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Numerical investigation of sheet cavitation over a 3-D venturi configuration

Communication avec acte
Auteur
GOUIN, Camille
134975 Laboratoire de Dynamique des Fluides [DynFluid]
ccJUNQUEIRA JUNIOR, Carlos
134975 Laboratoire de Dynamique des Fluides [DynFluid]
ccGONCALVES, Eric
118112 Institut Pprime [UPR 3346] [PPrime [Poitiers]]
ccROBINET, Jean-Christophe
134975 Laboratoire de Dynamique des Fluides [DynFluid]

URI
http://hdl.handle.net/10985/23682
Date
2021-05

Résumé

Sheet cavitation appears in many hydraulic applications and can lead to technical issues. Numerical simulation is a pertinent way to study the phenomenon. A numerical tool based on 1-fluid compressible RANS equations with a cavitation model is used to compute a flow within a 3-D venturi geometry with a 4° divergent angle. In the present work, a detailed study of this cavitating flow, which presents a quasi-stable vapour pocket, is carried out using tools such as Power Spectral Densities or Spectral Proper Orthogonal Decompositions. An oblique oscillation of the cavity is then identified and discussed.

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  • Dynamique des Fluides (DynFluid)

Documents liés

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  • Numerical investigation of three-dimensional partial cavitation in a Venturi geometry 
    Article dans une revue avec comité de lecture
    GOUIN, Camille; JUNQUEIRA-JUNIOR, Carlos; GONCALVES DA SILVA, Eric; ccROBINET, Jean-Christophe (AIP Publishing, 2021)
    Sheet cavitation appears in many hydraulic applications and can lead to technical issues. Some fundamental outcomes, such as, the complex topology of 3-dimensional cavitation pockets and their associated dynamics need to ...
  • Three-dimensional instability of a ow past a sphere: Mach evolution of the regular and Hopf bifurcations 
    Article dans une revue avec comité de lecture
    SANSICA, Andrea; ALIZARD, Frédéric; GONCALVES, Eric; ccROBINET, Jean-Christophe (Cambridge University Press (CUP), 2018)
    A fully three-dimensional linear stability analysis is carried out to investigate the unstable bifurcations of a compressible viscous fluid past a sphere. A time-stepper technique is used to compute both equilibrium states ...
  • 3D global optimal forcing and response of the supersonic boundary layer 
    Article dans une revue avec comité de lecture
    CHASSAING, Jean-Camille; SAGAUT, P.; BUGEAT, Benjamin; ccROBINET, Jean-Christophe (Elsevier, 2019)
    3D optimal forcing and response of a 2D supersonic boundary layer are obtained by computing the largest singular value and the associated singular vectors of the global resolvent matrix. This approach allows to take into ...
  • Low-frequency resolvent analysis of the laminar oblique shock wave/boundary layer interaction 
    Article dans une revue avec comité de lecture
    BUGEAT, Benjamin; CHASSAING, Jean-Camille; SAGAUT, Pierre; ccROBINET, Jean-Christophe (Cambridge University Press (CUP), 2022-04)
    Resolvent analysis is used to study the low-frequency behaviour of the laminar oblique shock wave/boundary layer interaction (SWBLI). It is shown that the computed optimal gain, which can be seen as a transfer function of ...
  • A comparison of low and high-order methods for the simulation of supersonic jet flows 
    Conférence invitée
    F. ABREU, Diego; T. V. DAURICIO, Eron; F. AZEVEDO, João Luiz; JUNQUEIRA-JUNIOR, Carlos (ABCM, 2021-11)
    The present work compares results for different numerical methods in search of alternatives to improve the quality of large-eddy simulations for the problem of a supersonic turbulent jet flows. Previous work has analyzed ...

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