Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating Cylinder
This numerical study considers the mixed convection and the inherent entropy generated in Al 2 O 3 –water nanofluid filling a cavity containing a rotating conductive cylinder. The vertical walls of the cavity are wavy and are cooled isothermally. The horizontal walls are thermally insu...
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doaj-c3608813b0ea4c22afb77fa2f0e85a492020-11-24T22:04:17ZengMDPI AGEntropy1099-43002018-09-0120966410.3390/e20090664e20090664Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating CylinderAmmar I. Alsabery0Muneer A. Ismael1Ali J. Chamkha2Ishak Hashim3Department of Refrigeration & Air-conditioning Technical Engineering, College of Technical Engineering, The Islamic University, Najaf 54001, IraqDepartment of Mechanical Engineering, Engineering College, University of Basrah, Basrah 61004, IraqDepartment of Mechanical Engineering, Prince Sultan Endowment for Energy and the Environment, Prince Mohammad Bin Fahd University, Al-Khobar 31952, Saudi ArabiaSchool of Mathematical Sciences, Faculty of Science & Technology, Universiti Kebangsaan Malaysia, Bangi Selangor 43600, MalaysiaThis numerical study considers the mixed convection and the inherent entropy generated in Al 2 O 3 –water nanofluid filling a cavity containing a rotating conductive cylinder. The vertical walls of the cavity are wavy and are cooled isothermally. The horizontal walls are thermally insulated, except for a heat source segment located at the bottom wall. The dimensionless governing equations subject to the selected boundary conditions are solved numerically using the Galerkin finite-element method. The study is accomplished by inspecting different ranges of the physical and geometrical parameters, namely, the Rayleigh number ( 10 3 ≤ R a ≤ 10 6 ), angular rotational velocity ( 0 ≤ Ω ≤ 750 ), number of undulations ( 0 ≤ N ≤ 4 ), volume fraction of Al 2 O 3 nanoparticles ( 0 ≤ ϕ ≤ 0.04 ), and the length of the heat source ( 0.2 ≤ H ≤ 0.8 ) . The results show that the rotation of the cylinder boosts the rate of heat exchange when the Rayleigh number is less than 5 × 10 5 . The number of undulations affects the average Nusselt number for a still cylinder. The rate of heat exchange increases with the volume fraction of the Al 2 O 3 nanoparticles and the length of the heater segment.http://www.mdpi.com/1099-4300/20/9/664entropy generationmixed convectionwavy cavityrotating solid cylinderheat source |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ammar I. Alsabery Muneer A. Ismael Ali J. Chamkha Ishak Hashim |
spellingShingle |
Ammar I. Alsabery Muneer A. Ismael Ali J. Chamkha Ishak Hashim Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating Cylinder Entropy entropy generation mixed convection wavy cavity rotating solid cylinder heat source |
author_facet |
Ammar I. Alsabery Muneer A. Ismael Ali J. Chamkha Ishak Hashim |
author_sort |
Ammar I. Alsabery |
title |
Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating Cylinder |
title_short |
Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating Cylinder |
title_full |
Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating Cylinder |
title_fullStr |
Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating Cylinder |
title_full_unstemmed |
Numerical Investigation of Mixed Convection and Entropy Generation in a Wavy-Walled Cavity Filled with Nanofluid and Involving a Rotating Cylinder |
title_sort |
numerical investigation of mixed convection and entropy generation in a wavy-walled cavity filled with nanofluid and involving a rotating cylinder |
publisher |
MDPI AG |
series |
Entropy |
issn |
1099-4300 |
publishDate |
2018-09-01 |
description |
This numerical study considers the mixed convection and the inherent entropy generated in Al 2 O 3 –water nanofluid filling a cavity containing a rotating conductive cylinder. The vertical walls of the cavity are wavy and are cooled isothermally. The horizontal walls are thermally insulated, except for a heat source segment located at the bottom wall. The dimensionless governing equations subject to the selected boundary conditions are solved numerically using the Galerkin finite-element method. The study is accomplished by inspecting different ranges of the physical and geometrical parameters, namely, the Rayleigh number ( 10 3 ≤ R a ≤ 10 6 ), angular rotational velocity ( 0 ≤ Ω ≤ 750 ), number of undulations ( 0 ≤ N ≤ 4 ), volume fraction of Al 2 O 3 nanoparticles ( 0 ≤ ϕ ≤ 0.04 ), and the length of the heat source ( 0.2 ≤ H ≤ 0.8 ) . The results show that the rotation of the cylinder boosts the rate of heat exchange when the Rayleigh number is less than 5 × 10 5 . The number of undulations affects the average Nusselt number for a still cylinder. The rate of heat exchange increases with the volume fraction of the Al 2 O 3 nanoparticles and the length of the heater segment. |
topic |
entropy generation mixed convection wavy cavity rotating solid cylinder heat source |
url |
http://www.mdpi.com/1099-4300/20/9/664 |
work_keys_str_mv |
AT ammarialsabery numericalinvestigationofmixedconvectionandentropygenerationinawavywalledcavityfilledwithnanofluidandinvolvingarotatingcylinder AT muneeraismael numericalinvestigationofmixedconvectionandentropygenerationinawavywalledcavityfilledwithnanofluidandinvolvingarotatingcylinder AT alijchamkha numericalinvestigationofmixedconvectionandentropygenerationinawavywalledcavityfilledwithnanofluidandinvolvingarotatingcylinder AT ishakhashim numericalinvestigationofmixedconvectionandentropygenerationinawavywalledcavityfilledwithnanofluidandinvolvingarotatingcylinder |
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