Convective flow of alumina–water nanofluid in a square vessel in presence of the exothermic chemical reaction and hydromagnetic field
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference27 articles.
1. Numerical analysis of natural convective heat transport of copper oxide-water nanofluid flow inside a quadrilateral vessel;Uddin;Heliyon,2019
2. Experimental study on the effect of nanoparticle migration on the convective heat transfer coefficient of EG/Water-based Al2O3 nanofluids;Choi;Int. J. Heat Mass Tran.,2021
3. Numerical and experimental investigations of hybrid nanofluids on pulsating heat pipe performance;Zufar;Int. J. Heat Mass Tran.,2020
4. An investigation of layering phenomenon at the liquid–solid interface in Cu and CuO based nanofluids;Milanese;Int. J. Heat Mass Tran.,2016
5. Field synergy analysis on flow and heat transfer characteristics of nanofluid in microchannel with non-uniform cavities configuration;Li;Int. J. Heat Mass Tran.,2019
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