Magneto-thermal and aerodynamic study of a toroidal transformer dimensioning

Author:

Boukhenoufa Farouk12,Ikhlef Nabil1,Aomar Lyes1,Hacib Tarik1

Affiliation:

1. , University of Jijel, Algeria

2. University of 20 August 1955-Skikda, Algeria

Abstract

Toroidal transformers are designed using a circular core instead of the traditional laminated rectangular core, which reduces inductance losses and increases efficiency. The primary goal of this study is to understand the cooling mechanisms involved in electrical transformers, which are critical components in power systems. Steady electromagnetic, fluid flow and temperature equations are simultaneously solved (direct method) using the finite elements method FEM of a shielded toroidal transformer. The paper focuses on creating a direct-coupled model (DCM) to understand the processes involved in electrical transformers cooling, using Magneto-AeroDynamic (MAD) models. The nonlinear models developed will be implemented and validated in this parametric study for different inlet velocities and the number of outlet. Transformers generate heat during operation, and it’s important to control the temperature to prevent overheating and ensure reliable operation.

Publisher

IOS Press

Reference14 articles.

1. Design formulas for the leakage inductance of toroidal distribution transformers;Hernández;IEEE Transactions on Power Delivery,2011

2. Hybrid winding concept for toroids;Schneider;IEEE ECCE Asia Downunder,2013

3. Impulse response analysis of toroidal core distribution transformers for dielectric design;Gómez;IEEE Trans. Power Del.,2011

4. Design and fabrication of low-loss toroidal air-core inductors;Sullivan;IEEE Power Electronics Specialists Conference,2007

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