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1.Wouter J. T. BOSorcid_16x16.png, Faouzi LAADHARIorcid_16x16.png, Wesley AGOUA (2020).
Linearly forced isotropic turbulence at low Reynolds numbers.
Phys. Rev. E 102, 033105 (9 pages). doi:10.1103/PhysRevE.102.033105 doi.ico hal.ico openalex-16x16.png
2.Faouzi LAADHARIorcid_16x16.png (2019).
Refinement of the logarithmic law of the wall
Phys. Rev. Fluids 4, 054605 (15 pages). doi:10.1103/PhysRevFluids.4.054605 doi.ico hal.ico openalex-16x16.png
3.Faouzi LAADHARIorcid_16x16.png (2011).
An apparent symmetry property of the mean velocity gradient in turbulent Poiseuille flows and its implications
Phys. Fluids 23, 101705 (4 pages). doi:10.1063/1.3657819 doi.ico hal.ico openalex-16x16.png
4.Faouzi LAADHARIorcid_16x16.png (2007).
Reynolds number effect on the dissipation function in wall-bounded flows
Phys. Fluids 19, 038101 (4 pages). doi:10.1063/1.2711480 doi.ico hal.ico openalex-16x16.png
5.Faouzi LAADHARIorcid_16x16.png (2002).
On the evolution of maximum turbulent kinetic energy production in a channel flow
Phys. Fluids 14, L65–L68. doi:10.1063/1.1511731 doi.ico hal.ico openalex-16x16.png
6.Faouzi LAADHARIorcid_16x16.png, Robert MOREL, Emilio ALCARAZ (1994).
Combined flow visualisation velocity an wall pressure measurements in transitional boundary layer.
Eur. J. Mech. B-Fluids 13, 473–489.
7.Faouzi LAADHARIorcid_16x16.png, L. SKANDAJI, Robert MOREL (1994).
Turbulence reduction in a boundary layer by a local spanwise oscillating surface
Phys. Fluids 6, 3218–3220. doi:10.1063/1.868052 doi.ico hal.ico openalex-16x16.png
8.Ugo PIOMELLI, Lawrence ONG, James WALLACE, Faouzi LAADHARIorcid_16x16.png (1993).
Reynolds stress and vorticity in turbulent wall flows
Applied Scientific Research 51, 365–370. doi:10.1007/BF01082562 doi.ico openalex-16x16.png
9.Gilles ROBERT, Faouzi LAADHARIorcid_16x16.png, Edmond BENARROUS (1992).
La visualisation au service de la modélisation des sources de bruit d'écoulement.
Revue Scientifique et Technique de la Défense 2 : Acoustique et Vibration.
conférences invitées
1.Faouzi LAADHARIorcid_16x16.png (2018).
Flow-dependent logarithmic law of the wall
Workshop - SIG 35 “Multi-point turbulent structures and modelling”, Lyon, France.
2.Faouzi LAADHARIorcid_16x16.png (2015).
Transition to turbulence in twodimensional Poiseuille flow with large aspect ratio
ERCOFTAC 11th Workshop on Synthetic Turbulence Models, Lyon, France.
communications avec actes
1.Pierre CARLOTTI, Faouzi LAADHARIorcid_16x16.png (2009).
Top-down and bottom-up eddy motion in wall bounded turbulence
12th EUROMECH European Turbulence Conference, Marburg, Germany. doi:10.1007/978-3-642-03085-7_93 doi.ico
In: B. ECKHARDT (Ed.), Advances in Turbulence XII, Springer, Dordrecht, The Netherlands, 389–392. doi:10.1007/978-3-642-03085-7_93 doi.ico
2.Faouzi LAADHARIorcid_16x16.png (2005).
Simulations numériques directes de l'écoulement turbulent en canal plan à des nombres de Reynolds modérément élevés
17ème Congrès français de mécanique, Troyes, France.
In: Actes du 17ème Congrès français de mécanique, , .
3.Stéphane AMALFI, Faouzi LAADHARIorcid_16x16.png, Julian F. SCOTTorcid_16x16.png (2004).
An experimental study of bypass transition in plane Couette flow
Tenth European Turbulence Conference, Trondheim, Norway.
In: H. I. ANDERSSON (Ed.), P.-Å. KROGSTAD (Ed.), Advances in Turbulence X, International Center for Numerical Methods in Engineering (CIMNE), Barcelona, Spain, 459–462.
4.Xiao Hang ZHANG, Zhao Shun ZHANG, Michel AYRAULT, Serge SIMOËNSorcid_16x16.png, Faouzi LAADHARIorcid_16x16.png (2003).
simoëns s simoëns s Experimental study on passive scalar diffusion in a turbulent shearless mixing-layer by Mie scattering diffusion and PIV
, , . doi:10.1117/12.509503 doi.ico
In: Proc. SPIE 5058, Optical Technology and Image Processing for Fluids and Solids Diagnostics 2002, 96 (April 28, 2003), SPIE Digital Library, United States,, 96–103. doi:10.1117/12.509503 doi.ico
communications sans actes
1.Wouter J. T. BOSorcid_16x16.png, Faouzi LAADHARIorcid_16x16.png, Wesley AGOUA (2021).
From isotropic turbulence to transition in plane channel flow
25th international congress of theoretical and applied mechanics (ICTAM 2020+1), Milan (virtual), Italy.
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