Heat Transfer on Nanofluid Flow With Homogeneous-Heterogeneous Reactions and Internal Heat Generation

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Publication Details

Author list: Nandkeolyar R, Kameswaran PK, Shaw S, Sibanda P

Publisher: American Society of Mechanical Engineers (ASME)

Place: NEW YORK

Publication year: 2014

Journal: Journal of Heat Transfer (0022-1481)

Journal acronym: J HEAT TRANS-T ASME

Volume number: 136

Issue number: 12

Number of pages: 8

ISSN: 0022-1481

eISSN: 1528-8943

Languages: English-Great Britain (EN-GB)


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Abstract

We investigated heat and mass transfer on water based nanofluid due to the combined effects of homogeneous-heterogeneous reactions, an external magnetic field and internal heat generation. The flow is generated by the movement of a linearly stretched surface, and the nanofluid contains nanoparticles of copper and gold. Exact solutions of the transformed model equations were obtained in terms of hypergeometric functions. To gain more insights regarding subtle impact of fluid and material parameters on the heat and mass transfer characteristics, and the fluid properties, the equations were further solved numerically using the MATLAB bvp4c solver. The similarities and differences in the behavior, including the heat and mass transfer characteristics, of the copper-water and gold-water nanofluids with respect to changes in the flow parameters were investigated. Finally, we obtained the numerical values of the skin friction and heat transfer coefficients.


Keywords

heat generation, Homogeneous-Heterogeneous Reactions, nanofluids, Stretching sheet, volume fraction model


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Last updated on 2021-07-05 at 03:57