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Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 04/2013, Volume 20, pp. 23 - 35
Journal Article
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 02/2017, Volume 68, pp. 185 - 198
In the past decade, research on nanofluids has been increased rapidly and reports reveal that nanofluids are beneficial heat transfer fluids for engineering... 
Thermal properties | Friction factor | Hybrid nanofluids | Enhancement | Heat transfer | GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY | TUBE | TRANSFER ENHANCEMENT | THERMOPHYSICAL PROPERTIES | ENERGY & FUELS | VISCOSITY | CARBON NANOTUBES | PRESSURE-DROP | MAGNETITE NANOPARTICLES | CONDUCTIVITY | AQUEOUS NANOFLUIDS | WATER | Mechanical engineering | Electric properties
Journal Article
Scientific Reports, ISSN 2045-2322, 04/2014, Volume 4, Issue 1, p. 4039
We report a new type of magnetic nanofluids, which is based on a hybrid composite of nanodiamond and nickel (ND-Ni) nanoparticles. We prepared the... 
FLUIDS | ETHYLENE-GLYCOL | HEAT-TRANSFER | TEMPERATURE | SUSPENSIONS | MULTIDISCIPLINARY SCIENCES | VOLUME FRACTION | AL2O3 | CARBON NANOTUBES | Viscosity | Ethylene glycol | Ethylene | X-ray diffraction | Optics | Electron microscopy | Nickel chloride | Nanoparticles | Diffraction | Transmission electron microscopy | Magnetic resonance imaging | Sodium | Temperature effects | Nickel | Heat transfer
Journal Article
International Communications in Heat and Mass Transfer, ISSN 0735-1933, 05/2013, Volume 44, pp. 7 - 14
Experimental investigations and theoretical determination of effective thermal conductivity and viscosity of magnetic Fe3O4/water nanofluid are reported in... 
Thermal conductivity | Absolute viscosity | Nanofluid | Magnetic nanoparticles | FLUIDS | SUSPENSIONS | SIZE | WIRE | FLOW | NANOPARTICLES | TRANSPORT | MECHANICS | THERMODYNAMICS | TEMPERATURE | ENHANCEMENT
Journal Article
International Communications in Heat and Mass Transfer, ISSN 0735-1933, 03/2014, Volume 52, pp. 73 - 83
In the present experimental work, the convective heat transfer coefficient and friction factor for fully developed turbulent flow of MWCNT–Fe3O4/water hybrid... 
Heat transfer enhancement | Viscosity | MWCNT–Fe3O4 nanocomposite | In-situ method | Friction factor | Hybrid nanofluid | Magnetic properties | MWCNT-Fe | nanocomposite | TUBE | CARBON NANOTUBES | LAMINAR-FLOW | REGION | NANOPARTICLES | MECHANICS | THERMODYNAMICS | MWCNT-Fe3O4 nanocomposite | Turbulence | Turbulent flow | Fluid dynamics | Distilled water | Fluid flow | Nanostructure | Nanofluids | Heat transfer
Journal Article
International Communications in Heat and Mass Transfer, ISSN 0735-1933, 08/2016, Volume 76, pp. 245 - 255
Nanodiamond–water nanofluids were prepared and estimated the thermal conductivity, viscosity and also estimated their potential use in heat transfer... 
Thermal conductivity | Nanodiamond | Viscosity enhancement | Nanofluids | MECHANICS | THERMODYNAMICS | HEAT-TRANSFER | SUSPENSIONS | AL2O3 | Turbulence | Analysis | Viscosity | Laminar flow | Mathematical models | Nanostructure | Mass transfer | Heat transfer
Journal Article
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 09/2013, Volume 25, pp. 670 - 686
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 03/2014, Volume 70, pp. 224 - 234
Journal Article
International Communications in Heat and Mass Transfer, ISSN 0735-1933, 12/2013, Volume 49, pp. 17 - 24
Thermal conductivity of ethylene glycol and water mixture based Fe3O4 nanofluid has been investigated experimentally. Magnetic Fe3O4 nanoparticles were... 
Thermal conductivity | Nanofluid | Co-precipitation | Magnetic nanoparticles | FLUIDS | MECHANICS | THERMODYNAMICS | HEAT-TRANSFER | ENHANCEMENT | VISCOSITY | Nanoparticles | Ethylene glycol | Computational fluid dynamics | Nanocomposites | Nanomaterials | Nanostructure | Heat transfer | Nanofluids
Journal Article
International Communications in Heat and Mass Transfer, ISSN 0735-1933, 08/2014, Volume 56, pp. 86 - 95
In this work nanofluids have been prepared by dispersing Al2O3 nanoparticles in different base fluids such as 20:80%, 40:60% and 60:40% by weight of ethylene... 
Viscosity | Thermal conductivity | Ethylene glycol–water mixture | Nanofluid | Enhancement | Ethylene glycol-water mixture | MECHANICS | THERMODYNAMICS | TEMPERATURE | SUSPENSIONS | PARTICLE-SIZE | TIO2
Journal Article
International Communications in Heat and Mass Transfer, ISSN 0735-1933, 02/2013, Volume 41, pp. 41 - 46
Thermal conductivity of ethylene glycol and water mixture based Al2O3 and CuO nanofluids has been estimated experimentally at different volume concentrations... 
Thermal conductivity | Zeta potential | Enhancement | Al2O3 and CuO nanofluids | and CuO nanofluids | NANOPARTICLES | MECHANICS | THERMODYNAMICS | TEMPERATURE
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 03/2010, Volume 53, Issue 7-8, pp. 1409 - 1416
The thermophysical properties like thermal conductivity and viscosity of Al O nanofluid is determined through experiments at different volume concentrations... 
Heat transfer enhancement | Nanofluid pressure drop | Turbulent forced convection in a tube | Twisted tape insert | Aluminum oxide nanofluid | FLUIDS | SUSPENSIONS | CONVECTION | THERMAL-CONDUCTIVITY ENHANCEMENT | ENGINEERING, MECHANICAL | LAMINAR-FLOW | PRESSURE-DROP | NANOPARTICLES | MECHANICS | THERMODYNAMICS | WATER
Journal Article
International Communications in Heat and Mass Transfer, ISSN 0735-1933, 04/2016, Volume 73, pp. 62 - 74
Nanodiamond (ND) attached with magnetite (Fe3O4) nanoparticles have been synthesized successfully by in-situ and chemical reduction of Fe3+ and Fe2+ cations on... 
In-situ method | Electrical property | Thermal property | Nanocomposite material | Enhancement | Nanofluids | FLUIDS | FE3O4 NANOFLUID | HEAT-TRANSFER | SUSPENSIONS | DIAMOND | NANOCOMPOSITES | MECHANICS | ETHYLENE-GLYCOL | THERMODYNAMICS | VOLUME FRACTION | WATER MIXTURE
Journal Article