Dynamics of turbulent kinetic energy advection in a turbulent boundary layer under unsteady pressure gradients

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Abstract

In the present paper we use large-eddy simulations to investigate a spatially developing turbulent boundary layer with a space- and time-dependent pressure gradient. By changing the freestream velocity periodically in time we generate a flow field that can either separate or tend towards re-laminarization, depending on the phase of the cycle. Several cases have been investigated for a range of reducednfrequencies k, spanning between a very rapid flutter-like motions to a slower quasi-steady flapping. Time-averaged andphase-averaged fields are analyzed, and comparison is made with steady cases with fixed pressure gradients. In the following, we briefly describe the methodology and show some preliminary results. We will conclude by outlining the results that will be presented in the final paper.

Publication
13th Workshop in Direct and Large-Eddy Simulation
Francesco Ambrogi, PhD
Francesco Ambrogi, PhD
Postdoctoral researcher in Mechanical Engineering

My research interests include boundary layer theory, particle-laden flows, computational fluid dynamics, direct numerical and large eddy simulations of turbulent flows.