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Forced steady-state convections from pin-fin arrays

Author

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  • Tahat, M.A.
  • Babus'Haq, R.F.
  • Probert, S.D.

Abstract

The steady-state thermal and air-flow resistance performances of horizontally-based pin-fin assemblies have been investigated experimentally. The effects of varying the geometrical configurations of the pin-fins and the air-flow rates have been studied. The optimal pin-fin separation Sxopt in the span-wise direction, to achieve a maximum rate of heat transfer from the assembly, is 1·0 ± 0·2 mm

Suggested Citation

  • Tahat, M.A. & Babus'Haq, R.F. & Probert, S.D., 1994. "Forced steady-state convections from pin-fin arrays," Applied Energy, Elsevier, vol. 48(4), pages 335-351.
  • Handle: RePEc:eee:appene:v:48:y:1994:i:4:p:335-351
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    Cited by:

    1. Sahin, Bayram & Yakut, Kenan & Kotcioglu, Isak & Celik, Cafer, 2005. "Optimum design parameters of a heat exchanger," Applied Energy, Elsevier, vol. 82(1), pages 90-106, September.
    2. Tahat, M. & Kodah, Z. H. & Jarrah, B. A. & Probert, S. D., 2000. "Heat transfers from pin-fin arrays experiencing forced convection," Applied Energy, Elsevier, vol. 67(4), pages 419-442, December.
    3. Yakut, Kenan & Alemdaroglu, Nihal & Sahin, Bayram & Celik, Cafer, 2006. "Optimum design-parameters of a heat exchanger having hexagonal fins," Applied Energy, Elsevier, vol. 83(2), pages 82-98, February.

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