switching operations in a power system network can lead to transient overvoltage in the high voltage (HV) winding of distribution transformers that causes high-stress build-up. This paper presents the relationship between electromagnetic force due to a standard switching impulse (SSI) and mechanical deformation/displacement behaviours for a disc-type transformer. The analysis was carried out based on a three-dimensional (3D) modelling of a continuous HV disc winding configuration whereby it is subjected to the switching transient voltage and force excitations through the finite element method (FEM). The electric transient solver analysed the static and dynamic aspects of the electromagnetic forces associated with the variation of forces versus time. The transient structural solver evaluated the structural behaviours of the disc winding related to the axial height and radial width of the winding under electromagnetic forces. It is found that the positively dominant axial force generated in the winding with a magnitude of 8.7 N causes the top and bottom layers of disc winding to tilt and displace. In addition, the positive average radial force of 1.4 N causes the circumference of the winding to experience hoop tension and outwardly stretch.
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通过有限元法计算标准开关冲击电压引起的圆盘绕组结构变形和位移
电力系统网络中的开关操作会导致配电变压器高压绕组中出现瞬态过电压,从而造成高应力积聚。本文介绍了标准开关脉冲 (SSI) 产生的电磁力与圆盘式变压器机械变形/位移行为之间的关系。分析基于连续高压盘式绕组配置的三维建模,通过有限元法(FEM)使其受到开关瞬态电压和力的激励。电力瞬态求解器分析了与力随时间变化相关的电磁力的静态和动态方面。瞬态结构求解器评估了盘式绕组在电磁力作用下与绕组轴向高度和径向宽度相关的结构行为。结果发现,在绕组中产生的 8.7 牛的正向轴向力会导致圆盘绕组的顶层和底层倾斜和位移。此外,平均 1.4 N 的正径向力使绕组的圆周受到环向拉力并向外拉伸。
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