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The impact of harmonic inflow variations on the size and dynamics of the separated flow over a bump

ORAL

Abstract

Laminar flow separation has detrimental effects on the aerodynamics and performance of low pressure turbines (LPT). Flow separation is caused by the presence of adverse pressure gradient on the upper side of the blade past the suction peak, and is followed by laminar-to-turbulent transition and the subsequent turbulent mean reattachment due to the enhanced mixing. These phenomena characterise the size and dynamics of the separated flow, which are primarily dominated by the laminar-turbulent transition process. This study examines the influence of periodic variations of the inflow on the separated flow over a bump geometry at low Reynolds numbers. The geometry and flow conditions represent the upper surface of small LPT during high-altitude flight. Direct numerical simulations are performed, in which a harmonic variation of the inlet total pressure is imposed as an approximation of the passage of the upstream blade's wake. Three frequencies and two amplitudes of the total pressure are simulated. The dynamics of the separated shear layer and the transition process are studied by separating the flow components correlated and un-correlated to the inflow frequency. Even moderate frequencies are found to have a strong effect in reducing the averaged size of the separated flow region.

Publication: 1. Saavedra J and Paniagua G. Transient performance of separated flows: characterization and active flow control. J. Eng. Gas Turbines Power., Vol. 141(1), GTP-18-1311. 2019.<br>2. Saavedra J and Paniagua G. Experimental analysis of Reynolds effect on flow detachment and sudden flow release on a wall mounted hump. Exp. Thermal Fluid Science., Vol. 126,<br>110398. 2021.<br>3. Marbona H, et al. Transition of Separated Flows over a Bump under Unsteady Inflow Conditions. Proceedings of ECCOMAS 2022. 2022.

Presenters

  • himpu.marbona Marbona

    Universidad Politecnica de Madrid

Authors

  • himpu.marbona Marbona

    Universidad Politecnica de Madrid

  • Alejandro Martinez-Cava

    Universidad Politecnica de Madrid

  • Daniel Rodríguez

    Universidad Politecnica de Madrid, Universidad Politécnica de Madrid

  • Eusebio Valero

    Universidad Politecnica de Madrid