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2013, Third edition., ISBN 0123869447, 905
The third edition of Radiative Heat Transfer describes the basic physics of radiation heat transfer. The book provides models, methodologies, and calculations... 
Energy Technology & Engineering | Radiative transfer | Heat | Transmission
eBook
2007, Space technology library, ISBN 1402051433, Volume SPTL 19., xxv, 234
Advances in understanding the behaviour of multiphase thermal systems could lead to higher efficiency energy production systems, but such advances have been... 
Measurement | Liquids | Heat | Two-phase flow | Effect of reduced gravity on | Transmission | Reduced gravity environments | Physics | Automotive and Aerospace Engineering, Traffic | Engineering | Mechanics, Fluids, Thermodynamics | Measurement Science, Instrumentation
Book
Renewable and Sustainable Energy Reviews, ISSN 1364-0321, 02/2016, Volume 54, pp. 1212 - 1239
Journal Article
1997, 2nd ed., Series in chemical and mechanical engineering, ISBN 9781560324850, xxix, 542
Book
1991, Mechanical engineering series, ISBN 0387975934, xx, 626
Book
1975, ISBN 0882752510, xiii, 242
Book
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 02/2016, Volume 93, pp. 566 - 583
This paper presents experimental results for the heat transfer coefficient during flow boiling of refrigerants R134a, R245fa and R600a inside small diameter... 
Heat transfer coefficient | Micro-scale channels | Two-phase flow | Convective flow boiling | 2-PHASE FLOW | GENERAL CORRELATION | FLUX | PART II | REFRIGERANTS | PREDICTION METHODS | SILICON MULTI-MICROCHANNELS | TRANSFER MODEL | ENGINEERING, MECHANICAL | EVAPORATION | MECHANICS | THERMODYNAMICS | R-134A
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 01/2016, Volume 92, pp. 1041 - 1052
One of the innovative methods of improving heat transfer characteristics of heat exchangers in solar systems is applying nanofluids as the heat transfer media.... 
Convective heat transfer | Two-phase modeling | Solar systems | Experimental study | Nanofluid | TRANSFER ENHANCEMENT | FORCED-CONVECTION | AL2O3 NANOFLUIDS | Nanofiuid | CARBON NANOTUBES | CIRCULAR TUBE | ENGINEERING, MECHANICAL | LAMINAR-FLOW | PRESSURE-DROP | MECHANICS | SINGLE-PHASE | THERMODYNAMICS | AQUEOUS SUSPENSIONS | WATER | Heating | Equipment and supplies
Journal Article
International Journal of Thermal Sciences, ISSN 1290-0729, 01/2020, Volume 147, p. 106117
Journal Article
11/2010, Space Technology Library, ISBN 9789048172931, Volume 19
Annotation Multiphase thermal systems have numerous applications in aerospace, heat-exchange, transport of contaminants in environmental systems, and energy... 
Heat | Two-phase Flow | Science | Reduced Gravity Environments
Web Resource
11/2010, Space Technology Library, ISBN 9789048172931, Volume 19
Annotation Multiphase thermal systems have numerous applications in aerospace, heat-exchange, transport of contaminants in environmental systems, and energy... 
Heat | Two-phase Flow | Science | Reduced Gravity Environments
Web Resource
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 2004, Volume 47, Issue 24, pp. 5181 - 5188
This paper reports an experimental work on the convective heat transfer of nanofluids, made of γ-Al O nanoparticles and de-ionized water, flowing through a... 
Convective heat transfer | Entrance region | Nanoparticles | Laminar flow | Nanofluids | FLUIDS | AUGMENTATION | TRANSFER ENHANCEMENT | LIQUID | laminar flow | THERMAL-CONDUCTIVITY | ENGINEERING, MECHANICAL | POLYSTYRENE SUSPENSIONS | convective heat transfer | TRANSPORT | MECHANICS | nanoparticles | SINGLE-PHASE | THERMODYNAMICS | nanofluids | entrance region | WATER
Journal Article
Advanced Powder Technology, ISSN 0921-8831, 04/2018, Volume 29, Issue 4, pp. 925 - 933
In this paper, the nanofluid heat transfer in microelectronic devices with wavy walls microchannels (Fig. 1.) has been simulated by two-phase model and... 
Two phase model | Wavy wall | Microchannel | Eulerian-Lagrangian | ENGINEERING, CHEMICAL | NATURAL-CONVECTION | TUBE | THERMAL-CONDUCTIVITY | FLOW
Journal Article