Affiliation:
1. ABB—Corporate Research Center, 5405—Baden, Switzerland
Abstract
The effect of streamwise fluid temperature variation on the local heat transfer coefficient measurements in transient heat transfer tests in long channels is addressed. Previous methods are shown to result in considerable errors. A simplified model is proposed to characterize the local fluid temperature, which drives the heat transfer. With it, analytical solutions for the local wall temperature history are derived, which involve two unknowns, the local heat transfer coefficient and a lumped upstream heat transfer parameter. Using these solutions in the data reduction, these two parameters are determined from surface temperature measurements. Numerical experiments that simulate the physical experiment show the applicability and robustness of the proposed method. The method is finally demonstrated experimentally by investigating heat transfer in a smooth, square duct.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference20 articles.
1. Baughn, J. W., and Yan, X., 1992, “Local Heat Transfer Measurements in Square Ducts With Transverse Ribs,” Enhanced Heat Transfer, ASME HTD-Vol. 102, pp. 1–7.
2. Besserman
D. L.
, and TanrikutS., 1992, “Comparison of Heat Transfer Measurements With Computations for Turbulent Flow Around a 180 Degree Bend,” ASME Journal of Turbomachinery, Vol. 114, pp. 865–872.
3. Blair, M. F., Wagner, J. H., and Steuber, G. D., 1991, “New Applications of Liquid-Crystal Thermography in Rotating Turbomachinery Heat Transfer Research,” ASME Paper No. 91-GT-354.
4. Butler
R. J.
, and BaughnJ. W., 1996, “The Effect of the Thermal Boundary Condition on Transient Method Heat Transfer Measurements on a Flat Plate With a Laminar Boundary Layer,” ASME JOURNAL OF HEAT TRANSFER, Vol. 118, pp. 831–837.
5. Chyu, M. K., Ding, H., Downs, J. P., Van Sutendael, A., and Soechting, F. O., 1997, “Determination of Local Heat Transfer Coefficient Based on Bulk Mean Temperature Using a Transient Liquid Crystals Technique,” ASME Paper No. 97-GT-489.
Cited by
21 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献