Numerical Investigation of the Cavitation Characteristics in Venturi Tubes: The Role of Converging and Diverging Sections

被引:4
作者
Liu, Yi [1 ]
Li, Bin [1 ]
机构
[1] Zhejiang Sci Tech Univ, Fac Mech Engn & Automat, Hangzhou 310018, Peoples R China
来源
APPLIED SCIENCES-BASEL | 2023年 / 13卷 / 13期
基金
英国科研创新办公室;
关键词
Venturi tube; cavitation; vapor volume fraction; low-pressure zone; HYDRODYNAMIC CAVITATION; PERFORMANCE; CFD; REACTORS;
D O I
10.3390/app13137476
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Cavitation is a typical physical process that has shown to be highly valuable in the wastewater treatment field. This study aims to investigate the effects of the converging and diverging sections of a Venturi tube on the cavitation flow field. Multiphase flows in tubes are presented using the mixture model and the standard k-& epsilon; model. And the Schnerr and Sauer cavitation model is employed to simulate the vapor-liquid phase transition process. Both grid independence and the numerical method's feasibility were validated before the research. The results showed that the influence of the divergence section length on Venturi cavitation characteristics depends on the provided pressure conditions. As the pressure increases, shorter divergence sections result in more significant cavitation effects. The length of the convergence section displays various cavitation behaviors under different pressure situations. A small contraction section length can achieve better cavitation effects in high-pressure applications, whereas the opposite is true in low-pressure cases. Within the scope of this study, it was observed that the Venturi tube with a divergent section of 14 Lt and a convergent one of 2.4 Lt provided enhanced cavitation performance when subjected to inlet pressures ranging from 0.8 to 1.2 MPa. Our findings indicate that the selection of converging and diverging section lengths in Venturi tubes should consider the corresponding operational pressure conditions, which provides valuable guidance and engineering significance in the research and development of Venturi cavitation devices in hydraulic engineering.
引用
收藏
页数:20
相关论文
共 31 条
[1]   Design and optimization of a cavitating device for Congo red decolorization: Experimental investigation and CFD simulation [J].
Abbas-Shiroodi, Zahra ;
Sadeghi, Mohammad-Taghi ;
Baradaran, Soroush .
ULTRASONICS SONOCHEMISTRY, 2021, 71
[2]   Experimental and numerical investigation on the performance of small-sized cavitating venturis [J].
Ashrafizadeh, Seyed Mehdi ;
Ghassemi, Hojat .
FLOW MEASUREMENT AND INSTRUMENTATION, 2015, 42 :6-15
[3]   Hydrodynamic cavitation as a novel approach for wastewater treatment in wood finishing industry [J].
Badve, Mandar ;
Gogate, Parag ;
Pandit, Aniruddha ;
Csoka, Levente .
SEPARATION AND PURIFICATION TECHNOLOGY, 2013, 106 :15-21
[4]   Degradation of diclofenac sodium using combined processes based on hydrodynamic cavitation and heterogeneous photocatalysis [J].
Bagal, Manisha V. ;
Gogate, Parag R. .
ULTRASONICS SONOCHEMISTRY, 2014, 21 (03) :1035-1043
[5]   THE CFD DRIVEN OPTIMISATION OF A MODIFIED VENTURI FOR CAVITATIONAL ACTIVITY [J].
Bashir, Tausif A. ;
Soni, Advait G. ;
Mahulkar, Amit V. ;
Pandit, Aniruddha B. .
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 2011, 89 (06) :1366-1375
[6]   Investigation of cavitation and vapor shedding mechanisms in a Venturi nozzle [J].
Brunhart, Maxwell ;
Soteriou, Celia ;
Gavaises, Manolis ;
Karathanassis, Ioannis ;
Koukouvinis, Phoevos ;
Jahangir, Saad ;
Poelma, Christian .
PHYSICS OF FLUIDS, 2020, 32 (08)
[7]   Hydrodynamic cavitation: an emerging technology for the intensification of various chemical and physical processes in a chemical process industry [J].
Carpenter, Jitendra ;
Badve, Mandar ;
Rajoriya, Sunil ;
George, Suja ;
Saharan, Virendra Kumar ;
Pandit, Aniruddha B. .
REVIEWS IN CHEMICAL ENGINEERING, 2017, 33 (05) :433-468
[8]  
Chitsaz HR, 2019, IRAN J CHEM CHEM ENG, V38, P285
[9]   Single and multiphase CFD simulations for designing cavitating venturi [J].
Dastane, Gaurav G. ;
Thakkar, Harsh ;
Shah, Rushabh ;
Perala, Sivaramakrishna ;
Raut, Janhaui ;
Pandit, A. B. .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2019, 149 :1-12
[10]   Numerical investigation of the cavity shedding mechanism in a Venturi reactor [J].
Fang, Liang ;
Li, Wei ;
Li, Qiang ;
Wang, Zhenbo .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2020, 156