Motor Cooling Modeling: An Inverse Method for the Identification of Convection Coefficients

Author:

Davin Tanguy12,Pellé Julien3,Harmand Souad3,Yu Robert4

Affiliation:

1. Université de Lille Nord de France, LAMIH UMR CNRS 8201, Université de Valenciennes et du Hainaut-Cambrésis, le Mont Houy, Valenciennes Cedex 9 59313, France;

2. Renault, Direction de la Recherche, 1 avenue du golf, Guyancourt 78280, France e-mail:

3. Université de Lille Nord de France, LAMIH UMR CNRS 8201, Université de Valenciennes et du Hainaut-Cambrésis, le Mont Houy, Valenciennes Cedex 9 59313, France

4. Renault, Direction de la Recherche, 1 avenue du golf, Guyancourt 78280, France

Abstract

The present study focuses on oil cooling for electric motors. A 40 kW test machine in which oil was introduced at each side of the machine to directly cool the stator coil end-windings was previously implemented. The lumped system analysis is used to model the thermal behavior of this test electric machine. An inverse method is applied to interpret the data obtained by the experimental setup. The inverse method leads to interior convection coefficients that help describe the heat transfer mechanisms.

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

Reference24 articles.

1. Solving the More Difficult Aspects of Electric Motor Thermal Analysis in Small and Medium Size Industrial Induction Motors;IEEE Trans. Energy Convers.,2005

2. Staton, D.-A., Popescu, M., Hawkins, D., and Boglietti, A., 2010, “Influence of Different End Region Cooling Arrangements on End-Winding Heat Transfer Coefficients in Electrical Machines,” Energy Conversion Congress and Exposition (ECCE), Atlanta, GA, Sept. 12–16, pp. 1298–1305.10.1109/ECCE.2010.5617810

3. Hay, N., Lampard, D., Pickering, S., and Roylance, T.-F., 1995, “Heat Transfer From the Stator End-Windings of a Low-Voltage Concentric-Wound Electric Motor,” Seventh International Conference on Electrical Machines and Drives, Durham, UK, Sept. 11–13, Paper No. 412.10.1049/cp:19950918

4. Local Heat Transfer and Recovery Factor With Impinging Free-Surface Circular Jets of Transformer Oil;Int. J. Heat Mass Transfer,1997

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