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Mohamed Altanji

Researcher at King Khalid University

Publications -  34
Citations -  295

Mohamed Altanji is an academic researcher from King Khalid University. The author has contributed to research in topics: Nanofluid & Boundary layer. The author has an hindex of 3, co-authored 15 publications receiving 35 citations.

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Heat transport investigation of magneto-hydrodynamics (SWCNT-MWCNT) hybrid nanofluid under the thermal radiation regime

TL;DR: In this paper, the authors examined the heat transfer attributes of magnetohydrodynamic hybrid nanofluid flow in the presence of radiation and found that the Nusselt number increases significantly for lower values of pressure and decreases for higher pressure gradients while keeping the radiation value at zero.
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Proposing novel “L” shaped fin to boost the melting performance of a vertical PCM enclosure

TL;DR: In this article, the effect of the orientation and dimensions of the "L" shaped fin on the melting performance and energy storage and exergy of a vertical PCM enclosure was investigated.
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Thermal analysis of Casson rheological fluid with gold nanoparticles under the impact of gravitational and magnetic forces

TL;DR: In this article, a comparative analysis on multiphase flow through a steep channel is performed by using Casson fluid as the base liquid and tiny size gold particles, and it is found that magnetized Newtonian particulate suspension through the inclined channel experiences less skin friction along with more shear-thinning effects.
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Heat transportation enrichment and elliptic cylindrical solution of time-dependent flow

TL;DR: In this article, the effects of heat transfer for a compressible time-dependent laminar flow pass the two distinctly positioned elliptic cylinders are examined numerically and the results of velocity distribution, pressure distribution, 2D temperature plots, isothermal contours, drag coefficient, streamlines and surface volume of fluid are discussed.
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Analysis of transport phenomenon in cross fluid using Cattaneo-Christov theory for heat and mass fluxes with variable viscosity

TL;DR: In this paper, the authors investigated the heat and mass diffusion by using Cattaneo-Christov model for the boundary layer 2D Cross nanofluid flow over the surface of parabola along with temperature dependent viscsoity.