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3D Finite Element analysis of magnetic shunts and aluminum shields in clamping frames of distribution transformers

机译:配电变压器夹紧框架中磁分流器和铝屏蔽的3D有限元分析

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This paper presents a 3D Finite Element (FE) analysis of stray losses in core-type distribution transformers, where a magnetic shunt and a C-shape electromagnetic shield are utilized to protect a clamping frame of stray fluxes produced by high current leads (HCLs) of low voltage bushings. A real clamping frame of a three-phase core-type oil distribution transformer is utilized to study the electromagnetic behaviour of the shields and magnetic shunts. The electrical steel of the magnetic shunt is modelled utilizing anisotropic properties and aluminum is employed for the electromagnetic shield. Impedance boundaries were utilized in the frame and in the aluminum shield to compute the stray losses. Stray losses in the clamping frame are computed for three cases: 1) frame without any shielding method, 2) frame with a magnetic shunt, and 3) frame with a C-shape aluminum shield. The current in the HCLs were varied from 2 kA to 20 kA. The results obtained between the use of electromagnetic shield and magnetic shunts in frames of distribution transformers are also discussed in this paper.
机译:本文介绍了铁心型配电变压器中杂散损耗的3D有限元(FE)分析,其中磁分流器和C形电磁屏蔽用于保护由大电流引线(HCL)产生的杂散磁通的夹持框架低压套管。利用三相铁芯配电变压器的实际夹紧框架来研究屏蔽层和电磁分流器的电磁性能。利用各向异性特性对磁分路器的电工钢进行建模,并且将铝用于电磁屏蔽。在框架和铝屏蔽层中使用了阻抗边界来计算杂散损耗。在以下三种情况下,计算了夹持框架中的杂散损耗:1)没有任何屏蔽方法的框架; 2)带有磁分流器的框架; 3)带有C形铝屏蔽的框架。 HCL中的电流在2 kA至20 kA之间变化。本文还讨论了在配电变压器框架中使用电磁屏​​蔽和磁分流器之间获得的结果。

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