FAQ

Investigations of liquid flow velocity in a vibromixer using stereo PIV anemometry

Data publikacji: 25.01.2016

Czasopismo Techniczne, 2015, Mechanika Zeszyt 1-M (6) 2015, s. 95 - 103

https://doi.org/10.4467/2353737XCT.15.275.4678

Autorzy

,
Ryszard Wójtowicz
Institute of Thermal and Process Engineering, Faculty of Mechanical Engineering, Cracow University of Technology
Wszystkie publikacje autora →
Sara Paszkowska
Institute of Urban Design, Faculty of Architecture, Cracow University of Technology
Wszystkie publikacje autora →

Tytuły

Investigations of liquid flow velocity in a vibromixer using stereo PIV anemometry

Abstrakt

This paper presents the results of investigations of liquid flow in a vibromixer with a single, reciprocating disc. Measurements were conducted using Particle Image Velocimetry (Stereo PIV). Liquid circulation was analysed for two cases: in a whole mixing vessel; in selected zones of intensive flow, e.g. in a gap between the disc and the tank wall. Results of measurements are presented as vector and contour maps of flow velocity distribution. Also, curves illustrating changes of flow for various instantaneous disc positions are shown. Results presented in this work can be used in practice during designing and design optimization of vibromixers applied in the production of multiphase systems and also for the creation of theoretical foundations for the dispersing of phases using mixing equipment of this kind.

Bibliografia

[1] Paul E.L., Atiemo-Obeng W.A., Kresta S.M., Handbook of Industrial Mixing, Wiley & Sons Inc., New Jersey 2004.

[2] Kamieński J., Agitation of multiphase systems, WNT, Warsaw 2004 (in Polish).

[3] Kamieński J., Wójtowicz R., Dispersion of liquid-liquid systems in a mixer with a reciprocating agitator, Chemical Engineering and Processing, 42, 2003, 1007-1017.

[4] Lo M.Y.A., Gierczycki A.T., Titchener-Hooker N.J., Ayazi Shamlou P., Newtonian power curve and drop size distributions for vibromixers, Canadian Journal Chemical Engineering, 76, 1998, 471-478.

[5] Wójtowicz R., Choice of an optimal agitated vessel for the drawdown of floating solids, Industrial & Engineering Chemistry Research, 53, 2014, 13989-14001.

[6] Masiuk S., Rakoczy R., Power consumption, mixing time, heat and mass transfer measurements for a liquid vessel that is mixed using a reciprocating multiplates agitator, Chemical Engineering and Processing, 46, 2007, 89-98.

[7] Brauer H., Annachhrate A.P., Nitrification and denitrification in a system of reciprocating jet bioreactor, Bioprocess Engineering, 7, 1992, 269-275.

[8] Komoda Y., Inoue Y., Hirata Y., Characteristics of turbulent flow inducted by reciprocating disk in cylindrical vessel, Journal of Chemical Engineering of Japan, 34, 2001, 929-935.

[9] Wójtowicz R., The vibromixers – a current state of research and trends of further investigations, [In:] Process Engineering and Chemical Plant Design (G. Wozny, Ł. Hady, eds.), Universitätsverlag der TU Berlin, Berlin 2011.

[10] Raffel M., Willert C.E., Wereley S.T., Particle Image Velocimetry – A practical guide, Springer, Berlin Heidelberg 2007.

[11] Albrecht H.-E., Borys M., Damaschke N., Tropea C., Laser Doppler and Phase Doppler Measurement Techniques, Springer, Berlin-Heidelberg 2003.

[12] Dantec Dynamics, DynamicStudio 3.2 User’s Guide, Dantec Dynamics, Skovlunde 2011.

Informacje

Informacje: Czasopismo Techniczne, 2015, Mechanika Zeszyt 1-M (6) 2015, s. 95 - 103

Typ artykułu: Oryginalny artykuł naukowy

Tytuły:

Polski:

Investigations of liquid flow velocity in a vibromixer using stereo PIV anemometry

Angielski:

Investigations of liquid flow velocity in a vibromixer using stereo PIV anemometry

Autorzy

Institute of Thermal and Process Engineering, Faculty of Mechanical Engineering, Cracow University of Technology

Institute of Urban Design, Faculty of Architecture, Cracow University of Technology

Publikacja: 25.01.2016

Status artykułu: Otwarte __T_UNLOCK

Licencja: Żadna

Udział procentowy autorów:

Ryszard Wójtowicz (Autor) - 50%
Sara Paszkowska (Autor) - 50%

Korekty artykułu:

-

Języki publikacji:

Angielski