A novel combined model of discrete and mixture phases for nanoparticles in convective turbulent flow

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dc.contributor.author Mahdavi, Mostafa
dc.contributor.author Sharifpur, Mohsen
dc.contributor.author Meyer, Josua P.
dc.date.accessioned 2017-09-21T10:38:14Z
dc.date.available 2017-09-21T10:38:14Z
dc.date.issued 2017-08
dc.description.abstract In this study, a new combined model presented to study the flow and discrete phase features of nano-size particles for turbulent convection in a horizontal tube. Due to the complexity and also many phenomena involved in particleliquid turbulent flows, the conventional models are not able to properly predict some hidden aspects of the flow. Therefore, Brownian motion is implemented in discrete phase model to predict the migration of the particles as well as energy equation has modified for particles. Then, the final results are exported to the mixture equations of the flow. The effects of the mass diffusion due to thermophoresis, Brownian motion and turbulent dispersion are implemented as source terms in equations. The results are compared with the experimental measurements from literature and are adequately validated. The accuracy of predicted heat transfer and friction coefficients are also discussed versus measurements. The migration of the particles toward the centre of the tube is properly captured. The results show the non-uniform distribution of particles in turbulent flow due to strong turbulent dispersion. The proposed combined model can open new viewpoints of particle-fluid interaction flows. en_ZA
dc.description.department Mechanical and Aeronautical Engineering en_ZA
dc.description.librarian am2017 en_ZA
dc.description.uri http://aip.scitation.org/journal/phf en_ZA
dc.identifier.citation Mahdavi, M., Sharifpur, M. & Meyer, J.P. 2017, 'A novel combined model of discrete and mixture phases for nanoparticles in convective turbulent flow', Physics of Fluids, vol. 29, no. 8, art. no. 082005. en_ZA
dc.identifier.issn 1070-6631 (print)
dc.identifier.issn 1089-7666 (online)
dc.identifier.other 10.1063/1.4998181
dc.identifier.uri http://hdl.handle.net/2263/62496
dc.language.iso en en_ZA
dc.publisher AIP Publishing en_ZA
dc.rights © 2017 AIP Publishing LLC. en_ZA
dc.subject Turbulent flow en_ZA
dc.subject Nanoparticles en_ZA
dc.subject Turbulent dispersion en_ZA
dc.subject Diffusion terms en_ZA
dc.subject Brownian movement en_ZA
dc.subject Heat transfer en_ZA
dc.subject Turbulent convection en_ZA
dc.subject Particle-fluid interaction en_ZA
dc.subject Non-uniform distribution en_ZA
dc.subject Friction coefficients en_ZA
dc.subject Discrete phase model en_ZA
dc.subject Conventional models en_ZA
dc.subject Mixtures en_ZA
dc.subject Friction en_ZA
dc.subject Dispersions en_ZA
dc.subject.other Engineering, built environment and information technology articles SDG-07
dc.subject.other SDG-07: Affordable and clean energy
dc.subject.other Engineering, built environment and information technology articles SDG-09
dc.subject.other SDG-09: Industry, innovation and infrastructure
dc.subject.other Engineering, built environment and information technology articles SDG-12
dc.subject.other SDG-12: Responsible consumption and production
dc.title A novel combined model of discrete and mixture phases for nanoparticles in convective turbulent flow en_ZA
dc.type Postprint Article en_ZA


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