Coherent structures in turbulent boundary layers over an airfoil

Author:

Atzori Marco,Vinuesa Ricardo,Lozano-Durán Adrián,Schlatter Philipp

Abstract

Abstract This preliminary study is concerned with the identification of three-dimensional coherent structures, defined as intense Reynolds-stress events, in the turbulent boundary layer developing over the suction side of a NACA4412 airfoil at a Reynolds number based on the chord lenght and the incoming velocity of Rec = 200, 000. The scientific interest for such flows originates from the non-uniform adverse pressure gradient that affects the boundary-layer development. Firstly, we assess different methods to identify the turbulent-non-turbulent interface, in order to exclude the irrotational region from the analysis. Secondly, we evaluate the contribution of the considered coherent structures to the enhanced wall-normal velocity, characteristic of adverse pressure gradients. Our results show that it is necessary to limit the detection of coherent structures to the turbulent region of the domain, and that the structures reveal qualitative differences between the contributions of intense events to the wall-normal velocity in adverse-pressure-gradient and zero-pressure-gradient turbulent boundary layers.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference30 articles.

1. Experimental and numerical study of a turbulent boundary layer with pressure gradients;Spalart;J. Fluid Mech.,1993

2. Large-eddy simulation of flow around a NACA 4412 airfoil using unstructured grids;Jansen,1996

3. Direct numerical simulation of flow separation around a NACA 0012 airfoil;Shan;Comput. Fluids,2005

4. Direct numerical simulation of the flow around a wing section at moderate Reynolds number;Hosseini;Int. J. Heat Fluid Flow,2016

5. Turbulent boundary layers around wing sections up to Rec = 1,000, 000;Vinuesa;Int. J. Heat Fluid Flow,2018

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