By Alina Adriana Minea
Warmth move enhancement has obvious swift improvement and common 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 Techniques includes either theoretical and useful insurance
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Additional info for Advances in new heat transfer fluids : from numerical to experimental techniques
Experimental investigation on the heat transfer properties of Al2O3 nanofluids using the mixture of ethylene glycol and water as base fluid. Powder Technology 230:14–19. Zamzamian, A, SN Oskouie, A Doosthoseini, A Joneidi, and M Pazouki. 2011. Experimental investigation of forced convective heat transfer coefficient in nanofluids of Al2O3/EG and CuO/EG in a double pipe and plate heat exchangers under turbulent flow. Experimental Thermal and Fluid Science 35(3):495–502. Zeinali Heris, S, SG Etemad, and MN Esfahany.
2006 Heris et al. 11. 0 30 d TiO2 a b c d 150 Material Cu SiO2 Al2O3 TiO2 100 50 5,000 10,000 15,000 20,000 Ref Li and Xuan 2002 Azmi et al. 2013 Pak and Cho 1998 Azmi et al. 12 for various nanofluids in turbulent flow. 3 Hwang et al. 22 in laminar flow. 0 Azmi et al. 0 Azmi et al. 024 5,000 Water Azmi et al. 25 in turbulent flow. • The possibility for nanofluid heat transfer enhancement can be evaluated from the values of ER, given by (μr − 1)/(kr − 1), for laminar and turbulent conditions. • Higher values of nanofluid thermal conductivity may not be the only mechanism responsible for heat transfer enhancement, as observed by certain investigators in the case of Al2O3 and CuO nanofluids.
Influence of Metal and Metal Oxide Nanofluid Properties on Forced Convection Heat Transfer 23 Hamilton, RL and OK Crosser. 1962. Thermal conductivity of heterogeneous two-component systems. Industrial & Engineering Chemistry Fundamentals 1(3):182–191. He, Y, Y Jin, H Chen et al. 2007. Heat transfer and flow behaviour of aqueous suspensions of TiO2 nanoparticles (nanofluids) flowing upward through a vertical pipe. International Journal of Heat and Mass Transfer 50(11):2272–2281. Ho, CJ and YJ Lin.
Advances in new heat transfer fluids : from numerical to experimental techniques by Alina Adriana Minea