Impact of heat source/sink on radiative heat transfer to Maxwell nanofluid subject to revised mass flux condition
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy
Reference33 articles.
1. Alteration of thermal conductivity and viscosity of liquid by dispersing ultra-fine particles (dispersion of γ-Al2O3, SiO2 and TiO2 ultra-fine particles);Masuda;Netsu Bussei,1993
2. Enhancing thermal conductivity of fluids with nanoparticles;Choi;ASME Int Mech Eng,1995
3. Momentum and heat transfer behaviour of Jeffrey, Maxwell and Oldroyd-B nanofluids past a stretching surface with non-uniform heat source/sink;Sandeep;Ain Shams Eng J,2016
4. Combined thermophoresis and Brownian motion effects on nanofluid free convection heat transfer in an L-shaped enclosure;Sheikholeslami;Chin J Phys,2017
5. Modeling and simulation for 3D magneto Eyring-Powell nanomaterial subject to nonlinear thermal radiation and convective heating;Khan;Results Phys,2017
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