Experimental tests and computational fluid dynamics (CFD) simulations using the commercial code FLUENT were carried out to investigate the effects of the fan support hub geometry on the component heat transfer and cooling air flow through a simplified model of an electric motor for an automotive cooling-fan system, since little is known about the thermofluid dynamics of such machines. It has been found that the presence of radial ribs on the fan hub has a significant effect on drawing cooling air through the motor, particularly at lower air flowrates, regardless of the rotational speed. In addition, the rotational speed, hub diameter, fin height, and rib width are important parameters for inducing flow inside the hub while the tip gap and hub depth are not as influential. Increasing the number of ribs or fins has little impact on the performance of the hub. Good agreement was found between the experimental and predicted temperatures from heat transfer simulations of the motor for representative underhood environmental conditions. The present work shows that a valuable CFD tool can be developed to predict the temperature distribution inside the motor and offers a guide to the methodology whereby design modifications may be made to improve motor performance for a given application.


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    Title :

    Evaluation of the Thermofluid Performance of an Automotive Engine Cooling-Fan System Motor


    Contributors:
    Savory, E (author) / Martinuzzi, R J (author) / Ryval, J (author) / Li, Z (author) / Blissitt, M (author)


    Publication date :

    2011-01-01


    Size :

    16 pages




    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    English





    Evaluation of the thermofluid performance of an automotive engine cooling-fan system motor

    Savory,E. / Martinuzzi,R.J. / Ryval,J. et al. | Automotive engineering | 2011


    Evaluation of the thermofluid performance of an automotive engine cooling-fan system motor

    Savory, E. / Martinuzzi, R.J. / Ryval, J. et al. | Tema Archive | 2011



    A Computer Model for Thermofluid Analysis of Engine Warm-up Process

    Veshagh, A. / Chen, C. | SAE Technical Papers | 1993