Electromagnetic Analysis of the Bevel Edge Technique in High Voltage Shunt Reactors

S. Magdaleno-Adame, R. Ocon-Valdez, David Juarez-Aguilar, Elizabeth Cortina-Gonzalez, J. C. Olivares-Galvan
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Abstract

This paper presents an electromagnetic analysis of the bevel edge technique (BET) employed to reduce core losses in high voltage (HV) gapped-core shunt reactors. The authors analyzed this BET employing three-dimensional (3-D) finite element (FE) simulations. The magnetic anisotropy and the magnetic nonlinear properties of the grain-oriented electrical steel are considered in the FE simulations. The authors validated their FE simulations by computing the core losses in a real 5 MVAr three-phase shunt reactor without BET and comparing them with the core losses measured in the laboratory. Once validating the FE simulations of the HV shunt reactor without BET, the authors analyzed the core losses in the same HV shunt reactor with BET. In addition, the authors analyzed the core loss effect produced by the bevel edge length in two real HV shunt reactors: a 25 MVAr single-phase shunt reactor and in the original 5 MVAr three-phase shunt reactor. Finally, the authors analyzed the bevel edge angle effect on the core losses of the 5 MVAr three-phase shunt reactor. Authors demonstrated and confirmed that the BET helps to reduce the core losses in HV shunt reactors. Finally, the authors concluded that the bevel edge length and the bevel edge angle have a slight impact on the core losses of the HV shunt reactors.
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高压并联电抗器斜边技术的电磁分析
本文对用于降低高压间隙堆芯并联电抗器铁芯损耗的斜边技术进行了电磁分析。作者采用三维有限元模拟方法对其进行了分析。在有限元模拟中考虑了晶粒取向电工钢的磁各向异性和磁非线性特性。作者通过计算实际5mvar三相并联电抗器的铁芯损耗,并将其与实验室测量的铁芯损耗进行比较,验证了他们的FE模拟。在验证了不加BET的高压并联电抗器的有限元模拟的基础上,分析了带BET的同一高压并联电抗器的堆芯损耗。此外,分析了25 MVAr单相并联电抗器和原5 MVAr三相并联电抗器两种实际高压并联电抗器中,坡边长度对铁芯损耗的影响。最后,分析了斜边角对5mvar三相并联电抗器铁心损耗的影响。作者论证并证实了BET有助于降低高压并联电抗器的堆芯损耗。最后,得出了斜边长度和斜边角对高压并联电抗器铁心损耗影响较小的结论。
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