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1.Lukas ENGELENorcid_16x16.png, Clément PERROT-MINOTorcid_16x16.png, Emmanuel MIGNOTorcid_16x16.png, Nicolas RIVIÈREorcid_16x16.png, Tom DE MULDERorcid_16x16.png (2021).
Lagrangian study of the particle transport past a lateral, open-channel cavity
Phys. Fluids 33, 013303 (16 pages). doi:10.1063/5.0030922 doi.ico clarivate_16x16.png
2. J. JOHN SOUNDAR JEROMEorcid_16x16.png, Sébastien THEVENIN, Mickaël BOURGOINorcid_16x16.png, Jean-Philippe MATASorcid_16x16.png (2021).
Inertial drag-out problem: sheets and films on a rotating disc
J. Fluid Mech. 908, A7. doi:10.1017/jfm.2020.879 doi.ico hal.ico clarivate_16x16.png
3.Wouter J. T. BOSorcid_16x16.png, Hatem TOUIL, Liang SHAOorcid_16x16.png, Jean-Pierre BERTOGLIO (2004).
On the behavior of the velocity-scalar cross correlation spectrum in the inertial range
Phys. Fluids 16, 3818–3823. doi:10.1063/1.1779229 doi.ico clarivate_16x16.png
4.Damien CABUTorcid_16x16.png, Marc MICHARDorcid_16x16.png, Serge SIMOËNSorcid_16x16.png, Violaine TODOROFF, Corentin HERMANGE, Yohan LE CHENADEC (2021).
PIV measurements using refraction at a solid–fluid interface
Meas. Sci. Technol. 32, 035205 (17 pages). doi:10.1088/1361-6501/abcdc2 doi.ico clarivate_16x16.png
5.Gabriele GRASSOorcid_16x16.png, Haiquan WU, Susanna ORESTANO, Marlène SANJOSÉ, Stéphane MOREAU, Michel ROGER (2021).
CFD-based prediction of wall-pressure spectra under a turbulent boundary layer with adverse pressure gradient
Aeronaut. J. . doi:10.1007/s13272-020-00484-5 doi.ico clarivate_16x16.png
6.S. AIELLO, A. ALBERT, S. ALVES GARRE, Z. ALY, Louis GOSTIAUXorcid_16x16.png, Hans VAN HAREN (2020).
Deep-sea deployment of the KM3NeT neutrino telescope detection units by self-unrolling
JINST 15, P11027. doi:10.1088/1748-0221/15/11/P11027 doi.ico clarivate_16x16.png
7.Muhammad Zubair SHEIKH (dir.: Alain PUMIR, Aurore NASO, Fabien S. GODEFERD) (2020).
Sedimentation and collision of anisotropic particles in turbulence
Thèse École normale supérieure de Lyon
8.Wouter J. T. BOSorcid_16x16.png, Hatem TOUIL, Jean-Pierre BERTOGLIO (2005).
Reynolds number dependency of the scalar flux spectrum in isotropic turbulence with a uniform scalar gradient
Phys. Fluids 17, 125108 (8 pages). doi:10.1063/1.2140848 doi.ico clarivate_16x16.png
9.Lars NEUHAUSorcid_16x16.png, Michael HÖLLINGorcid_16x16.png, Wouter J. T. BOSorcid_16x16.png, Joachim PEINKEorcid_16x16.png (2020).
Generation of atmospheric turbulence with unprecedentedly large Reynolds number in a wind tunnel
Phys. Rev. Lett. 125, 154503 (6 pages). doi:10.1103/PhysRevLett.125.154503 doi.ico hal.ico clarivate_16x16.png
10.Clément GOUILLER, Christophe YBERT, Cécile COTTIN-BIZONNE, Romain VOLK, Mickaël BOURGOINorcid_16x16.png, Florence RAYNALorcid_16x16.png (2020).
Interfacial Mixing by Marangoni Surfers
73rd Annual Meeting of the APS Division of Fluid Dynamics, Chicago (virtual), United States.

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