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1.Idriss BECHOUA, Yann PELTIER, Nicolas RIVIÈREorcid_16x16.png, Emmanuel MIGNOTorcid_16x16.png (2023).
Stage discharge relations of a trapezoidal broad-crested weir pierced by a circular culvert
Flow Meas. Instrum. 95, 102488 (10 pages). doi:10.1016/j.flowmeasinst.2023.102488 doi.ico clarivate_16x16.png
2.Tom LACASSAGNEorcid_16x16.png, Mahmoud EL HAJEMorcid_16x16.png, Jean-Yves CHAMPAGNE, Serge SIMOËNSorcid_16x16.png (2023).
Systematic error and correction of intensity-based I-PLIF for local pH and concentration measurements in unsteady boundary layers
Exp. Fluids 64, 184 (8 pages). doi:10.1007/s00348-023-03726-4 doi.ico clarivate_16x16.png
3.Benjamin MORGAN, Amal Roy MURALI, George PRESTON, Yidnekachew Ayele SIMA, Luis Alberto Marcelo CHAMORRO, Christos BOURANTAS, Ryo TORII, Anthony MATHUR, Andreas BAUMBACH, Marc C. JACOBorcid_16x16.png, Sergey KARABASOV, Rob KRAMS (2023).
A physics-based machine learning technique rapidly reconstructs the wall-shear stress and pressure fields in coronary arteries
Front. Cardiovasc. Med. 10, 1221541 (12 pages). doi:10.3389/fcvm.2023.1221541 doi.ico clarivate_16x16.png
4.Rob KRAMS, George PRESTON, Luis Alberto Marcelo CHAMORRO, Benjamin MORGAN, Yidnekachew Ayele SIMA, Amal Roy MURALI, Christos BOURANTAS, Ryo TORII, Anthony MATHUR, Andreas BAUMBACH, Sergey KARABASOV (2023).
A novel physics-based articificial intelligence technique rapidly reconstructs the 3D velocity, shear stress and pressure fields in coronary arteries
British Cardiovascular Society Annual Conference, ‘Future-proofing Cardiology for the next 10 years’, Manchester, United Kingdom. doi:10.1136/heartjnl-2023-BCS.226 doi.ico
5.Jules COLASorcid_16x16.png, Ariane EMMANUELLIorcid_16x16.png, Didier DRAGNAorcid_16x16.png, Philippe BLANC-BENONorcid_16x16.png, Benjamin COTTÉorcid_16x16.png, Richard J. A. M. STEVENSorcid_16x16.png (2023).
Wind turbine sound propagation: Comparison of a linearized Euler equations model with parabolic equation methods
J. Acoust. Soc. Am. 154, 1413–1426. doi:10.1121/10.0020834 doi.ico hal.ico clarivate_16x16.png
6.Jaouad BENHAMOUorcid_16x16.png, Bjarne VINCENT, Sophie MIRALLES, Mohammed JAMI, Daniel HENRYorcid_16x16.png, Ahmed MEZRHAB, Valéry BOTTONorcid_16x16.png (2023).
Application of the lattice Boltzmann method to the study of ultrasound propagation and acoustic streaming in three-dimensional cavities: advantages and limitations.
Theor. Comput. Fluid Dyn. 37, 725–753. doi:10.1007/s00162-023-00676-9 doi.ico hal.ico clarivate_16x16.png
7.Clément DELHEZorcid_16x16.png, Nicolas RIVIÈREorcid_16x16.png, Sébastien ERPICUMorcid_16x16.png, Michel PIROTTONorcid_16x16.png, Pierre ARCHAMBEAUorcid_16x16.png, M. ARNST, Joost BIERENSorcid_16x16.png, Benjamin DEWALSorcid_16x16.png (2023).
Drift of a drowning victim in rivers: conceptualization and global sensitivity analysis under idealized flow conditions
Water Resour. Res. 59, e2022WR034358 (19 pages). doi:10.1029/2022WR034358 doi.ico clarivate_16x16.png
8.Sergey KARABASOV, Christophe BOGEYorcid_16x16.png (2011).
Computation of the noise of initially laminar jets using a statistical approach for the acoustic analogy: application and discussion
17th AIAA/CEAS Aeroacoustics Conference, Portland, Oregon, United States.
In: Proceedings of the 17th AIAA/CEAS Aeroacoustics Conference, AIAA, Reston, Virginia, USA, AIAA 2011-2929.
9.Raffaello FOLDESorcid_16x16.png, Alfredo DEL CORPO, Gianluca NAPOLETANOorcid_16x16.png, Ermanno PIETROPAOLOorcid_16x16.png, Massimo VELLANTE (2023).
Automatic detection of field line resonance frequencies in the Earth’s plasmasphere
Rend. Lincei.-Sci. Fis. Nat. . doi:10.1007/s12210-023-01196-8 doi.ico clarivate_16x16.png
10.Wenyang PAN, Pascale KULISAorcid_16x16.png, Benyebka BOU-SAÏD, Mahmoud EL HAJEMorcid_16x16.png, Serge SIMOËNSorcid_16x16.png, Monica SIGOVAN (2023).
A proposal of risk indicators for pathological development from hemodynamic simulation: application to aortic dissection
J. Chemical Physics 8, 29–38. doi:10.29328/journal.jccm.1001150 doi.ico hal.ico clarivate_16x16.png
 

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