Results 31 to 40 of about 753 (172)
Comparative study of natural convection of a ternary hybrid nanofluid in enclosures
The natural convective flow and heat transfer characteristics of a ternary hybrid nanofluid inside enclosures are examined under the influence of a magnetic field. Dimensionless equations of the physical domain are transformed into a set of equations of the computational domain using coordinate transformations and solved using the finite difference ...
Nepal Chandra Roy +3 more
openaire +1 more source
Mechanism of wettability alteration, interfacial tension reduction, and oil recovery by novel nanocomposite. Abstract The development of stable nanofluids (NFs) for enhanced oil recovery (EOR) relies on optimizing interactions between reservoir rocks and fluids.
Ehsan Jafarbeigi +2 more
wiley +1 more source
A barrier that researchers and scientists are currently trying to overcome is the low thermal conductivity that occurs during heat transmission procedures. As a result, researchers are taking steps to improve the base fluid thermal conductivity by mixing
Talha Anwar +4 more
doaj +1 more source
The current work examines the dynamics of the stagnation point flow of an unsteady hybrid nanofluid (Fe2O3–Cu/H2O) across an inclined porous stretching surface. It considers heat transfer, second‐order slip, electrical field, heat source/sink, mixed convection, and magnetic field effects, as well as linear and nonlinear radiation.
Mazhar Hussain +4 more
wiley +1 more source
A computational study of unsteady MHD radiative nanofluid flow in a semi‐porous channel reveals that nanoparticle shape, volume fraction, and magnetic effects significantly influence velocity and heat transfer. Results highlight strong coupling between geometric, electromagnetic, and thermophysical parameters in optimizing thermal system performance ...
Mahmmoud M. Syam +2 more
wiley +1 more source
The intricate behavior of blood flow conveying multiple nanoparticles through micro-scale biological channels remains insufficiently understood, particularly under physiological conditions involving diverging and converging ciliary microvessels. A key challenge lies in capturing the combined effects of complex body forces and non-Newtonian fluid ...
Obalalu, A. M. +4 more
openaire +3 more sources
ABSTRACT Efficient thermal management in advanced industrial systems requires improved heat transfer performance, particularly under non‐Newtonian fluid behavior and complex surface geometries. This study investigates the two‐dimensional flow and heat transfer characteristics of ternary hybrid nanofluids over both stationary and moving wedge surfaces ...
A. O. Akindele +4 more
wiley +1 more source
The flow of boundary layer over porous wedge nanofluids, hybrid nanofluids, and ternary hybrid nanofluids under constant transverse magnetic field and heat radiation have all been examined.
S. Suresh Kumar Raju +7 more
doaj +1 more source
ABSTRACT This article investigates the Soret–Dufour cross‐diffusion effects on radiation‐absorptive unsteady free‐convection of magnetized nanofluids ( TiO2–water and Cu–water) flow over a vertical moving permeable plate. The model integrates thermal source, chemical reactions, porous resistance, and thermal radiation. The water‐based nanofluids mixing
B. Prabhakar Reddy +2 more
wiley +1 more source
Thin film flow facilitates efficient thermochemical and photochemical reactions by maximizing surface area and optimizing heat and mass transfer. This approach enhances reaction rates and energy absorption, benefiting applications like combustion systems,
Yongfeng Wang +6 more
doaj +1 more source

