Results 51 to 60 of about 1,377,185 (198)
Fabrication process of phase change microcapsules using a Pickering emulsion template method and their subsequent applications. The increasing demand for efficient thermal energy storage systems has driven the development of phase change material microcapsules (PCMMs), which provide high energy‐storage density, reversible phase change, and reduced ...
Ziyan Li +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
The current study investigated unsteady boundary layer flow of a Cu/H2O$$ \mathrm{Cu}/{\mathrm{H}}_2\mathrm{O} $$ nanofluid over an expanding sheet embedded in a Darcy porous medium, containing gyrotactic microorganisms. The model includes heat source effects, unsteadiness, buoyancy, slip conditions, and nanoparticle radius.
Mazhar Hussain +3 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
Ternary hybrid nanofluid have been revealed to possess a wide range of application disciplines reaching from biomedical engineering, detection of cancer, over or photovoltaic panels and cells, nuclear power plant engineering, to the automobile industry, smart cells and and eventually to heat exchange systems.
Hamid Qureshi +2 more
openaire +4 more sources
Thermal Behavior of Radiative Darcy–Forchheimer Nanofluid Flow With Heat Source/Sink Effects
Radiative Darcy–Forchheimer nanofluid flow in a porous medium is numerically analyzed with heat source/sink effects. Radiation enhances heat transfer and boundary layer thickness, while increasing Forchheimer resistance suppresses velocity, providing insights for optimizing thermal management in high‐temperature porous systems.
Avinash B. Raut +5 more
wiley +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
This study investigates the flow of ternary and hybrid nanofluids over a stretching wedge in a porous medium, incorporating quadratic thermal convection, Newtonian heating, and viscous dissipation. The hybrid nanofluid comprises magnesium and zinc oxides
Muhammad Ramzan +6 more
doaj +1 more source
The ternary-hybrid nanofluids are impressive sub-class of nanomaterials with enhanced thermal features. Based on such improved thermal characteristics, various applications of such materials are being predicted in the thermal efficiency systems ...
A. Abbasi +7 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

