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Original Articles

Lumped Parameter Thermal Model for Axial Flux Switched Reluctance Motors

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Pages 2318-2326 | Received 10 Feb 2016, Accepted 03 May 2017, Published online: 01 Mar 2018

References

  • Boglietti, A., Cavagnino, A., Staton, D., Shanel, M., Mueller, M., and Mejuto, C., “Evolution and modern approaches for thermal analysis of electrical machines,” IEEE Trans. Ind. Electron., Vol. 56, No. 3, pp. 871–882, March 2009.
  • Vong, P., and Rodger, D., “Coupled electromagnetic-thermal modeling of electrical machines,” IEEE Trans. Magn., Vol. 39, No. 3, pp. 1614–1617, May 2003.
  • Duran, M. J., and Fernandez, J., “Lumped-parameter thermal model for induction machines,” IEEE Trans. Energy Convers., Vol. 19, No. 4, pp. 791–792, December 2004.
  • Rostami, N., Feyzi, M. R., Pyrhonen, J., Parviainen, A., and Niemela, M., “Lumped-parameter thermal model for axial flux permanent magnet machines,” IEEE Trans. Magn., Vol. 49, No. 3, pp. 1178–1184, July 2012.
  • Rouhani, H., Faiz, J., and Lucas, C., “Lumped thermal model for switched reluctance motor applied to mechanical design optimization,” Math. Comput. Modell., Vol. 45, pp. 625–638, 2007.
  • Mellor, P. H., Roberts, D., and Turner, D. R., “Lumped parameter thermal model for electrical machines of TEFC design,” IEE Proc.-B, Vol. 138, No. 5, pp. 205–218, September 1991.
  • EL-Refaie, A. M., Harris, N. C., Jahns, T. M., and Rahman, K. M., “Thermal analysis of multi-barrier interior PM synchronous machine using lumped parameter model,” IEEE Trans. Energy Convers., Vol. 19, No. 2, pp. 303–309, June 2004.
  • Boglietti, A., Cavagnino, A., and Staton, D., “TEFC induction motors thermal models: A parameter sensitivity analysis,” IEEE Trans. Ind. Appl., Vol. 41, No. 3, pp. 756–763, May/June 2005.
  • Spooner, E., and Chalmers, B., “A slotless, toroidal-stator permanent-magnet generator,” Proc. Inst. Elect. Eng. B-Elect. Power Appl., Vol. 139, No. 6, pp. 497–506, November 1992.
  • Howey, D. A., Holmes, A. S., and Pullen, K. R., “Measurement and CFD prediction of heat transfer in air-cooled disc-type electrical machines,” IEEE Trans. Ind. Appl., Vol. 47, No. 4, July/August 2011.
  • Wrobel, R., Mellor, P. H., McNeill, N., and Staton, D. A., “Thermal performance of an open-slot modular-wound machine with external rotor,” IEEE Trans. Energy Convers., Vol. 25, No. 2, pp. 403–411, June 2010.
  • Ebrahimi, Y., and Feyzi, M. R., “A high torque density axial flux SRM with modular stator,” Iran. J. Elect. Electron. Eng., Vol. 11, No. 4, pp. 336–344, December 2015.
  • Wrobel, R., and Mellor, P. H., “A general cuboidal element for three-dimensional thermal modeling,” IEEE Trans. Magn., Vol. 46, No. 8, pp. 3197–3200, August 2010.
  • Roberts, T. J., “Determination of the thermal constants of heat flow equations of electrical machines,” Proc. Inst. Mech. Eng., Vol. 184, pp. 84–92, 1969–70
  • Liebe, W., “Cooling of large machines,” Elektrotech. Z (ETZ) A, Vol. 87, pp. 434–442, June 1966.
  • Staton, D., Boglietti, A., and Cavagnino, A., “Solving the more difficult aspects of electric motor thermal analysis in small and medium size industrial induction motors,” IEEE Trans. Energy Convers., Vol. 20, No. 3, pp. 620–628, September 2005.
  • Ouali, S. S., Saury, D., Harmand, S., Phillipart, O., and Laloy, D., “Convective heat transfer inside a rotating cylinder with an axial air flow,” Int. J. Thermal Sci., Vol. 45, pp. 1166–1178, March 2006.
  • Dropkin, D., and Carmi, A., “Natural convection heat transfer from a horizontal cylinder rotating in air,” Trans. ASME, Vol. 79, No. 4, pp. 741–749, 1956.
  • Kreith, F., “Convection heat transfer in rotating systems,” Advances in Heat Transfer, New York: Academic Press, Inc., Vol. 5, pp. 129–251, 1968.
  • Lin, H. T., and Lin, L. K., “Heat transfer from a rotating cone or disk to fluids of any Prandtl number,” Int. Comm. Heat Mass Transfer, Vol. 14, pp. 323–332, 1987.
  • Faiz, J., Ganji, B., Carstensen, C. E., Kasper, K. A., and De Doncker, R. W., “Temperature rise analysis of switched reluctance motors due to electromagnetic losses,” IEEE Trans. Magn., Vol. 45, No. 7, pp. 2927–2934, July 2009.
  • Howey, D. A., Childs, P. R. N., and Holmes, A. S., “Air-gap convection in rotating electrical machines,” IEEE Trans. Ind. Electron., Vol. 59, No. 3, pp. 1367–1375, March 2012.
  • Boutarfa, R., and Harmand, S., “Local convective heat transfer for laminar and turbulent flow in a rotor–stator system,” Exp. Fluids, Vol. 38, No. 2, pp. 209–221, February 2005.
  • Howey, D., Holmes, A., and Pullen, K., “Radially resolved measurement of stator heat transfer in a rotor–stator disc system,” Int. J. Heat Mass Transf., Vol. 53, Nos. 1–3, pp. 491–501, January 2010.
  • Howey, D., Holmes, A., and Pullen, K., “Prediction and measurement of heat transfer in air-cooled disc-type electrical machines,” Proceedings of IET, PEMD Conference, Brighton, UK, pp. 1–6, April 2010.
  • Daily, J., and Nece, R., “Chamber dimension effects on induced flow and frictional resistance of enclosed rotating disks,” Trans. ASME, J. Basic Eng., Vol. 82, No. 1, pp. 217–232, 1960.
  • Boutarfa, R., and Harmand, S., “Local convective heat transfer for laminar and turbulent flow in a rotor–stator system,” Exp. Fluids, Vol. 38, No. 2, pp. 209–221, February 2005.
  • Staton, D. A., and Cavagnino, A., “Convection heat transfer and flow calculations suitable for analytical modelling of electric machines,” Proceedings of 32nd Annual Conference on IEEE Industrial Electronics (IECON’06), pp. 4841–4846, November 2006.
  • Parviainen, A., Niemela, M., and Pyrhonen, J., “Modeling of axial flux permanent-magnet machines,” IEEE Trans. Ind. Appl., Vol. 40, No. 5, pp. 333–1340, September/October 2004.
  • Boglietti, A., Cavagnino, A., Lazzari, M., and Pastorelli, M., “A simplified thermal model for variable-speed self-cooled industrial induction motor,” IEEE Trans. Ind. Appl., Vol. 39, No. 4, pp. 945–952, July/August 2003.

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