2022
DOI: 10.3390/sym14112312
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Mathematical Entropy Analysis of Natural Convection of MWCNT—Fe3O4/Water Hybrid Nanofluid with Parallel Magnetic Field via Galerkin Finite Element Process

Abstract: Heat transfer in a symmetrical cavity with two semi-cylinders was explored in this study. Several parameters, such as (103≤Ra≤106), (10−5≤Da≤10−2), (0.02≤ϕ≤0.08), (0.2≤ε≤0.8), and (0≤Ha≤100) were selected and evaluated in this research. The outcome of the magnetic field and the temperature gradient on the nanofluid flow is considered. The geometric model is therefore described using a symmetry technique. The flow issue for the governing equations has been solved using the Galerkin finite element method (G-FEM)… Show more

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Cited by 19 publications
(1 citation statement)
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“…The Cata-neo-Christov doubly diffusion impact on Reiner-Philippoff fluid past an extendable surface was mathematically modeled by Sajid et al [46]. Ghali et al [47] used Galerkin finite element method to find heat simulation of water-based hybrid nanofluid flow with parallel magnetic field. By following these authors, many people believe that nanotechnology is most important factor for the next large industrial revolution of this century.…”
Section: Introductionmentioning
confidence: 99%
“…The Cata-neo-Christov doubly diffusion impact on Reiner-Philippoff fluid past an extendable surface was mathematically modeled by Sajid et al [46]. Ghali et al [47] used Galerkin finite element method to find heat simulation of water-based hybrid nanofluid flow with parallel magnetic field. By following these authors, many people believe that nanotechnology is most important factor for the next large industrial revolution of this century.…”
Section: Introductionmentioning
confidence: 99%