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Status已发表Published
TitleCombined suppression effects on hydrodynamic cavitation performance in Venturi-type reactor for process intensification
Creator
Date Issued2022-05-01
Source PublicationUltrasonics Sonochemistry
ISSN1350-4177
Volume86
Abstract

Hydrodynamic cavitation is an emerging intensification technology in water treatment or chemical processing, and Venturi-type cavitation reactors exhibit advantages for industrial-scale production. The effects of temperature on hydrodynamic cavitating flows are investigated to find the optimum reaction conditions enhancing cavitating treatment intensity. Results show that the cavitation performance, including the cavitation intensity and cavitation unsteady behavior, is influenced by (1) cavitation number σ (the pressure difference affecting the vaporization process), (2) Reynolds number Re (the inertial/viscous ratio affecting the bubble size and liquid–vapor interface area), and (3) thermodynamic parameter Σ (the thermal effect affecting the temperature drop). With increasing temperature, the cavitation length first increases and then decreases, with a cavitation intensity peak at the transition temperature of 58 °C. With the growth of cavitation extent, the cavity-shedding regimes tend to transition from the attached sheet cavity to the periodic cloud cavity, and the vapor volume fluctuating frequency decreases accordingly. A combined suppression parameter (CSP) is provided to predict that, with increasing CSP value, the cavitation intensity can be decreased. Recommendations are given that working under the low-CSP range (55–60 °C) could enhance the intensification of the cavitation process.

KeywordCavitation intensity Hydrodynamic cavitation Process intensification Spatio-temporal distribution Thermodynamic effects Venturi reactor
DOI10.1016/j.ultsonch.2022.106035
URLView source
Indexed BySCIE
Language英语English
WOS Research AreaAcoustics ; Chemistry
WOS SubjectAcoustics ; Chemistry ; Multidisciplinary
WOS IDWOS:000859147300003
Scopus ID2-s2.0-85130375782
Citation statistics
Cited Times:71[WOS]   [WOS Record]     [Related Records in WOS]
Document TypeJournal article
Identifierhttp://repository.uic.edu.cn/handle/39GCC9TT/12304
CollectionResearch outside affiliated institution
Corresponding AuthorZhang, Guangjian
Affiliation
1.Research Center of Fluid Machinery Engineering and Technology,Jiangsu University,Zhenjiang,212013,China
2.School of Engineering,Westlake university,Hangzhou,Xihu District,310023,China
3.Kevin T. Crofton Department of Aerospace and Ocean Engineering,Virginia Tech,Blacksburg,24060,United States
4.Section of “Chemistry for the Technology” ChemTech,Department of Industrial Engineering,University of Padova,Padova (PD),I-35131,Italy
Recommended Citation
GB/T 7714
Ge, Mingming,Sun, Chuanyu,Zhang, Guangjianet al. Combined suppression effects on hydrodynamic cavitation performance in Venturi-type reactor for process intensification[J]. Ultrasonics Sonochemistry, 2022, 86.
APA Ge, Mingming, Sun, Chuanyu, Zhang, Guangjian, Coutier-Delgosha, Olivier, & Fan, Dixia. (2022). Combined suppression effects on hydrodynamic cavitation performance in Venturi-type reactor for process intensification. Ultrasonics Sonochemistry, 86.
MLA Ge, Mingming,et al."Combined suppression effects on hydrodynamic cavitation performance in Venturi-type reactor for process intensification". Ultrasonics Sonochemistry 86(2022).
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