Download PDF by Alina Adriana Minea: 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 noticeable fast 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 includes either theoretical and sensible insurance

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2014. A brief review on viscosity of nanofluids. International Nano Letters 4(4):109–120. Mojarrad, MS, A Keshavarz, M Ziabasharhagh, and MM Raznahan. 2014. Experimental investigation on heat transfer enhancement of alumina/water and alumina/water–ethylene glycol nanofluids in thermally developing laminar flow. Experimental Thermal and Fluid Science 53:111–118. Murshed, SMS. 2011a. Simultaneous measurement of thermal conductivity, thermal diffusivity, and specific heat of nanofluids. Heat Transfer Engineering 33(8):722–731.

2012. A review on nanofluids: Preparation, stability mechanisms, and applications. Journal of Nanomaterials 2012:17. Yu, W, H Xie, Y Li, L Chen, and Q Wang. 2012. 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.

An empirical equation of the relative viscosity of polymer melts filled with various inorganic fillers. Rheologica Acta 20(2):207–209. Kleinstreuer, C and Y Feng. 2011. Experimental and theoretical studies of nanofluid thermal conductivity enhancement: A review. Nanoscale Research Letters 6(1):439. Koo, J and C Kleinstreuer. 2004. A new thermal conductivity model for nanofluids. Journal of Nanoparticle Research 6(6):577–588. Koo, J and C Kleinstreuer. 2005. Impact analysis of nanoparticle motion mechanisms on the thermal conductivity 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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