نویسندگان | Ali Akbar Abbasian Arani, Soroush Sadripour, Saeideh Kermani |
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نشریه | INT J MECH SCI |
ارائه به نام دانشگاه | University of Kashan |
شماره صفحات | 550-563 |
شماره مجلد | 128 |
نوع مقاله | Full Paper |
تاریخ انتشار | 2017 |
رتبه نشریه | ISI |
نوع نشریه | الکترونیکی |
کشور محل چاپ | ایران |
چکیده مقاله
In this paper, forced convection fluid flow and heat transfer of boehmite alumina – ethylene glycol and water mixture (50: 50) nanofluid in sinusoidal-wavy wall mini-channel with wall phase shift and variable wave length is studied. The two-dimensional governing equations are numerically solved in the domain by the control volume approach based on the SIMPLE technique. Reynolds numbers are considered in turbulent range of 6, 000 ≤ Re ≤ 15, 000, nanoparticles volume fraction between 0% and 0.04%, nanoparticles diameters from 20 to 60 nm and uniform wall temperature is applied on the walls. The optimization was carried out by us ing different nanoparticle shapes (spherical, spheroidal, platelets, blades, cylindrical and bricks) to reach the optimal nanoparticle shape with the maximum performance evaluation criterion (PEC). From this study, it is concluded that the thermal-hydraulic performance of mini-channel is greatly influenced by changing the shape of nanoparticles. Using spherical and spheroidal nanoparticles improves the thermal-hydraulic performances of mini-channel, while using non-spherical nanoparticle shapes (platelets, blades, cylindrical and bricks) leads to lower PEC in channel than the base fluid. The highest PEC was obtained for the nanoparticle volume fraction of