has been cited by the following article(s):
[1]
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Développement d'un solveur tout-couplé parallèle 3D pour la simulation des écoulements diphasiques incompressibles à forts rapports de viscosités et de masses …
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2022 |
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[2]
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Small Scale Modeling and Simulation of Incompressible Turbulent Multi-Phase Flow
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2022 |
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[3]
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Application of discrete mechanics model to jump conditions in two-phase flows
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2021 |
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[4]
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Planar and Spatial kinematic for vortex fluid flow behaviour by using perturbation parameter
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2021 |
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[5]
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On primitive formulation in fluid mechanics and fluid–structure interaction with constant piecewise properties in velocity–potentials of acceleration
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2020 |
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[6]
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Discrete Mechanics: Concepts and Applications
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2019 |
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[7]
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Modélisation de l'accélération capillaire en mécanique discrète
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2019 |
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[8]
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Unified discrete approach of acceleration conservation
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2019 |
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[9]
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Mécanique discrète
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2018 |
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[10]
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Extension of Discrete Mechanics towards Electromagnetism
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2018 |
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[11]
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Des conditions de compatibilité pour l'équation de Navier-Stokes
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Pré-publication, Document de travail,
2017 |
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[12]
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Décomposition complète de Hodge-Helmholtz en mécanique discrète
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Pré-publication, Document de travail,
2017 |
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[13]
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Modélisation des effets capillaires en mécanique des milieux discrets
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Pré-publication, Document de travail,
2016 |
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[14]
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Modélisation du changement de phase en mécanique des milieux discrets
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Pré-publication, Document de travail,
2016 |
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[15]
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A kinematic vector penalty–projection method for incompressible flow with variable density
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Comptes Rendus Mathematique,
2016 |
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[16]
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Quelles différences entre un fluide et un solide?
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Pré-publication, Document de travail,
2015 |
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[17]
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Stéphane Vincent Jean-Luc Estivalèzes
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[1]
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Application of discrete mechanics model to jump conditions in two-phase flows
Journal of Computational Physics,
2021
DOI:10.1016/j.jcp.2021.110151
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[2]
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Application of discrete mechanics model to jump conditions in two-phase flows
Journal of Computational Physics,
2021
DOI:10.1016/j.jcp.2021.110151
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[3]
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On primitive formulation in fluid mechanics and fluid–structure interaction with constant piecewise properties in velocity–potentials of acceleration
Acta Mechanica,
2020
DOI:10.1007/s00707-020-02630-w
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[4]
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Discrete Mechanics
2019
DOI:10.1002/9781119482826.refs
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[5]
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A kinematic vector penalty–projection method for incompressible flow with variable density
Comptes Rendus Mathematique,
2016
DOI:10.1016/j.crma.2016.06.007
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[6]
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A kinematic vector penalty–projection method for incompressible flow with variable density
Comptes Rendus. Mathématique,
2016
DOI:10.1016/j.crma.2016.06.007
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