By Alina Adriana Minea
Warmth move enhancement has obvious speedy improvement and frequent use in either traditional and rising technologies. Improvement of warmth move fluids calls for a stability among experimental and numerical paintings in nanofluids and new refrigerants. spotting the uncertainties in improvement of recent warmth move fluids, Advances in New warmth move Fluids: From Numerical to Experimental Techniques comprises either theoretical and useful assurance
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Warmth move enhancement has obvious speedy improvement and frequent use in either traditional and rising technologies. Improvement of warmth move fluids calls for a stability among experimental and numerical paintings in nanofluids and new refrigerants. spotting the uncertainties in improvement of latest warmth move fluids, Advances in New warmth move Fluids: From Numerical to Experimental options includes either theoretical and functional insurance
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Extra info for Advances in new heat transfer fluids : from numerical to experimental techniques
Journal of Applied Physics 103(7):074301. Ghadimi, A, R Saidur, and HSC Metselaar. 2011. A review of nanofluid stability properties and characterization in stationary conditions. International Journal of Heat and Mass Transfer 54(17):4051–4068. Gnielinski, V. 1976. New equations for heat and mass-transfer in turbulent pipe and channel flow. International Chemical Engineering 16(2):359–368. Godson, L, B Raja, D Mohan Lal, and S Wongwises. 2010. Enhancement of heat transfer using nanofluids—An overview.
Influence of Metal and Metal Oxide Nanofluid Properties on Forced Convection Heat Transfer 15 concentration. Vajjha et al. 24) In a similar manner, Sharma et al. 25) Based on the investigations on nanofluid flow and heat transfer performed by various researchers, the following observations can be made: • The surface temperature of the tube with nanofluid flow is lower than with water. • The flow velocity of nanofluids is lower than that of the base fluid for the same mass. • The nanofluid convection HTC is greater than that of the base fluid under similar operating conditions of flow and temperature.
Hussein, AM, KV Sharma, RA Bakar, and K Kadirgama. 2014b. A review of forced convection heat transfer enhancement and hydrodynamic characteristics of a nanofluid. Renewable and Sustainable Energy Reviews 29:734–743. Hwang, KS, SP Jang, and SUS Choi. 2009. Flow and convective heat transfer characteristics of water-based Al2O3 nanofluids in fully developed laminar flow regime. International Journal of Heat and Mass Transfer 52(1):193–199. Ibrahim, HA. 2012. Fouling in heat exchangers. ). InTech. Croatia, pp.
Advances in new heat transfer fluids : from numerical to experimental techniques by Alina Adriana Minea