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Fluent 1

breakup 1

breakup model 1

bubble breakup and coalescence 1

bubble column 1

bubble size distribution 1

capillary number 1

coalescence 1

computational fluid dynamics 1

diesel engine 1

droplet breakup 1

emulsification 1

high-pressure injection 1

microfluidics 1

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Assessment and validation of liquid breakup models for high-pressure dense diesel sprays

Yi REN,Xianguo LI

Frontiers in Energy 2016, Volume 10, Issue 2,   Pages 164-175 doi: 10.1007/s11708-016-0407-9

Abstract: Liquid breakup in fuel spray and atomization significantly affects the consequent mixture formation,In this paper, different models for liquid breakup processes in high-pressure dense diesel sprays andIt is found that the modified Kelvin-Helmholtz (KH)–Rayleigh-Taylor (RT) breakup model gives the mostFor the standard KH-RT model, the model constant for the breakup length has a significant effect onThe Taylor-analogy-breakup (TAB) based models and the RT model do not provide reasonable predictions

Keywords: breakup model     diesel engine     high-pressure injection     simulations    

Numerical Simulation of the Interaction Between Smoke and Water Mist in Fire

Ye Dong,Jiang Yong

Strategic Study of CAE 2007, Volume 9, Issue 2,   Pages 84-89

Abstract: Scattering of thermal radiation from fire by water mist and the effects of breakup and coalescence of

Keywords: water mist     Fluent     thermal radiation     scattering     coalescence     breakup    

Simulation of bubble column reactors using CFD coupled with a population balance model

Tiefeng WANG

Frontiers of Chemical Science and Engineering 2011, Volume 5, Issue 2,   Pages 162-172 doi: 10.1007/s11705-009-0267-5

Abstract: Bubble breakup and coalescence models due to different mechanisms are discussed.It is shown that the CFD-PBM coupled model with proper bubble breakup and coalescence models and interphaseFurther study is needed to improve the models of bubble coalescence and breakup, turbulence modification

Keywords: bubble column     computational fluid dynamics     bubble breakup and coalescence     population balance model     bubble    

A review on emulsification via microfluidic processes

Yichen Liu, Yongli Li, Andreas Hensel, Juergen J. Brandner, Kai zhang, Xiaoze Du, Yongping Yang

Frontiers of Chemical Science and Engineering 2020, Volume 14, Issue 3,   Pages 350-364 doi: 10.1007/s11705-019-1894-0

Abstract: The droplet formation or breakup is the result of combined effects resulting from interfacial tension

Keywords: microfluidics     emulsification     capillary number     droplet breakup    

Title Author Date Type Operation

Assessment and validation of liquid breakup models for high-pressure dense diesel sprays

Yi REN,Xianguo LI

Journal Article

Numerical Simulation of the Interaction Between Smoke and Water Mist in Fire

Ye Dong,Jiang Yong

Journal Article

Simulation of bubble column reactors using CFD coupled with a population balance model

Tiefeng WANG

Journal Article

A review on emulsification via microfluidic processes

Yichen Liu, Yongli Li, Andreas Hensel, Juergen J. Brandner, Kai zhang, Xiaoze Du, Yongping Yang

Journal Article