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Mathematical Calculation of Stray Losses in Transformer Tanks with a Stainless Steel Insert

Author

Listed:
  • Serguei Maximov

    (Tecnológico Nacional de Mexico, Instituto Tecnológico de Morelia, PGIIE, Av. Tecnológico No. 1500, Lomas de Santiaguito, Morelia 58120, Mich., Mexico)

  • Manuel A. Corona-Sánchez

    (Tecnológico Nacional de Mexico, Instituto Tecnológico de Morelia, PGIIE, Av. Tecnológico No. 1500, Lomas de Santiaguito, Morelia 58120, Mich., Mexico)

  • Juan C. Olivares-Galvan

    (Departamento de Energía, Universidad Autónoma Metropolitana Azcapotzalco, Ciudad de México 02200, Mexico)

  • Enrique Melgoza-Vazquez

    (Tecnológico Nacional de Mexico, Instituto Tecnológico de Morelia, PGIIE, Av. Tecnológico No. 1500, Lomas de Santiaguito, Morelia 58120, Mich., Mexico)

  • Rafael Escarela-Perez

    (Departamento de Energía, Universidad Autónoma Metropolitana Azcapotzalco, Ciudad de México 02200, Mexico)

  • Victor M. Jimenez-Mondragon

    (Departamento de Energía, Universidad Autónoma Metropolitana Azcapotzalco, Ciudad de México 02200, Mexico)

Abstract

At present it is claimed that all electrical energy systems operate with high values of efficiency and reliability. In electric power systems (EPS), electrical power and distribution transformers are responsible for transferring the electrical energy from power stations up to the load centers. Consequently, it is mandatory to design transformers that possess the highest efficiency and reliability possible. Considerable power losses and hotspots may exist in the bushing region of a transformer, where conductors pass through the tank. Most transformer tanks are made of low-carbon steel, for economical reasons, causing the induction of high eddy currents in the bushing regions. Using a non-magnetic insert in the transformer tank can reduce the eddy currents in the region and as a consequence avoid overheating. In this work, analytical formulations were developed to calculate the magnetic field distribution and the stray losses in the transformer region where bushings are mounted, considering a stainless steel insert (SSI) in the transformer tank. Previously, this problem had only been tackled with numerical models. Several cases were analyzed considering different non-magnetic insert sizes. Additionally, a numerical study using a two dimensional (2D) finite element (FE) axisymmetric model was carried out in order to validate the analytical results. The solved cases show a great concordance between models, obtaining relative errors between the solutions of less than two percent.

Suggested Citation

  • Serguei Maximov & Manuel A. Corona-Sánchez & Juan C. Olivares-Galvan & Enrique Melgoza-Vazquez & Rafael Escarela-Perez & Victor M. Jimenez-Mondragon, 2021. "Mathematical Calculation of Stray Losses in Transformer Tanks with a Stainless Steel Insert," Mathematics, MDPI, vol. 9(2), pages 1-14, January.
  • Handle: RePEc:gam:jmathe:v:9:y:2021:i:2:p:184-:d:482197
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    Cited by:

    1. Juan Carlos Olivares-Galvan & Hector Ascencion-Mestiza & Serguei Maximov & Efrén Mezura-Montes & Rafael Escarela-Perez, 2023. "Design of a Three-Phase Shell-Type Distribution Transformer Using Evolutionary Algorithms," Energies, MDPI, vol. 16(10), pages 1-16, May.

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