The simulation of a new high frequency transformer

Q3 Energy Journal of Energy Systems Pub Date : 2022-06-30 DOI:10.30521/jes.1123925
Sude Hatem, E. Kurt
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Abstract

Core losses of transformers motivate many engineers and scientists to design and implement different transformers for their specific aims. Since there exists a growing interest on high frequency applications in today’s world, design and optimization studies of a magnetic fluid core transformer (MFCT), having an easy and cheap production approach in high frequency applications, are considered in the present paper. The desired design should operate in a more efficient way within a wide frequency band. The MFCT considered here can be a solution to the eddy currents and core losses encountered in the conventional transformers with its low conductivity, oil-based magnetic fluid and super paramagnetic characteristic. The magnetic fluid in the proposed work consists of a combination of ferromagnetic particles made by iron in an averaged diameter of 70 µm with an adjustable magnetism compared to the traditional magnetic fluids and an engine oil, thereby the magnetic permeability of the overall fluid core can be fully adjustable by the variation of mass proportion between the oil and iron powder as an easy process without any chemical process. A COMSOL Multi-Physics design is performed via a finite element package in three dimensions. It is proven that the iron particles exhibit a complicated pattern inside the engine oil and produce a well-defined high frequency output at the secondary windings in a wide range of frequency.
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一种新型高频变压器的仿真
变压器的铁心损耗促使许多工程师和科学家为他们的特定目标设计和实施不同的变压器。由于当今世界对高频应用的兴趣越来越大,本文考虑了一种在高频应用中具有简单廉价生产方法的磁流芯变压器(MFCT)的设计和优化研究。期望的设计应该以更有效的方式在宽频带内操作。本文所考虑的MFCT可以解决传统变压器中遇到的涡流和铁芯损耗,因为它具有低电导率、油基磁流体和超顺磁特性。拟议工作中的磁性流体由平均直径为70µm的铁磁性颗粒组成,与传统的磁性流体和机油相比,其磁性可调,从而可以通过改变油和铁粉之间的质量比例来完全调节整个流体芯的磁导率,这是一个简单的过程,而不需要任何化学过程。COMSOL多物理设计是通过三维有限元软件包进行的。事实证明,铁颗粒在发动机油中表现出复杂的模式,并在宽频率范围内的次级绕组处产生明确的高频输出。
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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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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