Mini-channel embedded film cooled flat plate: conjugate heat transfer analysis and enhancement study

Author:

Jaiswal Ajay Kumar,Sinha Mahapatra Pallab

Abstract

Purpose Maintaining the turbine blade’s temperature within the safety limit is challenging in high-pressure turbines. This paper aims to numerically present the conjugate heat transfer analysis of a novel approach to mini-channel embedded film-cooled flat plate. Design/methodology/approach Numerical simulations were performed at a steady state using SST kω turbulence model. Impingement and film cooling are classical approaches generally adopted for turbine blade analysis. The existing film cooling techniques were compared with the proposed design, where a mini-channel was constructed inside the solid plate. The impact of the blowing ratio (M), Biot number (Bi) and temperature ratio (TR) on overall cooling performance was also studied. Findings Overall cooling effectiveness was always shown to be higher for mini-channel embedded film-cooled plates. The effectiveness increases with increasing the blowing ratio from M = 0.3 to 0.7, then decreases with increasing blowing ratio (M = 1 and 1.4) due to lift-off conditions. The mini-channel embedded plate resulted in an approximately 21% increase in area-weighted average overall effectiveness at a blowing ratio of 0.7 and Bi = 1.605. The lower uniform temperature was also found for all blowing ratios at a low Biot number, where conduction heat transfer significantly impacts total cooling effectiveness. Originality/value To the best of the authors’ knowledge, this study presents a novel approach to improve the cooling performances of a film-cooled flat plate with better cooling uniformity by using embedded mini-channels. Despite the widespread application of microchannels and mini-channels in thermal and fluid flow analysis, the application of mini-channels for blade cooling is not explored in detail.

Publisher

Emerald

Subject

Mechanical Engineering,Aerospace Engineering,Computational Mechanics,Engineering (miscellaneous)

Reference56 articles.

1. Small diameter film cooling holes: the influence of hole size and pitch;International Journal of Turbo and Jet Engines,1988

2. ANSYS FLUENT- Solver theory guide;ANSYS,2018

3. Large eddy simulation of film cooling with bulk flow pulsation: comparative study of LES and RANS;Applied Sciences,2020

4. Numerical simulation of free jets;International Journal of Numerical Methods for Heat and Fluid Flow,2017

5. Comparison of LES, RANS and experiments in an aeronautical gas turbine combustion chamber;Proceedings of the Combustion Institute,2007

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