Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study

Hydrodynamic behavior of immiscible liquid-liquid systems has great importance in many industrial operations such as mining, food, cosmetics and pharmaceuticals industries. This behavior governs jet formation and breakup, droplet formation and coalescence in emulsification. For successful emulsion a...

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Main Authors: Pareek, Vishnu, Parmar, Harisinh Bhikhubhai, Phan, Chi, Evans, G.
Other Authors: IChemE
Format: Conference Paper
Published: Engineers Australia, 2011 2011
Online Access:http://search.informit.com.au/documentSummary;dn=167518653816228;res=IELENG
http://hdl.handle.net/20.500.11937/49156
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author Pareek, Vishnu
Parmar, Harisinh Bhikhubhai
Phan, Chi
Evans, G.
author2 IChemE
author_facet IChemE
Pareek, Vishnu
Parmar, Harisinh Bhikhubhai
Phan, Chi
Evans, G.
author_sort Pareek, Vishnu
building Curtin Institutional Repository
collection Online Access
description Hydrodynamic behavior of immiscible liquid-liquid systems has great importance in many industrial operations such as mining, food, cosmetics and pharmaceuticals industries. This behavior governs jet formation and breakup, droplet formation and coalescence in emulsification. For successful emulsion applications, it is very important to generate small and uniform droplets to ensure product stability. In addition, the breakup of the jet increases the interfacial area and hence enhances efficiency of processes such as heat transfer, mass transfer and sometimes chemical reactions. In this study, the formation of droplets from multiple circular nozzles into an immiscible liquid was studied using computational fluid dynamics (CFD). The unsteady motion of the interface separating two immiscible fluids is followed by solving the Navier–Stokes equations for incompressible and Newtonian fluids with a volume of fluid (VOF) method. Most significantly, the interaction between neighboring jets was modelled for micro-jet condition.
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institution Curtin University Malaysia
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last_indexed 2025-11-14T09:39:50Z
publishDate 2011
publisher Engineers Australia, 2011
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spelling curtin-20.500.11937-491562017-05-04T07:05:45Z Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study Pareek, Vishnu Parmar, Harisinh Bhikhubhai Phan, Chi Evans, G. IChemE Hydrodynamic behavior of immiscible liquid-liquid systems has great importance in many industrial operations such as mining, food, cosmetics and pharmaceuticals industries. This behavior governs jet formation and breakup, droplet formation and coalescence in emulsification. For successful emulsion applications, it is very important to generate small and uniform droplets to ensure product stability. In addition, the breakup of the jet increases the interfacial area and hence enhances efficiency of processes such as heat transfer, mass transfer and sometimes chemical reactions. In this study, the formation of droplets from multiple circular nozzles into an immiscible liquid was studied using computational fluid dynamics (CFD). The unsteady motion of the interface separating two immiscible fluids is followed by solving the Navier–Stokes equations for incompressible and Newtonian fluids with a volume of fluid (VOF) method. Most significantly, the interaction between neighboring jets was modelled for micro-jet condition. 2011 Conference Paper http://hdl.handle.net/20.500.11937/49156 http://search.informit.com.au/documentSummary;dn=167518653816228;res=IELENG Engineers Australia, 2011 restricted
spellingShingle Pareek, Vishnu
Parmar, Harisinh Bhikhubhai
Phan, Chi
Evans, G.
Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study
title Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study
title_full Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study
title_fullStr Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study
title_full_unstemmed Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study
title_short Breakup of multiple jets in immiscible liquid-liquid systems: A computational fluid dynamics study
title_sort breakup of multiple jets in immiscible liquid-liquid systems: a computational fluid dynamics study
url http://search.informit.com.au/documentSummary;dn=167518653816228;res=IELENG
http://hdl.handle.net/20.500.11937/49156