Influence of chevron angle and MWCNT/distilled water nanofluid on the thermo-hydraulic performance of compact plate heat exchanger: An experimental and numerical study
Author:
Funder
DRDO
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference64 articles.
1. Heat transfer analysis of Ga-in-Sn in a compact heat exchanger equipped with straight micro-passages;Sarafraz;Int. J. Heat Mass Transf.,2019
2. Simulation of water/FMWCNT nanofluid forced convection in a microchannel filled with porous material under slip velocity and temperature jump boundary conditions;Gholamalizadeh;Int. J. Num. Methods Heat Fluid Flow.,2019
3. A detailed hydrothermal investigation of a helical micro double-tube heat exchanger for a wide range of helix pitch length;Abu-Hamdeh;Case Stud. Thermal Eng.,2021
4. Heat transfer of water-based carbon nanotube nanofluids in the shell and tube cooling heat exchangers of the gasoline product of the residue fluid catalytic cracking unit;Masoud Hosseini;J. Therm. Anal. Calorim.,2020
5. Cooling performance investigation of electronics cooling system using Al2O3–H2O nanofluid;Sohel;Int. Commun. Heat Mass Transf.,2015
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