Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani

A fluid formed by suspending Nano-scaled metallic or non-metallic particles in base fluids is called a nanofluid. Laminar forced convection heat transfer of the CUO-water nanofluid in a pipe with a return bend is analysed by using a finite volume method. The effects of nanoparticles concentrations a...

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Main Author: Hamed, Khajeh Arzani
Format: Thesis
Published: 2012
Subjects:
Online Access:http://studentsrepo.um.edu.my/8154/
http://studentsrepo.um.edu.my/8154/4/thesis_%2528Hamed_Khajeh_Arzani%2529_%25282%2529.pdf
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author Hamed, Khajeh Arzani
author_facet Hamed, Khajeh Arzani
author_sort Hamed, Khajeh Arzani
building UM Research Repository
collection Online Access
description A fluid formed by suspending Nano-scaled metallic or non-metallic particles in base fluids is called a nanofluid. Laminar forced convection heat transfer of the CUO-water nanofluid in a pipe with a return bend is analysed by using a finite volume method. The effects of nanoparticles concentrations and Reynolds number are investigated on the flow and the convective heat transfer behaviour. The results show that the average Nusselt number increases with increasing Reynolds number, and the increment of specific heat in the nanofluid contributes to the heat transfer enhancement. The average Nusselt number in the return bend appears higher than that in the inlet and outlet pipes due to the secondary flows. However, the pressure drop in the pipe largely increases with the increment of nanoparticle volume concentration.
first_indexed 2025-11-14T13:44:43Z
format Thesis
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institution University Malaya
institution_category Local University
last_indexed 2025-11-14T13:44:43Z
publishDate 2012
recordtype eprints
repository_type Digital Repository
spelling um-81542018-04-21T04:30:21Z Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani Hamed, Khajeh Arzani T Technology (General) TJ Mechanical engineering and machinery A fluid formed by suspending Nano-scaled metallic or non-metallic particles in base fluids is called a nanofluid. Laminar forced convection heat transfer of the CUO-water nanofluid in a pipe with a return bend is analysed by using a finite volume method. The effects of nanoparticles concentrations and Reynolds number are investigated on the flow and the convective heat transfer behaviour. The results show that the average Nusselt number increases with increasing Reynolds number, and the increment of specific heat in the nanofluid contributes to the heat transfer enhancement. The average Nusselt number in the return bend appears higher than that in the inlet and outlet pipes due to the secondary flows. However, the pressure drop in the pipe largely increases with the increment of nanoparticle volume concentration. 2012-06-26 Thesis NonPeerReviewed application/pdf http://studentsrepo.um.edu.my/8154/4/thesis_%2528Hamed_Khajeh_Arzani%2529_%25282%2529.pdf Hamed, Khajeh Arzani (2012) Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani. Masters thesis, Universiti Malaya. http://studentsrepo.um.edu.my/8154/
spellingShingle T Technology (General)
TJ Mechanical engineering and machinery
Hamed, Khajeh Arzani
Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani
title Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani
title_full Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani
title_fullStr Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani
title_full_unstemmed Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani
title_short Numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / Hamed Khajeh Arzani
title_sort numerical simulation of forced convection heat transfer of laminar cuo-water nanofluid flow through a horizontal 180 degree curve pipe / hamed khajeh arzani
topic T Technology (General)
TJ Mechanical engineering and machinery
url http://studentsrepo.um.edu.my/8154/
http://studentsrepo.um.edu.my/8154/4/thesis_%2528Hamed_Khajeh_Arzani%2529_%25282%2529.pdf