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Thermal analysis of Casson rheological fluid with gold nanoparticles under the impact of gravitational and magnetic forces

Farooq HussainDepartment of Mathematical Sciences (FBAS) BUITEMS, Quetta, 87300, PakistanMubbashar NazeerDepartment of Mathematics, Institute of Arts and Sciences, Government College University Faisalabad Chiniot Campus, 35400, PakistanMohamed AltanjiDepartment of Mathematics, College of Science, King Khalid University, Abha 61413, Saudi ArabiaAdila SaleemDepartment of Mathematics, Riphah International University Faisalabad Campus, 38000, PakistanM. M. GhafarDepartment of Mathematics, Riphah International University Faisalabad Campus, 38000, Pakistan
2021en
ABI

Аннотация

This article articulately performs a comparative analysis on multiphase flow through a steep channel. Intuitive non-Newtonian particulate suspension is constituted by using Casson fluid as the base liquid and tiny size gold particles. Gravitational and magnetic effects are taken into account by considering a uniform inclined channel. Heating effects at the boundary of the channel also contribute to the shear-thinning phenomenon. An exaction is obtained for two-phase fluid flow with heat transfer. In addition to, Casson-gold flow with heat transfer which is a non-Newtonian suspension of particulate flow is compared with Newtonian-gold particulate flow. It is found that magnetized Newtonian particulate suspension through the inclined channel is more prominent for it experiences less skin friction along with more shear-thinning effects. However, Casson fluid is found to be a very useful suspension for the process of coatings and fabrication, etc. Moreover, the magnetic field acts like a resistive force on the motion of both phases. More energy is added to the system due to strong viscous dissipation.

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