A numerical simulation for magnetohydrodynamic nanofluid flow and heat transfer in rotating horizontal annulus with thermal radiation
Open Access
- 17 July 2019
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in RSC Advances
- Vol. 9 (39), 22185-22197
- https://doi.org/10.1039/c9ra03286j
Abstract
The impact of an axial magnetic field on the heat transfer and nanofluid flow among two horizontal coaxial tubes in the presence of thermal radiation was considered in this study. The impact of viscous dissipation was also considered. The well-known KKL (Koo–Kleinsteuer–Li) model was applied to approximate the viscosity of the nanofluid and the effective thermal conductivity. Furthermore, proper transformations for the velocity and temperature were applied in this study to obtain a set of ODEs (ordinary differential equations) for basic equations governing the flow, heat and mass transfer. In addition, the 4th order Runge–Kutta (RK) numerical scheme was applied to solve the differential equations along with the associated boundary conditions. The impacts of different parameters, including Hartmann number, Reynolds number, radiation parameter and aspect ratio, on the heat transfer and flow features were studied. According to the results, the value of the Nusselt number increases with an increase in the radiation parameter, Hartmann number and aspect ratio and a decrease in the Reynolds number and Eckert number.Funding Information
- Natural Science Foundation of Guangdong Province (2018A030310522)
- Shenzhen University (2017032)
This publication has 137 references indexed in Scilit:
- Effect of thermal radiation on magnetohydrodynamics nanofluid flow and heat transfer by means of two phase modelJournal of Magnetism and Magnetic Materials, 2015
- Numerical simulation of MHD nanofluid flow and heat transfer considering viscous dissipationInternational Journal of Heat and Mass Transfer, 2014
- KKL correlation for simulation of nanofluid flow and heat transfer in a permeable channelPhysics Letters A, 2014
- Marangoni Convection Flow and Heat Transfer of Power Law Nanofluids Driven by Temperature Gradient with Modified Fourier's LawInternational Journal of Nonlinear Sciences and Numerical Simulation, 2014
- Ferrohydrodynamic and magnetohydrodynamic effects on ferrofluid flow and convective heat transferEnergy, 2014
- On model for three-dimensional flow of nanofluid: An application to solar energyJournal of Molecular Liquids, 2014
- Influence of thermal radiation and Joule heating on MHD flow of a Maxwell fluid in the presence of thermophoresisInternational Journal of Heat and Mass Transfer, 2010
- Boundary-layer flow of a nanofluid past a stretching sheetInternational Journal of Heat and Mass Transfer, 2010
- Effects of radiation and magnetic field on the mixed convection stagnation-point flow over a vertical stretching sheet in a porous mediumInternational Journal of Heat and Mass Transfer, 2009
- Unsteady heat and mass transfer from a rotating vertical cone with a magnetic field and heat generation or absorption effectsInternational Journal of Thermal Sciences, 2005