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Renewable & sustainable energy reviews, ISSN 1364-0321, 2010, Volume 14, Issue 2, pp. 629 - 641
Convective heat transfer | Nanoparticles | Turbulent flow | Laminar flow | Nanofluid | Thermal conductivity | Dispersion | Science & Technology - Other Topics | Green & Sustainable Science & Technology | Technology | Energy & Fuels | Science & Technology | Properties and use of thermal fluids | Energy | Exact sciences and technology | Applied sciences | Theoretical studies. Data and constants. Metering | Energy. Thermal use of fuels | Heat transfer | Nanofluid Convective heat transfer Laminar flow Turbulent flow Nanoparticles Dispersion Thermal conductivity | Mechanical engineering | Turbulence | Plumes (Fluid dynamics)
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Progress in nuclear energy (New series), ISSN 0149-1970, 07/2013, Volume 66, pp. 13 - 24
Research gap | Review | Nanofluid | Application | Technology | Nuclear Science & Technology | Science & Technology | Thermal properties | International cooperation | Nanotechnology | Boundary layer | Electric properties | Nuclear facilities | Convective heat transfer | Nanoparticles | Nanocomposites | Nanomaterials | Nanostructure | Boiling | Heat flux | Heat transfer | Nanofluids
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International journal of heat and mass transfer, ISSN 0017-9310, 2007, Volume 50, Issue 13, pp. 2545 - 2556
Heat transfer optimization | Entransy | Dissipation | Extremum principle of entransy dissipation | Thermodynamics | Engineering | Physical Sciences | Technology | Mechanics | Engineering, Mechanical | Science & Technology | Heat conduction | Convective and constrained heat transfer | Fundamental areas of phenomenology (including applications) | Physics | Heat transfer | Exact sciences and technology
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Experimental thermal and fluid science, ISSN 0894-1777, 2011, Volume 35, Issue 6, pp. 873 - 886
Macroscale | Confinement | Convective boiling | Critical heat flux | Microscale | Thermodynamics | Engineering | Physical Sciences | Physics, Fluids & Plasmas | Technology | Engineering, Mechanical | Physics | Science & Technology | Applied sciences | Theoretical studies. Data and constants. Metering | Energy. Thermal use of fuels | Energy | Heat transfer | Exact sciences and technology | Thin films | Advertising campaigns | Dielectric films | Analysis | Asymptotic properties | Mathematical models | Boiling | Slug flow | Heat transfer coefficients | Channels
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Convective heat transfer of Cu–water nanofluid in a cylindrical microchannel heat sink
Energy conversion and management, ISSN 0196-8904, 09/2015, Volume 101, pp. 515 - 524
Convective heat transfer | Nanoparticles | Cu–water nanofluid | Microchannel | Cu-water nanofluid | Mechanics | Thermodynamics | Physical Sciences | Technology | Energy & Fuels | Science & Technology | Electronic devices | Fluid dynamics | CONVECTION | Nanofluids | Nanostructure | LAMINAR FLOW | Microchannels | MICROSTRUCTURES | ELECTRONIC PRODUCTS | Pressure drop | FLUIDITY | FLUID FLOW | Copper | Heat sinks | Heat transfer | WATER
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International journal of heat and mass transfer, ISSN 0017-9310, 08/2015, Volume 87, pp. 636 - 652
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Experimental thermal and fluid science, ISSN 0894-1777, 04/2012, Volume 38, pp. 54 - 60
Heat transfer enhancement | Al2O3–Cu hybrid nano particles | Friction factor | Hydrogen reduction technique | Laminar flow | Hybrid nanofluid | Thermodynamics | Engineering | Physical Sciences | Physics, Fluids & Plasmas | Technology | Engineering, Mechanical | Physics | Science & Technology | Exact sciences and technology | Condensed matter: structure, mechanical and thermal properties | Thermal properties of condensed matter | Energy. Thermal use of fuels | Colloidal state and disperse state | Chemistry | Physical and chemical studies. Granulometry. Electrokinetic phenomena | Energy | Applied sciences | Theoretical studies. Data and constants. Metering | General and physical chemistry | Thermal properties of small particles, nanocrystals, nanotubes | Heat transfer | Convective heat transfer | Scanning electron microscopy | Nusselt number | Fluid dynamics | Nanofluids | PARTICLE SIZE AND SHAPE | ALUMINUM OXIDE | Nanomaterials | HEAT TRANSFER | COMPOSITES | Nanostructure | MICROSTRUCTURES | Nanocomposites | FLUIDITY | FLUID FLOW | WATER
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Applied thermal engineering, ISSN 1359-4311, 10/2015, Volume 89, pp. 299 - 305
Heat generation | Semi-spherical fin | Convective–radiative fin | Least square method (LSM) | Collocation method (CM) | Convective-radiative fin | Mechanical engineering | Analysis | Methods | Radiation | Temperature distribution | Radiation effects | Mathematical analysis | Fins | Mathematical models | Runge-Kutta method | Heat transfer
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Energy conversion and management, ISSN 0196-8904, 10/2013, Volume 74, pp. 9 - 16
Analytical methods (DTM, collocation method, least square method) | Porous fin | Convective parameter | Temperature-dependent heat generation | Darcy number | Applied sciences | Theoretical studies. Data and constants. Metering | Energy. Thermal use of fuels | Energy | Heat transfer | Exact sciences and technology | Heat generation | Temperature distribution | Computer simulation | Dissipation | Silicon nitride | Mathematical models | Transformations
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