Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects

The present study is focused on the presentation of a numerical solution for copper-water nanofluid through a stretching channel with spherical and cylindrical shape nanoparticles.The analysis of nanofluid in a channel with stretching walls under slip effects is made by introducing the conservation...

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Main Authors: Raza, Jawad, Mohd Rohni, Azizah, Omar, Zurni
Format: Article
Language:English
Published: MDPI 2016
Subjects:
Online Access:https://repo.uum.edu.my/id/eprint/22316/1/MCA%20%2021%2043%20%202016%201%2015.pdf
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author Raza, Jawad
Mohd Rohni, Azizah
Omar, Zurni
author_facet Raza, Jawad
Mohd Rohni, Azizah
Omar, Zurni
author_sort Raza, Jawad
collection UUM
description The present study is focused on the presentation of a numerical solution for copper-water nanofluid through a stretching channel with spherical and cylindrical shape nanoparticles.The analysis of nanofluid in a channel with stretching walls under slip effects is made by introducing the conservation equation of nanoparticle volume fraction into Hamilton-Crosser’s nanofluid model. Governing partial differential equations are transformed into nonlinear ordinary differential equations by applying similarity transformation and then solved with the help of shooting method. The effects of different physical parameters on the rheology of nanofluids’ particles are presented in tabulation and pictorial representation. The study reveals that the thermal boundary layer thickness increases by increasing the solid volume fraction.
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spelling uum-223162017-06-07T06:09:08Z https://repo.uum.edu.my/id/eprint/22316/ Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects Raza, Jawad Mohd Rohni, Azizah Omar, Zurni QA75 Electronic computers. Computer science The present study is focused on the presentation of a numerical solution for copper-water nanofluid through a stretching channel with spherical and cylindrical shape nanoparticles.The analysis of nanofluid in a channel with stretching walls under slip effects is made by introducing the conservation equation of nanoparticle volume fraction into Hamilton-Crosser’s nanofluid model. Governing partial differential equations are transformed into nonlinear ordinary differential equations by applying similarity transformation and then solved with the help of shooting method. The effects of different physical parameters on the rheology of nanofluids’ particles are presented in tabulation and pictorial representation. The study reveals that the thermal boundary layer thickness increases by increasing the solid volume fraction. MDPI 2016 Article PeerReviewed application/pdf en cc4_by https://repo.uum.edu.my/id/eprint/22316/1/MCA%20%2021%2043%20%202016%201%2015.pdf Raza, Jawad and Mohd Rohni, Azizah and Omar, Zurni (2016) Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects. Mathematical and Computational Applications, 21 (43). pp. 1-15. ISSN 2297-8747 http://doi.org/10.3390/mca21040043 doi:10.3390/mca21040043 doi:10.3390/mca21040043
spellingShingle QA75 Electronic computers. Computer science
Raza, Jawad
Mohd Rohni, Azizah
Omar, Zurni
Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects
title Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects
title_full Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects
title_fullStr Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects
title_full_unstemmed Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects
title_short Numerical investigation of copper-water (cu-water) nanofluid with different shapes of nanoparticles in a channel with stretching wall: slip effects
title_sort numerical investigation of copper water cu water nanofluid with different shapes of nanoparticles in a channel with stretching wall slip effects
topic QA75 Electronic computers. Computer science
url https://repo.uum.edu.my/id/eprint/22316/1/MCA%20%2021%2043%20%202016%201%2015.pdf
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