一种确定变压器铁芯共振的数值模型

A. Al-Abadi, Stefan Buchner, M. Wagner
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引用次数: 0

摘要

变压器层压铁芯在正常工作时受到不同电磁效应的激励,是产生声音的主要来源之一。如果铁心在其本征频率内被激发,变压器产生的声音将显著增加。因此,在早期设计阶段就了解芯的特征模态和频率,可以避免在最终工厂验收测试后为避免声级超过规定值而进行的昂贵修改,从而降低成本。目前的研究重点是建立一个铁心共振模型来确定变压器铁心的特征模态和频率。将核心的几何结构简化为连接梁结构,并采用基于数值的方法。利用ANSYS对一个参考的三脚核模型进行了有限元验证,验证了所建立模型的精度。
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A Numerical-Based Model to Determine the Resonance of the Steel Cores of Transformers
The laminated steel core of transformers is one of the main sources of the generated sound, as it is excited by different electromagnetic effects during its normal operation. If the core is excited in its eigenfrequencies, the sound generated by a transformer will increase significantly. Therefore, knowledge of the core’s eigenmodes and -frequencies in an early design stage can decrease expenses by avoiding costly modifications that might be required to avoid the sound levels exceeding the specified values after the final factory acceptance test. The current study focuses on developing a core resonance model to determine the eigenmodes and -frequencies of a transformer core. The core’s geometry was simplified to a connected-beam structure and a numerical-based approach was applied. The accuracy of the developed model was validated against finite element method (FEM), using ANSYS on a reference three-leg core model.
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A Numerical-Based Model to Determine the Resonance of the Steel Cores of Transformers Fast Transient Overvoltage Analysis in Current Transformers due to Disconnector Switching Operation Grid-Ready Flexible Transformers for Resilient Transmission Networks ARWtr 2022 Preface ARWtr 2022 Back Cover Page
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