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HEAT AND MASS TRANSFER ANALYSIS OF UNSTEADY NON-NEWTONIAN FLUID FLOW BETWEEN POROUS SURFACES IN THE PRESENCE OF MAGNETIC NANOPARTICLES

Volume 20, Edição 12, 2017, pp. 1137-1154
DOI: 10.1615/JPorMedia.v20.i12.60
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RESUMO

Nanofluids with magnetic nanoparticles have distinguished useful applications in nanotechnology and biotechnology. This study presents an analysis of flow and heat transfer effects for the Casson nanofluid through orthogonally moving porous disks in the presence of an external magnetic field. Buongiorno's two-phase model has been employed for the mathematical modeling of the problem, in which the slip mechanism of the nanoparticles affects the concentration and thermal profiles. Governing partial differential equations are converted into nonlinear ordinary ones which are solved numerically by using the shooting technique. Influence of the relevant parameters on the physical quantities (like the skin friction coefficient, the Nusselt number, and the Sherwood number), and the velocity, temperature, as well as the nanoparticles concentration profiles, have been studied through tables and graphs.

CITADO POR
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  2. Khan Umair, Mebarek-Oudina Fateh, Zaib Aurang, Ishak Anuar, Abu Bakar Sakhinah, Sherif El-Sayed M., Baleanu Dumitru, An exact solution of a Casson fluid flow induced by dust particles with hybrid nanofluid over a stretching sheet subject to Lorentz forces, Waves in Random and Complex Media, 2022. Crossref

  3. Raza Qadeer, Qureshi M. Zubair Akbar, Ali Bagh, Hussein Ahmed Kadhim, Khan Behzad Ali, Shah Nehad Ali, Weera Wajaree, Morphology of Hybrid MHD Nanofluid Flow through Orthogonal Coaxial Porous Disks, Mathematics, 10, 18, 2022. Crossref

  4. Qureshi M Zubair Akbar, Faisal M, Raza Qadeer, Ali Bagh, Botmart Thongchai, Shah Nehad Ali, Morphological nanolayer impact on hybrid nanofluids flow due to dispersion of polymer/CNT matrix nanocomposite material, AIMS Mathematics, 8, 1, 2023. Crossref

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