Effect of radiation on laminar natural convection of nanofluid in a vertical channel with single- and two-phase approaches
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Springer Science and Business Media LLC
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http://link.springer.com/content/pdf/10.1007/s10973-019-08236-2.pdf
Reference68 articles.
1. Das S, Jana RN, Makinde OD. Transient natural convection in a vertical channel filled with nanofluids in the presence of thermal radiation. Alex Eng J. 2016;55:253–62.
2. Pantokratoras A. Natural convection along a vertical isothermal plate with linear and nonlinear Rosseland thermal radiation. Int J Therm Sci. 2014;84:151–7.
3. Hossain MA, Tashakor H. Radiation effect on mixed convection along a vertical plate with uniform surface temperature. Heat Mass Transf. 1996;31:243–9.
4. Das S, Mandal C, Jana RN. Effects of radiation on unsteady Couette flow between two vertical parallel plates. Int J Comput Appl. 2012;39:37–45.
5. Das K, Duari PR, Kundu PK. Numerical simulation of nanofluid flow with convective boundary condition. J Egypt Math Soc. 2015;23(2):435–9.
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