Heat Transfer and Pressure Drop in Pin-Fin Trapezoidal Ducts

Author:

Hwang J.-J.1,Lai D.-Y.1,Tsia Y.-P.1

Affiliation:

1. Department of Mechanical Engineering, Chung-Hua University, Hsinchu, Taiwan 300

Abstract

Experiments are conducted to determine the log-mean averaged Nusselt number and overall pressure-drop coefficient in a pin-fin trapezoidal duct that models the cooling passages in modern gas turbine blades. The effects of pin arrangement (in-line and staggered), flow Reynolds number (6,000 ≦ Re ≦ 40,000) and ratio of lateral-to-total flow rate (0 ≦ ε ≦ 1.0) are examined. The results of smooth trapezoidal ducts without pin arrays are also obtained for comparison. It is found that, for the single-outlet-flow duct, the log-mean averaged Nusselt number in the pin-fin trapezoidal duct with lateral outlet is insensitive to the pin arrangement, which is higher than that in straight-outlet-flow duct with the corresponding pin array. As for the trapezoidal ducts having both outlets, the log-mean averaged Nusselt number has a local minimum value at about ε = 0.3. After about ε ≧ 0.8, the log-mean averaged Nusselt number is nearly independent of the pin configuration. Moreover, the staggered pin array pays more pressure-drop penalty as compared with the in-line pin array in the straight-outlet-flow duct; however, in the lateral-outlet-flow duct, the in-line and staggered pin arrays yield almost the same overall pressure drop.

Publisher

ASME International

Subject

Mechanical Engineering

Reference16 articles.

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2. Dittus, F. W., and Boelter, L. M. K., 1930, University of California at Berkeley, Publications in Engineering, Vol. 2, p. 443.

3. Hwang J. J. , 1997, “Turbulent Heat Transfer and Fluid Flow a Porous-Baffled Channel,” AIAA J. Thermophysics and Heat Transfer, Vol. 11, pp. 429–436.

4. Incropera, F. P., and DeWitt, D. P., 1994, Introduction to Heat Transfer, 3rd ed., Wiley, New York.

5. Kline S. J. , and McClintockF. A., 1953, “Describing Uncertainties on Single-Sample Experiments,” Mechanical Engineering, Vol. 75, Jan., pp. 3–8.

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