Galerkin finite element analysis of thermal aspects of Fe3O4-MWCNT/water hybrid nanofluid filled in wavy enclosure with uniform magnetic field effect

A Mourad, A Aissa, F Mebarek-Oudina… - … Communications in Heat …, 2021 - Elsevier
In this contribution, a numerical investigation was made for heat transfer and steady
magneto-hydrodynamic natural convection in a fined cold wavy-walled porous enclosure …

[HTML][HTML] Water thermal enhancement in a porous medium via a suspension of hybrid nanoparticles: MHD mixed convective Falkner's-Skan flow case study

K Zhang, NA Shah, M Alshehri, S Alkarni… - Case Studies in Thermal …, 2023 - Elsevier
Keeping in mind the whispered applications of Falkner's-Skan Flows, the present
hydrothermal scrutinization intended to explore the two-dimensional flow pattern and …

Heat transfer and entropy generation analysis of water-Fe3O4/CNT hybrid magnetic nanofluid flow in a trapezoidal wavy enclosure containing porous media with the …

W Al-Kouz, A Abderrahmane, MD Shamshuddin… - The European Physical …, 2021 - Springer
The present study addresses theoretically and computationally the performance of
electrically conducting water-Fe 3 O 4/CNT hybrid nanofluid in three-dimensional free …

Second law analysis of a 3D magnetic buoyancy-driven flow of hybrid nanofluid inside a wavy cubical cavity partially filled with porous layer and non-Newtonian layer

A Abderrahmane, A Mourad, S Mohammed… - Annals of Nuclear …, 2023 - Elsevier
The current paper presents numerical results of the 3D buoyancy-driven flow of a hybrid
nanofluid in a cubical cavity in the presence of a magnetic field. The computational domain …

[HTML][HTML] Influence of buoyancy and viscous dissipation effects on 3D magneto hydrodynamic viscous hybrid nano fluid (MgO− TiO2) under slip conditions

S Li, S Akbar, M Sohail, U Nazir, A Singh… - Case Studies in Thermal …, 2023 - Elsevier
Owing to its bounteous applications in engineering and advanced industrial processes
magnetized hybrid Nano fluid influenced by suspended Nano-size particles got unusual …

[HTML][HTML] Darcy-Forchheimer flow of water conveying multi-walled carbon nanoparticles through a vertical cleveland Z-staggered cavity subject to entropy generation

G Rasool, AM Saeed, AI Lare, A Abderrahmane… - Micromachines, 2022 - mdpi.com
To date, when considering the dynamics of water conveying multi-walled carbon
nanoparticles (MWCNT) through a vertical Cleveland Z-staggered cavity where entropy …

[HTML][HTML] Entropy analysis of MHD hybrid nanoparticles with OHAM considering viscous dissipation and thermal radiation

F Waseem, M Sohail, N Ilyas, EM Awwad, M Sharaf… - Scientific Reports, 2024 - nature.com
This research explores the 3-D flow characteristics, entropy generation and heat
transmission behavior of nanofluids consisting of copper and titanium in water as they flow …

Thermal analysis on Darcy‐Forchheimer swirling Casson hybrid nanofluid flow inside parallel plates in parabolic trough solar collector: An application to solar aircraft

F Shahzad, W Jamshed… - … Journal of Energy …, 2021 - Wiley Online Library
As a try, this work has been focused in the way towards the effective contribution in the field
of solar aviation using renowned nanotechnology. After realizing the causes and effects of …

[HTML][HTML] Numerical simulations of heat generation, thermal radiation and thermal transport in water-based nanoparticles: OHAM study

F Waseem, M Sohail, SA Lone, G Chambashi - Scientific Reports, 2023 - nature.com
This study investigates the 3D flow properties and heat transfer of copper, titanium/water
nanofluids across a bidirectional surface under the impact of MHD. The thermophysical …

Analysis of nano-encapsulated phase change material confined in a double lid-driven hexagonal porous chamber with an obstacle under magnetic field

K Herouz, H Laidoudi, A Aissa, A Mourad… - Journal of Energy …, 2023 - Elsevier
The magnetohydrodynamics (MHD) mixed convection of nano-encapsulated phase change
material (NEPCM) contained within a double lid-driven hexagonal porous chamber …