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Double diffusive convection in a dissipative electrically conducting nanofluid under orthogonal electrical and magnetic fields : a numerical study

Umavathi, JC; Beg, OA

Double diffusive convection in a dissipative electrically conducting nanofluid under orthogonal electrical and magnetic fields : a numerical study Thumbnail


Authors

JC Umavathi



Abstract

Two-dimensional double-diffusive convective flow in a duct is studied numerically. The duct is filled with electrically conducting nanofluid and subjected to mutually orthogonal static electrical and magnetic fields. The one-phase Tiwari-Das model is employed to simulate nanoscale effects. The study is conducted for four different electroconductive nanofluids using water as a base fluid. The left and right plates of the enclosure are kept at different constant temperatures and concentrations. The top and bottom faces are insulated and impermeable to heat and mass transfer respectively. The transport equations describe the velocity, temperature and nanoparticle concentration fields. These coupled differential Navier-Stokes equations are nonlinear, and therefore discretized via a robust Finite Difference Method (FDM). The reduced difference equations are solved by incorporating the Successive-Over-Relaxation (SOR) method.
The results are shown graphically for various governing parameters. The skin friction, Nusselt
and Sherwood numbers for the impact of selected electromagnetic, nanoscale and
thermophysical parameters are computed. The study is relevant to thermal power technologies,
bioelectromagnetic therapy and nuclear engineering heat transfer control.

Citation

Umavathi, J., & Beg, O. (2021). Double diffusive convection in a dissipative electrically conducting nanofluid under orthogonal electrical and magnetic fields : a numerical study. Nanoscience and Technology: An International Journal, 12(2), 59-90. https://doi.org/10.1615/NanoSciTechnolIntJ.2021036786

Journal Article Type Article
Acceptance Date Dec 29, 2020
Online Publication Date Apr 2, 2021
Publication Date Apr 2, 2021
Deposit Date Jan 8, 2021
Publicly Available Date Apr 2, 2022
Journal Nanoscience and Technology : An International Journal
Print ISSN 2572-4258
Electronic ISSN 2572-4266
Publisher Begell House
Volume 12
Issue 2
Pages 59-90
DOI https://doi.org/10.1615/NanoSciTechnolIntJ.2021036786
Publisher URL https://doi.org/10.1615/NanoSciTechnolIntJ.2021036786
Related Public URLs https://www.begellhouse.com/journals/nanoscience-and-technology.html

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NANOSCI TECH AN INT JOURNAL duct electro magnetic nanofluid convection Accepted Dec 29th 2020.pdf (2.4 Mb)
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