New PDF release: Advances in new heat transfer fluids : from numerical to

By Alina Adriana Minea

ISBN-10: 1498751857

ISBN-13: 9781498751858

ISBN-10: 1498751865

ISBN-13: 9781498751865

Warmth move enhancement has visible 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 Techniques comprises either theoretical and functional insurance

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

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Experimental investigation of thermal–rheological properties and heat transfer behavior of the heat transfer oil–copper oxide (HTO–CuO) nanofluid in smooth tubes. Experimental Thermal and Fluid Science 68:681–688. Allen, E and P Smith. 2001. A review of particle agglomeration. Surfaces 85(86):87. Asirvatham, LG, N Vishal, SK Gangatharan, and DM Lal. 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.

In summary, based on the entropy generation studies reviewed, the following were stated: (1) depending on the nanoparticle volume fraction, channel size, and type of flow regime, employing nanofluids can be beneficial in system optimization; (2) different sets of models to calculate the thermophysical properties of nanofluids may generate opposite predictions for entropy generation; and (3) when just considering the viscous effects in microchannels, it was noticed that adding nanoparticles increases entropy generation.

Experimental investigation of heat transfer coefficient and friction factor of ethylene glycol water based TiO2 nanofluid in double pipe heat exchanger with and without helical coil inserts. International Communications in Heat and Mass Transfer 50:68–76. Saeedinia, M, MA Akhavan-Behabadi, and P Razi. 2012. Thermal and rheological characteristics of CuO– base oil nanofluid flow inside a circular tube. International Communications in Heat and Mass Transfer 39(1):152–159. Sahin, B, GG Gültekin, E Manay, and S Karagoz.

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


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