most citedLinear and nonlinear receptivity mechanisms in boundary layers subject to free-stream turbulence

5 citations · 5 across the 5 of their papers we have counts for

collaborators

5 papers

physics.flu-dyn2024

Identification of structures driving trailing-edge noise. Part II -- Numerical investigation

Zhenyang Yuan, Simon Demange, Kilian Oberleithner +2

The aim of the present work is to investigate the mechanisms of broadband trailing-edge noise generation to improve prediction tools and control strategies. We focus on a NACA 0012…

physics.flu-dyn2024

Identification of structures driving trailing-edge noise. Part I -- Experimental investigation

Simon Demange, Zhenyang Yuan, Simon Jekosch +4

Trailing-edge (TE) noise is the main contributor to the acoustic signature of flows over airfoils. It originates from the interaction of turbulent structures in the airfoil boundar…

physics.flu-dyn2024

Direct numerical simulation of transition under free-stream turbulence and the influence of large integral length scales

Kristina Đurović, Ardeshir Hanifi, Philipp Schlatter +2

Under action of free-stream turbulence (FST), elongated streamwise streaky structures are generated inside the boundary layer, and their amplitude and wavelength are crucial for th…

physics.flu-dyn20245 cited

Linear and nonlinear receptivity mechanisms in boundary layers subject to free-stream turbulence

Diego C. P. Blanco, Ardeshir Hanifi, Dan S. Henningson +1

Large-eddy simulations of a flat-plate boundary layer, without a leading edge, subject to multiple levels of incoming free stream turbulence are considered in the present work. Wit…

physics.flu-dyn2023

Numerical investigation of the boundary layer stability on a section of a rotating wind turbine blade

Thales Coelho Leite Fava, Dan Henningson, Ardeshir Hanifi

Laminar-turbulent transition on a rotating wind turbine blade at a chord Reynolds number of and varying angles of attack () is studied with direct numerical si…