Experimental study on the dynamic viscosity of hydraulic oil HLP 68- Fe3O4-TiO2-GO ternary hybrid nanofluid and modeling utilizing machine learning technique
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering,General Chemistry
Reference81 articles.
1. Enhancing thermal conductivity of fluids with nanoparticles;Choi,1995
2. Effects of roughness and radius of nanoparticles on the condensation of nanofluid structures with molecular dynamics simulation: statistical approach;Cui;J Taiwan Inst Chem Eng,2021
3. Retrofitting a thermoelectric-based solar still integrated with an evacuated tube collector utilizing an antibacterial-magnetic hybrid nanofluid;Sadeghi;Desalination,2021
4. Hybrid nanofluids with temperature-dependent properties for use in double-layered microchannel heat sink; hydrothermal investigation;Sarvar-Ardeh;J Taiwan Inst Chem Eng,2021
5. Thermal efficiency of flat plate thermosyphon solar water heater with nanofluids;Darbari;J Taiwan Inst Chem Eng,2021
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