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Numerical study of developing laminar forced convection of a nanofluid flow through the parallel plates with constant ...
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Numerical study of developing laminar forced convection of a nanofluid flow through the parallel plates with constant ...
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Abstract
Laminar flow forced convection of water/Al2O3 nanofluid between two parallel plates with constant wall temperature has been studied numerically. The flow assumed to be 2D, steady, incompressible and homogenous. The single phase model is used for simulating flow and heat transfer process of nanofluid. The heat transfer coefficient, Nusselt number and shear stress were obtained for different nanoparticles volume fraction as well as Reynolds numbers and wall temperature. Results indicate that the rate of convective Heat transfer coefficient and shear stress increases with increase in flow as well as increase in solid volume fraction of nanofluid. It is shown that in spite of increase in heat transfer with increase in wall temperature, the wall shear stress does not significantly change.
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International Category Code (ICC):
ICC-0202
Saeed Tavassolpour, Fereshteh Khodamrezaee, Amin Reza Noghrehabadi, A..
International Article Address (IAA):
IAA.ZONE/en8294en
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