Electromagnetic finite element analysis of electrical steels combinations in lamination core steps of single-phase distribution transformers

S. Magdaleno-Adame, T. D. Kefalas, S. García-Martínez, C. Perez-Rojas
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引用次数: 7

Abstract

This paper presents an electromagnetic finite element (FE) analysis of combinations of electrical steels in the lamination core steps of a real 6.3 MVA single-phase distribution transformer. The magnetic core of this transformer has a cruciform cross-section with lamination core steps. Two electrical steels are combined in the lamination core steps of transformer: a convectional grain oriented electrical steel (M-5) and laser-scribed electrical steel (23ZDKH90). 3-D FE simulations are performed to calculate the core losses (no-load losses) without and with combinations of electrical steels. B-H curves and iron loss curves of electrical steels are taken into account in the numerical simulations. The core loss calculated in FE simulation without combination of steels is compared with the core loss measured in no-load laboratory tests. Numerical results show that the combination of electrical steels in the lamination core steps can reduce 5% the core losses in single-phase distribution transformers with stacked magnetic cores. Finally, material costs are estimated for the steel combinations in the magnetic core of transformer.
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单相配电变压器层压铁芯台阶电工钢组合的电磁有限元分析
本文对实际6.3 MVA单相配电变压器层压铁芯级电工钢组合进行了电磁有限元分析。该变压器的磁芯具有十字形截面,具有层压铁芯步骤。两种电工钢在变压器的层压铁芯步骤中组合:一种是常规晶粒取向电工钢(M-5),另一种是激光刻蚀电工钢(23ZDKH90)。进行了三维有限元模拟,计算了无电工钢和组合电工钢的铁芯损耗(空载损耗)。数值模拟中考虑了电工钢的B-H曲线和铁损曲线。将无组合钢有限元模拟计算的铁心损耗与空载室内试验的铁心损耗进行了比较。数值计算结果表明,在磁铁芯叠置单相配电变压器中,层压铁芯步骤中电工钢的组合可使铁芯损耗降低5%。最后,对变压器磁芯钢组合的材料成本进行了估算。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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