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Research on state diagnosis model of transformer winding based on multiple physical fields coupling

机译:基于多物理场耦合的变压器绕组状态诊断模型研究

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Numerical calculation method on vibration of winding is researched in this paper. The 3D electromagnetic-structure model for a type S-11-M-500/35 transformer is established based on multiple physical fields coupling method. Firstly, the 3D- electromagnetic field of the transformer in the rated load current condition is established, the current, magnetic flux density and electromagnetic force of transformer are calculated. Calculated results of the electromagnetic force are coupled to the 3D structure filed model as force sources. Then, in order to analyze the transient vibration process of the transformer, the distribution of the vibration at different time and vibration curves in the 1/6, 1/2 and 5/6 positions of winding are calculated by considering the bolt preload and insulation block nonlinear characteristics. Finally, the vibration signal detection platform is built, load experiment test is made on the prototype, and the simulation results are verified by load tested data. The research method proposed in this paper can reflect dynamic characteristics of winding vibration accurately, which provides an effective method for further diagnosis on winding faults such as deformation and loosening caused by short circuit impact.
机译:研究了绕组振动的数值计算方法。基于多种物理场耦合方法,建立了S-11-M-500 / 35型变压器的3D电磁结构模型。首先,建立了在额定负载电流条件下变压器的3D电磁场,计算了变压器的电流,磁通密度和电磁力。电磁力的计算结果耦合到3D结构字段模型作为力源。然后,为了分析变压器的瞬态振动过程,考虑了螺栓的预紧力和绝缘性,计算了不同时间的振动分布和绕组在1 / 6、1 / 2和5/6位置的振动曲线。阻止非线性特性。最后,搭建了振动信号检测平台,对样机进行了载荷实验测试,并通过载荷测试数据对仿真结果进行了验证。本文提出的研究方法能够准确反映绕组振动的动态特性,为进一步诊断绕组短路变形引起的变形和松动等故障提供了有效的方法。

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