An Experimental Study of Stagnation Region Film Cooling for Application to Gas Turbine Airfoils

An Experimental Study of Stagnation Region Film Cooling for Application to Gas Turbine Airfoils
Title An Experimental Study of Stagnation Region Film Cooling for Application to Gas Turbine Airfoils PDF eBook
Author Warren J. Mick
Publisher
Pages
Release 1983
Genre
ISBN

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Film Cooling with Ejection from a Row of Inclined Circular Holes

Film Cooling with Ejection from a Row of Inclined Circular Holes
Title Film Cooling with Ejection from a Row of Inclined Circular Holes PDF eBook
Author Christian Liess
Publisher
Pages 116
Release 1973
Genre Cooling
ISBN

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Experimental Study on Film Cooling of Gas Turbine Airfoils Using Shaped Holes

Experimental Study on Film Cooling of Gas Turbine Airfoils Using Shaped Holes
Title Experimental Study on Film Cooling of Gas Turbine Airfoils Using Shaped Holes PDF eBook
Author Hans Claudius Reiss
Publisher
Pages 138
Release 2000
Genre
ISBN

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Heat Transfer in Gas Turbines

Heat Transfer in Gas Turbines
Title Heat Transfer in Gas Turbines PDF eBook
Author Bengt Sundén
Publisher Witpress
Pages 544
Release 2001
Genre Medical
ISBN

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This title presents and reflects current active research on various heat transfer topics and related phenomena in gas turbine systems. It begins with a general introduction to gas turbine heat transfer, before moving on to specific areas.

Variable Incidence Angle Film Cooling Experiments on a Scaled Up Turbine Airfoil Model

Variable Incidence Angle Film Cooling Experiments on a Scaled Up Turbine Airfoil Model
Title Variable Incidence Angle Film Cooling Experiments on a Scaled Up Turbine Airfoil Model PDF eBook
Author Kyle Feliciano Chavez
Publisher
Pages 546
Release 2016
Genre
ISBN

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This study focused on three main areas of research - the development of a new type of low-speed, closed-loop wind tunnel design to test at varying incidence angles, the investigation of film cooling for gas turbine components at varying incidence angles, and the analysis of the heat transfer and flow field predictive capability of RANS models. In order to develop the closed loop wind tunnel, a rigorous design and validation process was followed. This validated design is unique for low-speed closed-loop facilities. The development of this wind tunnel enabled measurements of adiabatic and overall effectiveness of two highly realistic airfoil models with shaped holes at varying incidence angles. This was accomplished through application of the appropriate aerodynamic and heat transfer scaling parameters for all measurements. Among other results, it was found that the shaped holes at the stagnation row of holes significantly enhanced film cooling effectiveness in the high curvature region of the showerhead depending on the incidence angle tested, and that the incidence angle effect persisted on the matched Biot number model. No previous studies had experimentally investigated the effects of incidence angle effects on overall effectiveness of a full-coverage airfoil. Furthermore, no previous studies had investigated the effect of shaped holes in the showerhead region of a realistic airfoil model such as the one used in this study. Finally, the computational predictive capability of various RANS turbulence models were analyzed by predicting the heat transfer coefficient of the model as well as the turbulence production and turning angle of a vertical array of rods used to generate turbulence in the tunnel. It was found that the computational predictions of leading-edge heat transfer were under-predicted due to the shape of the model leading edge. It was also found that the SST-Transition model appropriately predicted downstream turbulence and turning angle of the vertical rod array when compared to experimental results and empirical correlations in the literature. This is the first study to experimentally and computationally investigate the turning angle of a vertical grid array over a range of zero and non-zero inlet flow angles.

Stagnation Region Gas Film Cooling

Stagnation Region Gas Film Cooling
Title Stagnation Region Gas Film Cooling PDF eBook
Author D. W. Luckey
Publisher
Pages 388
Release 1981
Genre Gas-turbines
ISBN

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Masters Theses in the Pure and Applied Sciences

Masters Theses in the Pure and Applied Sciences
Title Masters Theses in the Pure and Applied Sciences PDF eBook
Author Wade H. Shafer
Publisher Springer Science & Business Media
Pages 314
Release 2012-12-06
Genre Science
ISBN 1468449192

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Masters Theses in the Pure and Applied Sciences was first conceived, published, and disseminated by the Center for Information and Numerical Data Analysis and Synthesis (CINDAS) * at Purdue University in 1 957, starting its coverage of theses with the academic year 1955. Beginning with Volume 13, the printing and dissemination phases of the activity were transferred to University Microfilms/Xerox of Ann Arbor, Michigan, with the thought that such an arrangement would be more beneficial to the academic and general scientific and technical community. After five years of this joint undertaking we had concluded that it was in the interest of all con cerned if the printing and distribution of the volumes were handled by an interna tional publishing house to assure improved service and broader dissemination. Hence, starting with Volume 18, Masters Theses in the Pure and Applied Sciences has been disseminated on a worldwide basis by Plenum Publishing Cor poration of New York, and in the same year the coverage was broadened to include Canadian universities. All back issues can also be ordered from Plenum. We have reported in Volume 28 (thesis year 1 983) a total of 10,661 theses titles from 26 Canadian and 197 United States universities. We are sure that this broader base for these titles reported will greatly enhance the value of this important annual reference work. While Volume 28 reports theses submitted in-1983, on occasion, certain univer sities do report theses submitted in previous years but not reported at the time.