The Role of Turbulence Transport in Mechanical Energy Budgets

Author:

Przytarski Pawel J.1,Lengani Davide2,Simoni Daniele2,Wheeler Andrew P. S.3

Affiliation:

1. University of Melbourne Department of Mechanical Engineering, , Melbourne, Victoria 3010 , Australia

2. DIME-University of Genova , via alla Opera Pia 15, Genova 16145 , Italy

3. University of Cambridge Whittle Laboratory, Department of Engineering, , Cambridge CB3 0DY , UK

Abstract

Abstract In this article, we study the role of turbulence transport on loss prediction using high fidelity scale-resolving simulations. For this purpose, we use eight high-fidelity simulation datasets and compute flux of entropy and stagnation pressure transport equation budgets for all the cases. We find that under certain unsteady inflow conditions, the stagnation pressure coefficient is not a reliable loss metric even at low Mach number conditions. This is due to the turbulence transport terms. The impact of these terms, typically assumed to be negligible, made stagnation pressure loss coefficient underpredict loss from 0% to over 40% when compared to entropy loss coefficient for cases considered here. This effect was most pronounced for the cases with highly unsteady inflow conditions and at low Reynolds numbers.

Publisher

ASME International

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