Multi-Physics Modeling and Simulation of Oil-Immersed Power Transformers Based on 3D Finite Element Analysis and Finite Volume Method

R. Ilka, Jiangbiao He, W. Yin, J. Contreras, Carlos G. Cavazos
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Abstract

Power transformers are the essential components in almost every electric power network. Uninterrupted operation of power transformers plays a critical role in guaranteeing the reliability and safety of the power grid. In this paper, aiming at predicting the reliability of large power transformers, multi-physics modeling and simulations are carried out based on three-dimensional (3D) finite element analysis (FEA) and finite volume method (FVM). Specifically, FEA electromagnetic modeling and simulation is performed in Ansys Maxwell to extract the transformer winding losses. Afterwards, thermal model is established in Ansys Fluent to obtain the temperature distribution, and more importantly to identify the transformer winding hot-spot temperature (HST). Accordingly, aging acceleration factor is determined by the winding HST. A sensitivity analysis is also conducted to determine the effects of oil properties on the temperature distribution and HST.
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基于三维有限元和有限体积法的油浸式电力变压器多物理场建模与仿真
电力变压器几乎是每个电网中必不可少的部件。电力变压器的不间断运行对保证电网的可靠性和安全性起着至关重要的作用。本文针对大型电力变压器可靠性预测问题,基于三维有限元分析(FEA)和有限体积法(FVM)进行了多物理场建模与仿真。具体而言,在Ansys Maxwell中进行FEA电磁建模与仿真,提取变压器绕组损耗。然后在Ansys Fluent中建立热模型,得到温度分布,更重要的是识别变压器绕组热点温度(HST)。因此,老化加速系数由绕组HST决定。此外,还进行了敏感性分析,以确定油的性质对温度分布和高温温度的影响。
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