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Guillaume Oger
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2020 – today
- 2023
- [j19]Alban Vergnaud, Guillaume Oger, David Le Touzé:
Investigations on a high order SPH scheme using WENO reconstruction. J. Comput. Phys. 477: 111889 (2023) - 2022
- [j18]Zhe Li, Guillaume Oger, David Le Touzé:
A partitioned framework for coupling LBM and FEM through an implicit IBM allowing non-conforming time-steps: Application to fluid-structure interaction in biomechanics. J. Comput. Phys. 449: 110786 (2022) - [j17]Julien Michel, Alban Vergnaud, Guillaume Oger, Corentin Hermange, David Le Touzé:
On Particle Shifting Techniques (PSTs): Analysis of existing laws and proposition of a convergent and multi-invariant law. J. Comput. Phys. 459: 110999 (2022) - [j16]Arbia Ben Khodja, Serge Simoëns, Marc Michard, David Le Touzé, Corentin Hermange, Clément Poncet, Guillaume Oger:
R(refracted)-PIV measurements of water film flow: application to flow under a rolling tire. J. Vis. 25(6): 1151-1167 (2022) - 2021
- [j15]Peng-Nan Sun, David Le Touzé, Guillaume Oger, A-Man Zhang:
An accurate SPH Volume Adaptive Scheme for modeling strongly-compressible multiphase flows. Part 2: Extension of the scheme to cylindrical coordinates and simulations of 3D axisymmetric problems with experimental validations. J. Comput. Phys. 426: 109936 (2021) - [j14]Peng-Nan Sun, David Le Touzé, Guillaume Oger, A-Man Zhang:
An accurate SPH Volume Adaptive Scheme for modeling strongly-compressible multiphase flows. Part 1: Numerical scheme and validations with basic 1D and 2D benchmarks. J. Comput. Phys. 426: 109937 (2021) - 2020
- [j13]Zhe Li, Guillaume Oger, David Le Touzé:
A finite volume WENO scheme for immiscible inviscid two-phase flows. J. Comput. Phys. 418: 109601 (2020)
2010 – 2019
- 2019
- [j12]Laurent Chiron, Matthieu De Leffe, Guillaume Oger, David Le Touzé:
Fast and accurate SPH modelling of 3D complex wall boundaries in viscous and non viscous flows. Comput. Phys. Commun. 234: 93-111 (2019) - [j11]Corentin Hermange, Guillaume Oger, David Le Touzé:
Energy considerations in the SPH method with deformable boundaries and application to FSI problems. J. Comput. Phys. X 1: 100008 (2019) - [j10]Louis Vittoz, Guillaume Oger, Matthieu De Leffe, David Le Touzé:
Comparisons of weakly-compressible and truly incompressible approaches for viscous flow into a high-order Cartesian-grid finite volume framework. J. Comput. Phys. X 1: 100015 (2019) - 2018
- [j9]Laurent Chiron, Guillaume Oger, Matthieu De Leffe, David Le Touzé:
Analysis and improvements of Adaptive Particle Refinement (APR) through CPU time, accuracy and robustness considerations. J. Comput. Phys. 354: 552-575 (2018) - 2017
- [j8]G. Fourey, Corentin Hermange, David Le Touzé, Guillaume Oger:
An efficient FSI coupling strategy between Smoothed Particle Hydrodynamics and Finite Element methods. Comput. Phys. Commun. 217: 66-81 (2017) - [j7]P. Bigay, Guillaume Oger, Pierre-Michel Guilcher, David Le Touzé:
A weakly-compressible Cartesian grid approach for hydrodynamic flows. Comput. Phys. Commun. 220: 31-43 (2017) - 2016
- [j6]Guillaume Oger, David Le Touzé, David Guibert, Matthieu De Leffe, John Biddiscombe, Jérome Soumagne, Jean-Guillaume Piccinali:
On distributed memory MPI-based parallelization of SPH codes in massive HPC context. Comput. Phys. Commun. 200: 1-14 (2016) - [j5]Guillaume Oger, Salvatore Marrone, David Le Touzé, Matthieu De Leffe:
SPH accuracy improvement through the combination of a quasi-Lagrangian shifting transport velocity and consistent ALE formalisms. J. Comput. Phys. 313: 76-98 (2016) - 2014
- [j4]Daniel A. Barcarolo, David Le Touzé, Guillaume Oger, Florian De Vuyst:
Adaptive particle refinement and derefinement applied to the smoothed particle hydrodynamics method. J. Comput. Phys. 273: 640-657 (2014) - 2012
- [j3]John Biddiscombe, Jérome Soumagne, Guillaume Oger, David Guibert, Jean-Guillaume Piccinali:
Parallel Computational Steering for HPC Applications Using HDF5 Files in Distributed Shared Memory. IEEE Trans. Vis. Comput. Graph. 18(6): 852-864 (2012) - 2011
- [c2]John Biddiscombe, Jérome Soumagne, Guillaume Oger, David Guibert, Jean-Guillaume Piccinali:
Parallel Computational Steering and Analysis for HPC Applications using a ParaView Interface and the HDF5 DSM Virtual File Driver. EGPGV@Eurographics 2011: 91-100 - [c1]David Le Touzé, John Biddiscombe, Andrea Colagrossi, Erwan Jacquin, Francis Leboeuf, Jean-Christophe Marongiu, Nathan J. Quinlan, Andrea Amicarelli, Matteo Antuono, Daniel A. Barcarolo, Mihai Basa, Joelle Caro, Matthieu De Leffe, Nicolas Grenier, Pierre-Michel Guilcher, Matthieu Kerhuel, Fang Le, Libor Lobovský, Salvatore Marrone, Adam Marsh, Guillaume Oger, Etienne Parkinson, Jérome Soumagne:
Next-generation Multi-mechanics Simulation Engine in a Highly Interactive Environment. FET 2011: 292-293
2000 – 2009
- 2007
- [j2]Guillaume Oger, Mathieu Doring, Bertrand Alessandrini, Pierre Ferrant:
An improved SPH method: Towards higher order convergence. J. Comput. Phys. 225(2): 1472-1492 (2007) - 2006
- [j1]Guillaume Oger, Mathieu Doring, Bertrand Alessandrini, Pierre Ferrant:
Two-dimensional SPH simulations of wedge water entries. J. Comput. Phys. 213(2): 803-822 (2006)
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