Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity

This paper focuses on the study of Laminar mix convection heat transfer of water-AL2O3 and water-CuO nanofluids whit temperature and nanoparticles concentration dependent thermophyscical properties in a rectangular shallow cavity was investigated numerically. Upper movable lid of the cavity was at a...

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Main Authors: Davood Toghraie semiromi, shirin mirforoughi
Format: Article
Language:fas
Published: Semnan University 2018-12-01
Series:مجله مدل سازی در مهندسی
Subjects:
Online Access:https://modelling.semnan.ac.ir/article_3480_f56e0ca6b9b906e7d5fa21dd0ebfb843.pdf
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author Davood Toghraie semiromi
shirin mirforoughi
author_facet Davood Toghraie semiromi
shirin mirforoughi
author_sort Davood Toghraie semiromi
collection DOAJ
description This paper focuses on the study of Laminar mix convection heat transfer of water-AL2O3 and water-CuO nanofluids whit temperature and nanoparticles concentration dependent thermophyscical properties in a rectangular shallow cavity was investigated numerically. Upper movable lid of the cavity was at a lower temperature compared to the bottom wall. Simulations were performed for Grashof numbers of 104 for Richardson numbers from 0.1 to 4.5, and nanoparticle volume fraction of 0.01-0.04. The two-dimensional governing equations were discretized using a finite volume method and SIMPLE algorithm. The model prediction for very low solid volume fraction were found to be in good agreement whit earlier numerical studies for a base fluid. It is shown that under a wide range of volume fraction of nanoparticles and different Richardson number, the enhancement of heat transfer will be evaluated. The Reynolds number varies due to variation of the Richardson number. Heat transfer was elevated by increasing the concentration of nanoparticles additionally. In this paper investigated the role of nanofluid variable properties in differentially heated enclosures and found that the prediction of heat.
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spelling doaj.art-beed63ecff8c445790b0ed40896966842024-02-23T19:05:45ZfasSemnan Universityمجله مدل سازی در مهندسی2008-48542783-25382018-12-01165533735010.22075/jme.2018.11242.10913480Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavityDavood Toghraie semiromi0shirin mirforoughi1دانشگاه خمینی شهرDepartment of Mechanical Engineering, Najafabad Branch, Islamic Azad University, Najafabad, IranThis paper focuses on the study of Laminar mix convection heat transfer of water-AL2O3 and water-CuO nanofluids whit temperature and nanoparticles concentration dependent thermophyscical properties in a rectangular shallow cavity was investigated numerically. Upper movable lid of the cavity was at a lower temperature compared to the bottom wall. Simulations were performed for Grashof numbers of 104 for Richardson numbers from 0.1 to 4.5, and nanoparticle volume fraction of 0.01-0.04. The two-dimensional governing equations were discretized using a finite volume method and SIMPLE algorithm. The model prediction for very low solid volume fraction were found to be in good agreement whit earlier numerical studies for a base fluid. It is shown that under a wide range of volume fraction of nanoparticles and different Richardson number, the enhancement of heat transfer will be evaluated. The Reynolds number varies due to variation of the Richardson number. Heat transfer was elevated by increasing the concentration of nanoparticles additionally. In this paper investigated the role of nanofluid variable properties in differentially heated enclosures and found that the prediction of heat.https://modelling.semnan.ac.ir/article_3480_f56e0ca6b9b906e7d5fa21dd0ebfb843.pdfnanofluidsmix convectionshallow cavityvariable propertiesnumerical solution
spellingShingle Davood Toghraie semiromi
shirin mirforoughi
Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity
مجله مدل سازی در مهندسی
nanofluids
mix convection
shallow cavity
variable properties
numerical solution
title Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity
title_full Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity
title_fullStr Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity
title_full_unstemmed Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity
title_short Numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity
title_sort numerical investigation of nanofluid mixed convection heat transfer with variable properties within a shallow lid driven cavity
topic nanofluids
mix convection
shallow cavity
variable properties
numerical solution
url https://modelling.semnan.ac.ir/article_3480_f56e0ca6b9b906e7d5fa21dd0ebfb843.pdf
work_keys_str_mv AT davoodtoghraiesemiromi numericalinvestigationofnanofluidmixedconvectionheattransferwithvariablepropertieswithinashallowliddrivencavity
AT shirinmirforoughi numericalinvestigationofnanofluidmixedconvectionheattransferwithvariablepropertieswithinashallowliddrivencavity