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An approximate 2D method for computing the magnetizing zero-sequence impedances in 3-phase core-type transformers without tank

机译:一种近似的2D方法,用于计算无罐3相芯型变压器中的磁化零序阻抗

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This paper describes an approximate 2D method for computing the magnetizing zero-sequence impedances in 3-phase core-type transformers without tank. These transformers do not have axial symmetry in their geometry, but a 2D model with axial symmetry is applied in order to obtain approximate results. The 3D models require more computational resources, and this fact justifies the search of an approximate method. The developed approximate method is based on the analysis of the main flux paths, and this method requires the application of approximation constants. These approximation constants are found by comparison between the results of 2D and 3D models, for units between 500kVA and 25 MVA. Experimental validation is included for one unit. The results indicate that the developed approximate method can be applied in order to compute these magnetizing zero-sequence impedances.
机译:本文介绍了一种近似的2D方法,用于在没有罐中计算3相芯型变压器中的磁化零序阻抗。这些变压器在其几何形状中没有轴对称性,但是应用具有轴对称性的2D模型以获得近似结果。 3D模型需要更多的计算资源,这事实证明了对近似方法的搜索。开发的近似方法基于对主磁通路径的分析,并且该方法需要应用近似常数。通过在2D和3D模型的结果之间进行比较,对于500kVA和25 MVA之间的单位,找到这些近似常数。一个单元包括实验验证。结果表明,可以应用所开发的近似方法以计算这些磁化零序阻抗。

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