Incidence Effect on the Aero-Thermal Performance of a Film Cooled Nozzle Vane Cascade

Author:

Abdeh H.1,Barigozzi G.1,Perdichizzi A.1,Henze M.2,Krueckels J.2

Affiliation:

1. Dipartimento di Ingegneria e Scienze Applicate, Università degli Studi di Bergamo, Dalmine 24044, BG, Italy e-mail:

2. Ansaldo Energia Switzerland Ltd., Baden 5401, Switzerland

Abstract

In the present paper, the influence of inlet flow incidence on the aerodynamic and thermal performance of a film cooled linear nozzle vane cascade is fully assessed. Tests have been carried out on a solid and a cooled cascade. In the cooled cascade, coolant is ejected at the end wall through a slot located upstream of the leading edge plane. Moreover, a vane showerhead cooling system is also realized through four rows of cylindrical holes. The cascade was tested at a high inlet turbulence intensity level (Tu1 = 9%) and at a constant inlet Mach number of 0.12 and nominal cooling condition, varying the inlet flow angle in the range ±20 deg. The aero-thermal characterization of vane platform was obtained through five-hole probe and end wall adiabatic film cooling effectiveness measurements. Vane load distributions and surface flow visualizations supported the discussion of the results. A relevant negative impact of positive inlet flow incidence on the cooled cascade aerodynamic and thermal performance was detected. A negligible influence was instead observed at negative incidence, even at the lowest tested value of −20 deg.

Publisher

ASME International

Subject

Mechanical Engineering

Reference33 articles.

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2. Insinna, M., Griffini, D., Salvadori, S., and Martelli, F., 2014, “Conjugate Heat Transfer Analysis of a Film Cooled High-Pressure Turbine Vane Under Realistic Combustor Exit Flow Conditions,” ASME Paper No. GT2014-25280.10.1115/GT2014-25280

3. Insinna, M., Griffini, D., Salvadori, S., and Martelli, F., 2015, “Effects of Realistic Inflow Conditions on the Aero-Thermal Performance of a Film-Cooled Vane,” 11th European Turbomachinery Conference (ETC11), Madrid, Spain, Mar. 23–27, Paper No. ETC2015-095.https://www.researchgate.net/publication/272442918_Effects_of_Realistic_Inflow_Conditions_on_the_Aero-Thermal_Performance_of_a_Film-Cooled_Vane

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