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Experimental and Numerical Study on the Combined Jet Impingement and Film Cooling of an Aero-Engine Afterburner Section

Singh, Ashutosh Kumar; Kumar, Sourabh; Singh, Kuldeep

Experimental and Numerical Study on the Combined Jet Impingement and Film Cooling of an Aero-Engine Afterburner Section Thumbnail


Authors

Ashutosh Kumar Singh

Sourabh Kumar

Dr Kuldeep Singh KULDEEP.SINGH@NOTTINGHAM.AC.UK
Senior Application Engineers inIndustrialisation of Electrical Machines



Contributors

Jian Liu
Editor

Abstract

The recent advancement of cooling methodologies for critical components such as turbine blades, combustor liners, and afterburner liners has led to the development of a combination of impingement and film cooling. The present study proposes an efficient cooling technique for a modern aero-engine afterburner liner based on the combination of jet impingement and film cooling. To achieve this, a numerical model is devised to model the film flow over a corrugated liner with several jets impinging over it. The numerical model is validated in a set of in-house experiments as well as against experimental data available in the literature. The experiment is performed for a limited temperature range (i.e., with a low-density ratio). However, the numerical simulations are carried out by varying the blowing ratio from 0.3 to 0.6. The density ratio during the simulations is kept at 3.5. The minimum distance between the impinging plate and the liner is kept at h/D = 1. A detailed analysis of the numerical results indicates a significant drop in the temperature distribution over the liner surface because of the employed cooling technique. The present study also reveals that, under similar operating conditions, the combined jet impingement and film cooling system has the ability to achieve the targeted cooling effect at a lower bleed air flow rate due to its higher effectiveness than that of the standard film cooling arrangement.

Citation

Singh, A. K., Kumar, S., & Singh, K. (2023). Experimental and Numerical Study on the Combined Jet Impingement and Film Cooling of an Aero-Engine Afterburner Section. Aerospace, 10(7), Article 589. https://doi.org/10.3390/aerospace10070589

Journal Article Type Article
Acceptance Date Jun 24, 2023
Online Publication Date Jun 27, 2023
Publication Date 2023-07
Deposit Date Jul 27, 2023
Publicly Available Date Aug 2, 2023
Journal Aerospace
Electronic ISSN 2226-4310
Publisher MDPI
Peer Reviewed Peer Reviewed
Volume 10
Issue 7
Article Number 589
DOI https://doi.org/10.3390/aerospace10070589
Keywords Aeroengine; hydrogen combustion; film cooling; jet impingement; afterburner
Public URL https://nottingham-repository.worktribe.com/output/22989322

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