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Experimental study of aerated cavitation in a horizontal venturi nozzle

Article dans une revue avec comité de lecture
Auteur
TOMOV, Petar
100276 SNECMA Villaroche [Moissy-Cramayel]
VERTENOEUIL, P.
100276 SNECMA Villaroche [Moissy-Cramayel]
ccRAVELET, Florent
134975 Laboratoire de Dynamique des Fluides [DynFluid]
ccSARRAF, Christophe
13094 Institut de Recherche de l'Ecole Navale [IRENAV]
ccBAKIR, Farid
ccKHELLADI, Sofiane

URI
http://hdl.handle.net/10985/17781
DOI
10.1016/j.expthermflusci.2015.08.018
Date
2016
Journal
Experimental Thermal and Fluid Science

Résumé

The injection of bubbles into an already cavitating flow is a way of influencing the typical cavitating behaviour. The present article deals with experiments on aerated and non-aerated cavitation in a transparent horizontal venturi nozzle. The observations are done by means of a high-speed camera. In such a way the extremely rapid cavitation and cavitation–aeration flows are captured and further analysed. The post-processing techniques is based on the detection of the grey level on the series of images. As a result, three different regimes are identified: sheet cavitation, cloud cavitation and “supercavitation”. Those regimes are further aerated by injecting air bubbles. Standard deviations, time–space diagrams and frequency spectrum based on the vertical distribution of the grey level along a monitored line are plotted for all of the observed regimes. In the pure cavitation cases we obtain statistically symmetrical structures with characteristic lengths and frequencies. On the other hand, with aeration present, the symmetry is broken and characteristic lengths and frequencies are deeply modified, until a complete disappearance when “supercavitation” is reached.

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  • Dynamique des Fluides (DynFluid)

Documents liés

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  • Experimental study of aerated cavitation in a horizontal venturi nozzle 
    Article dans une revue avec comité de lecture
    TOMOV, Petar; KHELLADI, Sofiane; RAVELET, Florent; SARRAF, Christophe; BAKIR, Farid; VERTENOEUIL, P. (Elsevier, 2015)
    The injection of bubbles into an already cavitating flow is a way of influencing the typical cavitating behavior. The present article deals with experiments on aerated and non-aerated cavitation in a transparent horizontal ...
  • 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 ...
  • Development of Attached Cavitation at Very Low Reynolds Numbers from Partial to Super-Cavitation 
    Article dans une revue avec comité de lecture
    ccRAVELET, Florent; DANLOS, Amélie; ccBAKIR, Farid; CROCI, Kilian; ccKHELLADI, Sofiane; ccSARRAF, Christophe (MDPI AG, 2020)
    The present study focuses on the inception, the growth, and the potential unsteady dynamics of attached vapor cavities into laminar separation bubbles. A viscous silicon oil has been used in a Venturi geometry to explore ...
  • Experimental and Numerical Analysis of the Flow Inside a Configuration Including an Axial Pump and a Tubular Exchanger 
    Communication avec acte
    SOLIS, Moises; ccRAVELET, Florent; ccBAKIR, Farid; ccKHELLADI, Sofiane (ASME, 2010)
    In centrifugal and axial pumps, the flow is characterized by a turbulent and complex behavior and also by physical mechanisms such as cavitation and pressure fluctuations that are mainly due to the strong interactions ...
  • Experimental investigation of an actively controlled automotive cooling fan using steady air injection in the leakage gap 
    Article dans une revue avec comité de lecture
    AZZAM, Tarik; PARIDAENS, Richard; OUALLI, Hamid; ccRAVELET, Florent; ccBAKIR, Farid; ccKHELLADI, Sofiane (SAGE Publications, 2017)
    In an axial fan, a leakage flow driven by a pressure gradient between the pressure side and the suction side occurs in the gap between the shroud and the casing. This leakage flow is in the opposite direction to the main ...

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