Status | 已发表Published |
Title | Experimental investigation of internal two-phase flow structures and dynamics of quasi-stable sheet cavitation by fast synchrotron x-ray imaging |
Creator | |
Date Issued | 2020-11-01 |
Source Publication | Physics of Fluids
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ISSN | 1070-6631 |
Volume | 32Issue:11 |
Abstract | The quasi-stable sheet cavitation produced in a small Venturi channel is investigated using a fast synchrotron x-ray imaging technique aided with conventional high speed photography. The use of x rays instead of visible light solves cavitation opacity related issues, and x-ray phase contrast-based edge enhancement enables high-definition visualization of the internal two-phase morphology. The simultaneous acquisition of time-resolved velocity and void fraction fields through post-processing of the recorded x-ray images reveals, for the first time, the complex diphasic flow structures inside the sheet cavity, which is essentially divided into six characteristic parts. Distinct from the current mainstream view, the globally steady sheet cavitation is found to be characterized by a weak but constantly existing re-entrant flow that can penetrate the entire cavity. The turbulent velocity fluctuations inside the sheet cavity are also investigated. The turbulence level in the reverse flow region is observed to be as low as in the outer main flow, demonstrating the relatively steady status of the re-entrant flow. Unlike the streamwise and cross-stream fluctuations, the shear stress appears to be weakly correlated with the velocity gradient. The collapse of the vapor phase and the vaporization at the upstream cavity interface are found to be the primary causes of shear stress intensification. |
DOI | 10.1063/5.0029963 |
URL | View source |
Indexed By | SCIE |
Language | 英语English |
WOS Research Area | Mechanics ; Physics |
WOS Subject | Mechanics ; Physics, Fluids & Plasmas |
WOS ID | WOS:000593968100002 |
Scopus ID | 2-s2.0-85096296815 |
Citation statistics | |
Document Type | Journal article |
Identifier | http://repository.uic.edu.cn/handle/39GCC9TT/12312 |
Collection | Research outside affiliated institution |
Corresponding Author | Coutier-Delgosha, Olivier |
Affiliation | 1.Univ. Lille,CNRS,ONERA,Arts et Métiers ParisTech,Centrale Lille,FRE 2017,LMFL - Laboratoire de Mécanique des Fluides de Lille - Kampé de Feriet,Lille,F-59000,France 2.Research Center of Fluid Machinery Engineering and Technology,Jiangsu University,Zhenjiang,212013,China 3.Advanced Photon Source,Argonne National Laboratory,Lemont,9700 S. Cass Avenue,60439,United States 4.Kevin T. Crofton Department of Aerospace and Ocean Engineering,Virginia Tech,Blacksburg,24060,United States |
Recommended Citation GB/T 7714 | Zhang, Guangjian,Khlifa, Ilyass,Fezzaa, Kamelet al. Experimental investigation of internal two-phase flow structures and dynamics of quasi-stable sheet cavitation by fast synchrotron x-ray imaging[J]. Physics of Fluids, 2020, 32(11). |
APA | Zhang, Guangjian, Khlifa, Ilyass, Fezzaa, Kamel, Ge, Mingming, & Coutier-Delgosha, Olivier. (2020). Experimental investigation of internal two-phase flow structures and dynamics of quasi-stable sheet cavitation by fast synchrotron x-ray imaging. Physics of Fluids, 32(11). |
MLA | Zhang, Guangjian,et al."Experimental investigation of internal two-phase flow structures and dynamics of quasi-stable sheet cavitation by fast synchrotron x-ray imaging". Physics of Fluids 32.11(2020). |
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