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Validation of a heat transfer model for end winding bars of large hydro generators

Stephan Klomberg (Institute for Fundamentals and Theory in Electrical Engineering, Graz University of Technology, Graz, Austria)
Ernst Farnleitner (R&D Department, Andritz Hydro GmbH, Weiz, Austria)
Gebhard Kastner (R&D Department, Andritz Hydro GmbH, Weiz, Austria)
Oszkár Bíró (Institute for Fundamentals and Theory in Electrical Engineering, Graz University of Technology, Graz, Austria and Christian Doppler Laboratory for Multiphysical Simulation, Analysis and Design of Electrical Machines, Graz University of Technology, Graz, Austria)
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Abstract

Purpose

The purpose of this paper is to carry out an analytical approximation model (heat transfer model (HTM)) for the calculation of the heat transfer coefficient at the end winding bars of large hydro generators. These coefficients are needed for lumped parameter thermal models in the design process.

Design/methodology/approach

The computational fluid dynamics simulation in combination with conjugate heat transfer (CHT) validates the accuracy of the HTM. The theoretical approach describes the formulation of the heat transfer coefficient and the Gauss-Newton method has been applied to find the coefficients of the approximation model.

Findings

The paper describes the new analytical approximation model for the heat transfer coefficient at the end winding bars of hydro generators and shows also the validation to simulation results.

Originality/value

The analytical approximation model for the heat transfer coefficient at the end winding bars has been described and a comparison with CHT results has shown a good agreement.

Keywords

Acknowledgements

This work has been supported by the Christian Doppler Research Association and by the Andritz Hydro GmbH.

Citation

Klomberg, S., Farnleitner, E., Kastner, G. and Bíró, O. (2015), "Validation of a heat transfer model for end winding bars of large hydro generators", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 34 No. 5, pp. 1589-1597. https://doi.org/10.1108/COMPEL-02-2015-0060

Publisher

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Emerald Group Publishing Limited

Copyright © 2015, Emerald Group Publishing Limited

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