In this paper, flow and heat transfer of nanofluid through a converging or diverging channel with porous medium is investigated. The fluid constantly flows under the effect of magnetic field through the channel. The diverging/converging fluid motion is modeled using the momentum and energy equations. The influence of some parameters such as opening channel angle, Reynolds number and Darcy's number when the nanofluid flows through the non-parallel plates are studied. It is seen that high Reynolds number enhances the fluid viscosity while decreases velocity. Similarly, heat transfer reduces at high Darcy's number owing to decreased flow consequently internal friction reduces. The obtained results in comparison with the similar studies in the literatures show satisfactory agreement.
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Department of Mathematics, The National College, Jayanagar, Bangalore
Trans-Disciplinary Research Center, National Degree College, Basavanagudi, Bangalore
The Florida International University, Miami, FLDepartment of Mathematics, The National College, Jayanagar, Bangalore
Madhura K.R.
Babitha
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Department of Mathematics, The National College, Jayanagar, Bangalore
East West Institute of Technology, VTU, Bangalore, KarnatakaDepartment of Mathematics, The National College, Jayanagar, Bangalore
Babitha
Iyengar S.S.
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School of Computing and Information Sciences, Florida International University, Miami, FLDepartment of Mathematics, The National College, Jayanagar, Bangalore