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Article
Publication date: 2 March 2015

Robert Sitar, Žarko Janić and Željko Štih

– The purpose of the paper is to compare losses and temperatures in power transformer tanks for different high current lead arrangements.

Abstract

Purpose

The purpose of the paper is to compare losses and temperatures in power transformer tanks for different high current lead arrangements.

Design/methodology/approach

3D computational tools MagNet and ThermNet based on the finite element method are used to calculate magnetic field distribution in 3D models of power transformers. Eddy current losses in conducting metal parts are induced by the stray magnetic field of transformer windings and high current leads. From loss distribution and appropriate cooling condition temperature values are calculated.

Findings

From calculation results it is possible to understand advantages and disadvantages of different lead arrangements. The analysis is finalized with a short presentation of the influence of magnetic shielding height on temperature and loss values.

Originality/value

Results give transformer designer clearer understanding of precautions that should be taken for avoiding high temperatures on the tank wall of a transformer.

Details

COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering, vol. 34 no. 2
Type: Research Article
ISSN: 0332-1649

Keywords

Article
Publication date: 2 March 2012

Ivan Sitar, Zarko Janic and Branimir Cucic

The purpose of this paper is to determine the external magnetic field density of the traction transformer for EMU and to find the model for its computation.

Abstract

Purpose

The purpose of this paper is to determine the external magnetic field density of the traction transformer for EMU and to find the model for its computation.

Design/methodology/approach

The magnetic flux density in the surrounding region of the traction transformer was modeled and calculated using FEM. The transformer was modeled in a way that tank, clamps and current sources were taken into account. Most frequent operating modes for the basic 50 Hz current harmonic, and most represented higher harmonic of 1,950 Hz loading current, were analyzed.

Findings

Matching calculated and measured values were obtained on the finished transformer. The developed calculation has proved to be a useful tool for the stray field calculation outside this type of transformer. Calculated values of the flux density are lower then the maximum permitted values defined by the DIN VDE 0848 standard.

Originality/value

This paper presents a study of calculation compared to measurement of magnetic field density outside an oil immersed transformer.

Details

COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, vol. 31 no. 2
Type: Research Article
ISSN: 0332-1649

Keywords

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