Experimental investigation of optimum thermal performance and pressure drop of water-based Al2O3, TiO2 and ZnO nanofluids flowing inside a circular microchannel

Author:

Topuz Adnan,Engin Tahsin,Alper Özalp A.,Erdoğan Beytullah,Mert Serdar,Yeter Alper

Funder

The Scientific and Technological Research Council Of Turkey

Publisher

Springer Science and Business Media LLC

Reference44 articles.

1. Choi SUS, Eastman JA. Enhancing thermal conductivity of fluids with nanoparticles. San Francisco: International Mechanical Engineering Congress and Exposition; 1995.

2. Şahin B, Çomaklı K, Çomaklı Ö, Yılmaz M, Nanoakışkanlar ile ısı transferinin iyileştirilmesi (Heat transfer rate improvement with nanofluids). Mühendis ve Makina, Cilt: 47, Sayı: 559, Sf: 29–34. 2006.

3. Saidur R, Leong KY, Mohammad HA. A review on applications and challenges of nanofluids. Renew Sustain Energy Rev. 2011;15:1646–68.

4. The other areas of utilization of nanofluids: NanoHEX Report Summary, cordis.europa.eu/project/rcn/92594_en.html. Access 04 Feb 2017.

5. Heyhat MM, Kowsary F, Rashidi AM, Momenpour MH, Amrollahi A. Experimental investigation of laminar convective heat transfer and pressure drop of water-based Al2O3 nanofluids in fully developed flow regime. Exp Thermal Fluid Sci. 2013;44:483–9.

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