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Cavitation regime detection through Proper Orthogonal Decomposition: dynamics analysis of the sheet cavity on a grooved convergent-divergent nozzle

Article dans une revue avec comité de lecture
Auteur
DANLOS, Amélie
213739 Laboratoire Génie des Procédés pour l'Environnement, l'Energie et la Santé [LGP2ES]
ccRAVELET, Florent
134975 Laboratoire de Dynamique des Fluides [DynFluid]
ccCOUTIER-DELGOSHA, Olivier
1252 Laboratoire de Mécanique de Lille - FRE 3723 [LML]
ccBAKIR, Farid

URI
http://hdl.handle.net/10985/8543
DOI
10.1016/j.ijheatfluidflow.2014.02.001
Date
2014
Journal
International Journal of Heat and Fluid Flow

Résumé

The unsteady character of the sheet cavity dynamics on the suction side of hydrofoils, on convergent–divergent nozzles or on blades in turbines and propellers is responsible for many issues like erosion, noise and vibrations. This two-phase flow dynamics is investigated using a robust method based on Proper Orthogonal Decomposition (POD). This method is applied to sequences of sheet cavity images, in order to identify the cavitation regimes (sheet cavity or cloud cavitation regimes). Once this method is validated on a reference case, POD calculation is used to evaluate the efficiency of a passive control method. Different longitudinal grooved surfaces are machined on the diverging wall of a Venturi. The grooves geometry allows to change the cavitation regime for a fixed cavitation number, and even to avoid the cloud cavitation shedding, which may damage structures.

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  • Dynamique des Fluides (DynFluid)

Documents liés

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  • Study of the cavitating instability on a grooved Venturi profile 
    Article dans une revue avec comité de lecture
    DANLOS, Amélie; MÉHAL, Jean-Elie; ccRAVELET, Florent; ccCOUTIER-DELGOSHA, Olivier; ccBAKIR, Farid (American Society of Mechanical Engineers, 2014)
    Instabilities of a partial cavity developed on a hydrofoil, a converging-diverging step, or in an interblade channel have already been investigated in many previous works. The aim of this study is to evaluate a passive ...
  • Experimental study of the instationary flow between two ducted Counter-rotating rotors 
    Article dans une revue avec comité de lecture
    NOURI, Hussain; DANLOS, Amélie; ccRAVELET, Florent; ccSARRAF, Christophe; ccBAKIR, Farid (American Society of Mechanical Engineers, 2013)
    The purpose of this work is to study experimentally the aerodynamic characteristics of a subsonic counter-rotating axial-flow fans system operating in a ducted configuration. The fans of diameter D = 375 mm were designed ...
  • POD study of aerated cavitation in a venturi nozzle 
    Communication avec acte
    TOMOV, Petar; DANLOS, Amélie; ccRAVELET, Florent; ccSARRAF, Christophe; ccBAKIR, Farid; ccKHELLADI, Sofiane (IOP sciences conference series, 2015)
    The fact of injecting bubbles into a cavitating flow influences typical cavitating behavior. Cavitation and aerated cavitation experiments has been carried out on a symmetrical venturi nozzle with convergent/divergent ...
  • Etude numérique des gains de performances et de capacité d'aspiration apportés par un étage axial contra-rotatif par rapport à une pompe mono-rotor. 
    Communication avec acte
    DANLOS, Amélie; SOLIS, Moises; ccRAVELET, Florent; ccBAKIR, Farid (2013)
    This study deals with the development of an efficient method of design for subsonic conter-rotating axial flow turbomachineries. From specifications of a reference axial pump with only one rotor, two configurations of ...
  • Experimental study of a novel centrifugal compressor with two successive and independent rotors 
    Article dans une revue avec comité de lecture
    NGUYEN, Van-Thang; ABED, Cheikh Brahim; DANLOS, Amelie; ccRAVELET, Florent; PARIDAENS, Richard; ccDELIGANT, Michael; ccKHELLADI, Sofiane; ccBAKIR, Farid (American Society of Mechanical Engineers, 2021)
    The present study deals with a low pressure-ratio centrifugal compressor consisting of two counter-rotating rotors called a Counter-Rotating Centrifugal Compressor (CRCC). The design method based on the loss model was ...

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