We experimentally demonstrate the tunable thermal property of a magnetically polarizable nanofluid that consists of a colloidal suspension of magnetite nanoparticles with average diameter of 6.7 nm. Controlling the linear aggregation length from nano- to micron scales, the thermal conductivity (TC) of the nanofluid has been enhanced up to 216%, using 4.5 vol % of nanoparticles. Repeated magnetic cycling shows that the TC enhancement is reversible. It has been confirmed that the large enhancement in TC is due to the efficient transport of heat through percolating nanoparticle paths. Our findings offer promising applications in "smart" cooling devices
This Final Year Project involves the experimental investigation of functional nanofluids and thermal...
Common heat transfer fluids have low thermal conductivities, which decrease their efficiency in many...
While robust progress has been made towards the practical use of nanofluids, uncertainties remain co...
We report the viscosity (η) and thermal conductivity (k) enhancement in a stable magnetic nanof...
The unusually large enhancement of thermal conductivity (k/kƒ~4.0, where k and kƒ are the thermal co...
We observe a dramatic enhancement of thermal conductivity in a nanofluid containing magnetite partic...
To probe the effect of particle size on thermal conductivity (<i>k</i>) enhancement in nanofluids, e...
Magnetic nanofluids possess some unique properties that can significantly affect their thermal condu...
Magnetite nanofluid is synthesized using continuous chemical process. Powderx-ray diffraction and tr...
Nanoparticles aggregation is considered, by the heat transfer community, as one of the main factors ...
Magnetic nanofluid (MNF) is one special kind of nanofluid which possesses both magnetic and fluid pr...
We investigate the temperature-dependent thermal conductivity (k) of aqueous and nonaqueous stable n...
We investigate the role of microconvection induced by Brownian motion of nanoparticles on thermal co...
In this review, we highlight some of the most recent studies that have led to a better understanding...
We synthesize multifunctional nanofluids by incorporating fluorescent dyes into magnetite nanopartic...
This Final Year Project involves the experimental investigation of functional nanofluids and thermal...
Common heat transfer fluids have low thermal conductivities, which decrease their efficiency in many...
While robust progress has been made towards the practical use of nanofluids, uncertainties remain co...
We report the viscosity (η) and thermal conductivity (k) enhancement in a stable magnetic nanof...
The unusually large enhancement of thermal conductivity (k/kƒ~4.0, where k and kƒ are the thermal co...
We observe a dramatic enhancement of thermal conductivity in a nanofluid containing magnetite partic...
To probe the effect of particle size on thermal conductivity (<i>k</i>) enhancement in nanofluids, e...
Magnetic nanofluids possess some unique properties that can significantly affect their thermal condu...
Magnetite nanofluid is synthesized using continuous chemical process. Powderx-ray diffraction and tr...
Nanoparticles aggregation is considered, by the heat transfer community, as one of the main factors ...
Magnetic nanofluid (MNF) is one special kind of nanofluid which possesses both magnetic and fluid pr...
We investigate the temperature-dependent thermal conductivity (k) of aqueous and nonaqueous stable n...
We investigate the role of microconvection induced by Brownian motion of nanoparticles on thermal co...
In this review, we highlight some of the most recent studies that have led to a better understanding...
We synthesize multifunctional nanofluids by incorporating fluorescent dyes into magnetite nanopartic...
This Final Year Project involves the experimental investigation of functional nanofluids and thermal...
Common heat transfer fluids have low thermal conductivities, which decrease their efficiency in many...
While robust progress has been made towards the practical use of nanofluids, uncertainties remain co...