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Large eddy simulation of precipitation process
carried out in jet reactors

Publication date: 10.11.2014

Technical Transactions, 2014, Chemistry Issue 2-Ch (24) 2014 , pp. 95 - 104

Authors

,
Łukasz Makowski
Faculty of Chemical and Process Engineering, Warsaw University of Technology
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,
Krzysztof Wojtas
Faculty of Chemical and Process Engineering, Warsaw University of Technology
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,
Wojciech Orciuch
Faculty of Chemical and Process Engineering, Warsaw University of Technology
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Jerzy Bałdyga
Faculty of Chemical and Process Engineering, Warsaw University of Technology
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Titles

Large eddy simulation of precipitation process
carried out in jet reactors

Abstract

The paper presents an application of large eddy simulations to predict a course of precipitation process carried out in selected types of jet reactors. In the first part of this work the simulations results were validated using PIV and PLIF techniques and also by comparing model predictions with experimental data for fast parallel chemical test reactions. In the second part of this work predictions of modeling are compared with experimental data for BaSO4 precipitation. Precipitation model is tested in this part also by comparing predictions of the model based on LES with results obtained using the multiple-time-scale mixing model combined with the k‒e model.

References

Bałdyga J., Bourne J.R., Turbulent Mixing and Chemical Reactions, Wiley, Chichester,1999.

Söhnel O., Garside J., Precipitation, Butterworth-Heinemann, Oxford,1992.

Jaworski Z., Numeryczna mechanika płynów w inżynierii chemicznej i procesowej, Akademicka Oficyna Wydawnicza EXIT, 2005.

Cook A.W., Riley J.J., A subgrid model for equilibrium chemistry in turbulent flows, Phys. Fluids, vol. 6, 1994, 2868-2870.

Michioka T., Komori S., Large-Eddy Simulation of a turbulent reacting liquid flow, AIChE J., vol. 50, 2004, 2705-2720.

Makowski Ł., Bałdyga J., Large Eddy Simulation of mixing effects on the course of parallel chemical reactions and comparison with k–ε modeling, Chemical Engineering and Processing: Process Intensification, vol. 50, 2011, 1035-1040.

Bałdyga J., Turbulent mixer model with application to homogeneous, instantaneous chemical reactions, Chem. Engng Sci., vol. 44, 1989, 1175-1182.

Bałdyga J., Makowski Ł., CFD modelling of mixing effects on the course of parallel chemical reactions carried out in a stirred tank, Chem. Eng. Technol., vol. 27, 2004, 225-230.

Bałdyga J., Podgórska W., Pohorecki R., Mixing-precipitation model with application to double feed semibatch precipitation, Chem. Engng Sci., vol. 50, 1995, 1281-1300.

Bałdyga J., Orciuch, W., Closure problem for precipitation, Transactions of the Institution of Chemical Engineering, vol. 75A, 1997, 160-170.

Wong D. C. Y., Jaworski Z., Nienow A. W., Effect of ion excess on particle size and morphology during barium sulphate precipitation: an experimental study, Chem. Engng Sci., vol. 56, 2001, 727-734.

Marchisio D. L., Barresi A. A., Garbero, M., Nucleation, growth and agglomeration in barium sulfate turbulent precipitation, AIChE Journal, vol. 48, 2002, 2039-2050.

Nielsen A. E., Electrolite crystal growth mechanisms, Journal of Crystal Growth, vol.67, 1984, 289-310.

Hulburt H. M., Katz S., Some problems in particle technology ‒ a statistical mechanical formulation, Chem. Engng Sci., vol. 19, 1964, 555-547.

Bałdyga J., Orciuch W., Barium sulphate precipitation in a pipe ‒ an exexperimental study and CFD modelling, Chem. Engng Sci., vol. 56, 2001, 2435-2444.

Makowski Ł., Bałdyga J., Large Eddy Simulation of mixing effects on the course of parallel chemical reactions and comparison with k–ε modeling, Chemical Engineering and Processing: Process Intensification, vol. 50, 2011, 1035-1040.

Information

Information: Technical Transactions, 2014, Chemistry Issue 2-Ch (24) 2014 , pp. 95 - 104

Article type: Original article

Titles:

Polish:

Large eddy simulation of precipitation process
carried out in jet reactors

English:

Large eddy simulation of precipitation process
carried out in jet reactors

Authors

Faculty of Chemical and Process Engineering, Warsaw University of Technology

Faculty of Chemical and Process Engineering, Warsaw University of Technology

Faculty of Chemical and Process Engineering, Warsaw University of Technology

Faculty of Chemical and Process Engineering, Warsaw University of Technology

Published at: 10.11.2014

Article status: Open

Licence: None

Percentage share of authors:

Łukasz Makowski (Author) - 25%
Krzysztof Wojtas (Author) - 25%
Wojciech Orciuch (Author) - 25%
Jerzy Bałdyga (Author) - 25%

Article corrections:

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Publication languages:

English

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