Developing a new correlation to estimate the thermal conductivity of MWCNT-CuO/water hybrid nanofluid via an experimental investigation
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Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/article/10.1007/s10973-017-6213-8/fulltext.html
Reference84 articles.
1. Choi SUS. Enhancing thermal conductivity of fluids with nanoparticles. ASME-Publ-Fed. 1995;231:99–106.
2. Baratpour M, Karimipour A, Afrand M, Wongwises S. Effects of temperature and concentration on the viscosity of nanofluids made of single-wall carbon nanotubes in ethylene glycol. Int Commun Heat Mass Transfer. 2016;74:108–13.
3. Esfe MH, Rostamian H, Afrand M, Karimipour A, Hassani M. Modeling and estimation of thermal conductivity of MgO–water/EG (60: 40) by artificial neural network and correlation. Int Commun Heat Mass Transfer. 2015;68:98–103.
4. Hamed E, Afrand M. An experimental study on rheological behavior of non-Newtonian hybrid nano-coolant for application in cooling and heating systems. Exp Therm Fluid Sci. 2016;76:221–7.
5. Esfe MH, Afrand M, Karimipour A, Yan WM, Sina N. An experimental study on thermal conductivity of MgO nanoparticles suspended in a binary mixture of water and ethylene glycol. Int Commun Heat Mass Transf. 2015;67:173–5.
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