Title of article
Experimental study of forced convective heat transfer from a vertical tube conveying dilute Ag/DI water nanofluids in a cross flow of air
Author/Authors
Mohammadian, Shahabeddin Keshavarz Takestan Branch - Azad University , Layeghi, Mohammad Department of Wood and Paper Sciences - University of Tehran , Hemmati, Mansor Department of Wood and Paper Sciences - University of Tehran
Pages
8
From page
1
To page
8
Abstract
Forced convective heat transfer from a vertical circular tube conveying deionized (DI) water or very dilute Ag-DI
water nanofluids (less than 0.02% volume fraction) in a cross flow of air has been investigated experimentally. Some
experiments have been performed in a wind tunnel and heat transfer characteristics such as thermal conductance,
effectiveness, and external Nusselt number has been measured at different air speeds, liquid flow rates, and
nanoparticle concentrations. The cross flow of air over the tube and the liquid flow in the tube were turbulent in all
cases. The experimental results have been compared and it has been found that suspending Ag nanoparticles in
the base fluid increases thermal conductance, external Nusselt number, and effectiveness. Furthermore, by
increasing the external Reynolds number, the external Nusselt number, effectiveness, and thermal conductance
increase. Also, by increasing internal Reynolds number, the thermal conductance and external Nusselt number
enhance while the effectiveness decreases.
Keywords
Ag/DI water nanofluids , Forced convective heat transfer , Cross flow of air , Thermal conductance , Effectiveness
Journal title
Astroparticle Physics
Serial Year
2013
Record number
2478208
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