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Numerical simulation of viscoelastic nanofluid past a horizontal circular cylinder with viscous dissipation

Mahat, Rahimah and Mohd. Kasim, Abdul Rahman and Shafie, Sharidan (2020) Numerical simulation of viscoelastic nanofluid past a horizontal circular cylinder with viscous dissipation. Journal of Advanced Research in Dynamical and Control Systems, 12 (6). pp. 1851-1858. ISSN 1943-023X

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Official URL: http://dx.doi.org/10.5373/JARDCS/V12I2/S20201389

Abstract

Laminar mixed convection heat transfers of CMC-copper viscoelastic nanofluid past a horizontal circular cylinder was studied with the presence of viscous dissipation. The transformed boundary layer equations for velocity and temperature subject to constant heat flux (CHF) boundary conditions. Keller-box method has been chosen to solved this numerical solution. Simulations were performed for nanoparticle volume fractions up to 3%. Eckert number, viscoelastic parameter, mixed convection parameter and nanoparticles volume fraction are the dimensionless parameters have been studied graphically in terms of velocity and temperature profiles. The physical analysis has been studied and analyzed as well. The results reveals that both nanoparticles volume fraction and viscoelastic parameter show similar behavior in terms of velocity and temperature profiles, which the velocity profiles decrease and the temperature profiles increases when the values of nanoparticles volume fraction and viscoelastic parameter increases. Besides that, increasing Eckert number does not give any effects in velocity and temperature profiles. For the mixed convection parameter, the velocity profiles are increases and temperature profiles is decreases as the value of parameter increased.

Item Type:Article
Uncontrolled Keywords:nanofluid, viscoelastic and nanoparticles
Subjects:Q Science > QA Mathematics
Divisions:Science
ID Code:93475
Deposited By: Yanti Mohd Shah
Deposited On:30 Nov 2021 08:35
Last Modified:30 Nov 2021 08:35

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