Alina Adriana Minea's Advances in new heat transfer fluids : from numerical to PDF

By Alina Adriana Minea

ISBN-10: 1498751857

ISBN-13: 9781498751858

ISBN-10: 1498751865

ISBN-13: 9781498751865

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 sensible insurance

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Extra resources for Advances in new heat transfer fluids : from numerical to experimental techniques

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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. 57–96. Jang, SP and SUS Choi. 2007. Effects of various parameters on nanofluid thermal conductivity.

2009. Experimental study on forced convective heat transfer with low volume fraction of CuO/water nanofluid. Energies 2(1):97–119. Azizian, R, E Doroodchi, T McKrell et al. 2014. Effect of magnetic field on laminar convective heat transfer of magnetite nanofluids. International Journal of Heat and Mass Transfer 68:94–109. Azmi, WH, KV Sharma, R Mamat, and S Anuar. 2014a. Turbulent forced convection heat transfer of nanofluids with twisted tape insert in a plain tube. Energy Procedia 52:296–307.

Kayhani, MH, H Soltanzadeh, MM Heyhat, M Nazari, and F Kowsary. 2012. Experimental study of convective heat transfer and pressure drop of TiO2/water nanofluid. International Communications in Heat and Mass Transfer 39(3):456–462. Keblinski, P, SR Phillpot, SUS Choi, and JA Eastman. 2002. Mechanisms of heat flow in suspensions of nanosized particles (nanofluids). International Journal of Heat and Mass Transfer 45(4):855–863. Khanafer, K and K Vafai. 2011. A critical synthesis of thermophysical characteristics of nanofluids.

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Advances in new heat transfer fluids : from numerical to experimental techniques by Alina Adriana Minea

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