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dc.contributor.authorKHLIFA, Ilyass
dc.contributor.authorFUZIER, Sylvie
dc.contributor.authorHOCEVAR, Marko
dc.contributor.author
 hal.structure.identifier
VABRE, Alexandre
40217 Laboratoire d'Intégration des Systèmes et des Technologies [LIST (CEA)]
dc.contributor.author
 hal.structure.identifier
FEZZAA, Kamel
49346 Argonne National Laboratory [Lemont] [ANL]
dc.contributor.author
 hal.structure.identifier
COUTIER-DELGOSHA, Olivier
1252 Laboratoire de Mécanique de Lille - FRE 3723 [LML]
dc.date.accessioned2013
dc.date.available2013
dc.date.issued2013
dc.date.submitted2013
dc.identifier.urihttp://hdl.handle.net/10985/7319
dc.description.abstractA promising method to measure velocity fields in complex two-phase flows such us cavitating flows is presented. Dynamics of the liquid phase and the bubbles are both investigated. The measurements are based on ultra fast X-ray imaging performed at the APS (Advanced Photon Source) of the Argonne National Laboratory. The experimental device consists of a millimetric Venturi test section associated with a transportable hydraulic loop. Various configurations of velocity, pressure, and temperature have been investigated. Radio-opaque particles are used as tracers for the liquid phase, in association with a multipixel sensor to record the successive positions of the particles. The use of X-rays instead of light solves the problems related to light reflection and dispersion on phase boundaries, since X-rays penetrate a gas/liquid flow in straight lines. Images contain simultaneously the information related to the particles (for PIV analysis in the liquid), to the vapour bubbles (for PIV in the gas). The slip velocity between vapour and liquid is calculated.
dc.language.isoen_US
dc.rightsPost-print
dc.subjectcavitation
dc.subjecttwo-phase flow
dc.subjectX-ray imaging
dc.subjectPIV measurements
dc.titleVELOCITY MEASUREMENTS IN CAVITATING FLOWS USING FAST X-RAY IMAGING
dc.typdocCommunication sans acte
dc.localisationCentre de Lille
dc.subject.halSciences de l'ingénieur: Mécanique: Mécanique des fluides
dc.subject.halSciences de l'ingénieur: Mécanique: Vibrations
ensam.conference.titleCongrés Français de Mécanique (21 ; 2013 ; Bordeaux)
ensam.conference.date2013-08
ensam.countryFrance
hal.identifierhal-00864232
hal.version1
hal.statusaccept


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