Detailed investigation of film cooling for a cylindrical leading edge is carried out using large eddy simulation (LES). The paper focuses on the effects of coolant to mainstream blowing ratio on flow features and, consequently, on the adiabatic effectiveness and heat transfer coefficient. With the advantage of obtaining unique, accurate, and dynamic results from LES, the influential coherent structures in the flow are identified. Describing the mechanism of jet-mainstream interaction, it is shown that as the blowing ratio increases, a more turbulent shear layer and stronger mainstream entrainment occur. The combined effects lead to a lower adiabatic effectiveness and higher heat transfer coefficient. Surface distribution and span-averaged profiles are shown for both adiabatic effectiveness and heat transfer (presented by Frossling number). Results are in good agreement with the experimental data of Ekkad et al. [1998, “Detailed Film Cooling Measurement on a Cylindrical Leading Edge Model: Effect of Free-Steam Turbulence and Coolant Density,” ASME J. Turbomach., 120, pp. 799–807].
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October 2008
Research Papers
Large Eddy Simulation of Leading Edge Film Cooling—Part II: Heat Transfer and Effect of Blowing Ratio
Ali Rozati,
Ali Rozati
High Performance Computational Fluid-Thermal Sciences and Engineering Laboratory, Mechanical Engineering Department,
Virginia Polytechnic Institute and State University
, Blacksburg, VA 24061
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Danesh K. Tafti
Danesh K. Tafti
High Performance Computational Fluid-Thermal Sciences and Engineering Laboratory, Mechanical Engineering Department,
Virginia Polytechnic Institute and State University
, Blacksburg, VA 24061
Search for other works by this author on:
Ali Rozati
High Performance Computational Fluid-Thermal Sciences and Engineering Laboratory, Mechanical Engineering Department,
Virginia Polytechnic Institute and State University
, Blacksburg, VA 24061
Danesh K. Tafti
High Performance Computational Fluid-Thermal Sciences and Engineering Laboratory, Mechanical Engineering Department,
Virginia Polytechnic Institute and State University
, Blacksburg, VA 24061J. Turbomach. Oct 2008, 130(4): 041015 (7 pages)
Published Online: August 4, 2008
Article history
Received:
June 8, 2007
Revised:
June 20, 2007
Published:
August 4, 2008
Citation
Rozati, A., and Tafti, D. K. (August 4, 2008). "Large Eddy Simulation of Leading Edge Film Cooling—Part II: Heat Transfer and Effect of Blowing Ratio." ASME. J. Turbomach. October 2008; 130(4): 041015. https://doi.org/10.1115/1.2812411
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