The effects of array configuration and pin-endwall fillet on the heat transfer and pressure drop of short pin-fin arrays are investigated experimentally. The pin-fin element with endwall-fillet, typical in actual turbine cooling applications is modeled by a spool-like cylinder. The arrays studied include an in-line and a staggered array, each having 7 rows of 5 pins. These arrays have the same geometric parameters, i.e. H/D = 1, S/D = X/D = 2.5, and the Reynolds number ranging from 5 × 103 to 3 × 10. One of the present results shows that the staggered array always has a higher array-averaged mass transfer coefficient than its in-line counterpart. However, the pressure drop for the staggered array is higher compared to the in-line configuration. These trends are unaffected by the existence of the pin-endwall fillet. Another significant finding is that an array with pin-endwall fillet generally produces lower heat transfer coefficient and higher pressure drop than that without endwall-fillet. This leads to the conclusion that pin-endwall fillet is undesirable for heat transfer augmentation. In addition, naive use of the heat transfer results obtained with perfectly circular cylinders tends to overestimate the pin-fin cooling capability in the actual turbine. The effects of endwall-fillet on the array heat transfer and pressure drop are much more pronounced for the staggered array than for the in-line array; however, they diminish as the Reynolds number increases.
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ASME 1989 International Gas Turbine and Aeroengine Congress and Exposition
June 4–8, 1989
Toronto, Ontario, Canada
Conference Sponsors:
- International Gas Turbine Institute
ISBN:
978-0-7918-7916-0
Article Contents
PROCEEDINGS PAPER
Heat Transfer and Pressure Drop for Short Pin-Fin Arrays With Pin-Endwall Fillet Free
M. K. Chyu
M. K. Chyu
Carnegie Mellon University, Pittsburgh, PA
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M. K. Chyu
Carnegie Mellon University, Pittsburgh, PA
Paper No:
89-GT-99, V004T08A011; 8 pages
Published Online:
March 18, 2015
Citation
Chyu, MK. "Heat Transfer and Pressure Drop for Short Pin-Fin Arrays With Pin-Endwall Fillet." Proceedings of the ASME 1989 International Gas Turbine and Aeroengine Congress and Exposition. Volume 4: Heat Transfer; Electric Power; Industrial and Cogeneration. Toronto, Ontario, Canada. June 4–8, 1989. V004T08A011. ASME. https://doi.org/10.1115/89-GT-99
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