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Invariant solutions in a channel flow using a minimal restricted nonlinear model

Article dans une revue avec comité de lecture
Auteur
ALIZARD, Frédéric
134975 Laboratoire de Dynamique des Fluides [DynFluid]

URI
http://hdl.handle.net/10985/18606
DOI
10.1016/j.crme.2016.11.005
Date
2017
Journal
Comptes Rendus Mécanique

Résumé

Simulations using a Restricted Nonlinear (RNL) system, where mean flow distortion resulting from Reynolds stress feedback regenerates rolls, is applied in a channel flow under subcritical conditions. This quasi-linear restriction of the dynamics is used to study invariant solutions located in the bulk of the flow found recently by Rawat et al. (2016) [14]. It is shown that the RNL system truncated to a single streamwise mode for the perturbation supports invariant solutions that are found to bifurcate from a relative periodic orbit into a travelling wave solution when the spanwise size is increasing. In particular, the travelling wave solution exhibits a spanwise localized structure that remains unchanged for large values of the spanwise extent as the invariant solution lying on the lower branch found by Rawat et al. (2016) [14]. In addition, travelling wave solutions provided by this minimal RNL system are self-similar with respect to the Reynolds number based on the centreline velocity, and the half-channel height varying from 2000 to 5000.

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  • Dynamique des Fluides (DynFluid)

Documents liés

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    Article dans une revue avec comité de lecture
    ALIZARD, Frédéric; ccROBINET, Jean-Christophe; ccGLOERFELT, Xavier (Elsevier, 2012)
    This work is dedicated to the presentation of a matrix-free method for global linear stability analysis in geometries composed of multi-connected rectangular subdomains. An Arnoldi technique using snapshots in subdomains ...
  • Global and Koopman modes analysis of sound generation in mixing layers 
    Article dans une revue avec comité de lecture
    SONG, Ge; ALIZARD, Frédéric; ccROBINET, Jean-Christophe; ccGLOERFELT, Xavier (American Institute of Physics, 2013)
    It is now well established that linear and nonlinear instability waves play a significant role in the noise generation process for a wide variety of shear flows such as jets or mixing layers. In that context, the problem ...
  • Sensitivity and optimal forcing response in separated boundary layer flows 
    Article dans une revue avec comité de lecture
    ALIZARD, Frédéric; CHERUBINI, Stefania; ccROBINET, Jean-Christophe (American Institute of Physics, 2009)
    The optimal asymptotic response to time harmonic forcing of a convectively unstable two-dimensional separated boundary layer on a flat plate is numerically revisited from a global point of view. By expanding the flow ...
  • The onset of three-dimensional centrifugal global modes and their nonlinear development in a recirculating flow over a flat surface 
    Article dans une revue avec comité de lecture
    CHERUBINI, Stefania; DE PALMA, Pietro; ALIZARD, Frédéric; ccROBINET, Jean-Christophe (American Institute of Physics, 2010)
    The three-dimensional stability dynamics of a separation bubble over a flat plate has been studied in both linear and nonlinear conditions. Using a global eigenvalue analysis, two centrifugal global modes are identified: ...
  • Optimal transient growth in compressible turbulent boundary layers 
    Article dans une revue avec comité de lecture
    ALIZARD, Frédéric; PIROZZOLI, Sergio; BERNARDINI, Matteo; GRASSO, Francesco (Cambridge University Press (CUP), 2015)
    The structure of zero-pressure-gradient compressible turbulent boundary layers is analysed using the tools of optimal transient growth theory. The approach relies on the extension to compressible flows of the theoretical ...

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