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Simulation and Analysis of Dynamic Characteristics of Transformer Winding in Short-Circuit Fault by Finite Element Method

机译:有限元法测仿真对变压器绕组动态特性的仿真与分析

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It is of great significance for the stability of power system to research the electromagnetic and mechanical dynamic characteristics of transformer in short-circuit fault by numerical simulation. A 110kV/25000kVA power transformer model is established by the finite element method. In which Ogden model is adopted to conduct simulation analysis on winding spacer for considering its nonlinear mechanical characteristics. Some simulation results are obtained on the basis of modeling. Firstly, the magnitude and distribution of the axial and radial electromagnetic force of windings in short-circuit fault are calculated. Secondly, the dynamic change rule of displacement and stress of high voltage and low voltage windings in short- circuit fault is obtained. Thirdly, the distribution of maximum displacement and maximum stress on each coil disk are calculated. In addition, the difference of mechanical characteristics between HV winding and LV winding is analyzed. The above results can provide reference for transformer design.
机译:用数值模拟对电力系统稳定性研究电力系统稳定性的重要性具有重要意义。通过有限元法建立110kV / 25000KVA电力变压器模型。在其中采用OGDEN模型对绕组垫片进行仿真分析,以考虑其非线性机械特性。一些仿真结果是在建模的基础上获得的。首先,计算轴向和径向电磁力在短路故障中的轴向和径向电磁力的大小和分布。其次,获得了短路故障中的位移和高压绕组的动态变化规律和低压绕组。第三,计算每个线圈盘上的最大位移和最大应力的分布。此外,分析了HV绕组和LV绕组之间的机械特性的差异。以上结果可以为变压器设计提供参考。

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