Optimization of Viscosity in MWCNT-MgO (35–65%)/5W50 Nanofluid and Comparison of Experimental Results with the Designed ANN
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://link.springer.com/content/pdf/10.1007/s13369-020-05001-8.pdf
Reference56 articles.
1. Wang, X.; Xu, X.; Choi, S.U.: Thermal conductivity of nanoparticle-fluid mixture. J. Thermophys. Heat Transf. 13(4), 474–480 (1999)
2. Salari, M.; Malekshah, E.H.; Esfe, M.H.: Three dimensional simulation of natural convection and entropy generation in an air and MWCNT/water nanofluid filled cuboid as two immiscible fluids with emphasis on the nanofluid height ratio's effects. J. Mol. Liq. 227, 223–233 (2017)
3. Esfe, M.H.; Saedodin, S.; Biglari, M.; Rostamian, H.: Experimental investigation of thermal conductivity of CNTs-Al2O3/water: a statistical approach. Int. Commun. Heat Mass Transfer 69, 29–33 (2015)
4. Esfe, M.H.; Yan, W.M.; Akbari, M.; Karimipour, A.; Hassani, M.: Experimental study on thermal conductivity of DWCNT-ZnO/water-EG nanofluids. Int. Commun. Heat and Mass Transfer 68, 248–251 (2015)
5. Esfe, M.H.; Hajmohammad, H.; Moradi, R.; Arani, A.A.A.: Multi-objective optimization of cost and thermal performance of double walled carbon nanotubes/water nanofluids by NSGA-II using response surface method. Appl. Therm. Eng. 112, 1648–1657 (2017)
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