Numerical spectral examination of EMHD mixed convective flow of second-grade nanofluid towards a vertical Riga plate using an advanced version of the revised Buongiorno’s nanofluid model
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Springer Science and Business Media LLC
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https://link.springer.com/content/pdf/10.1007/s10973-020-09865-8.pdf
Reference53 articles.
1. Choi SUS. Enhancing thermal conductivity of fluids with nanoparticles. Dev Appl Non-Newt Flows. 1995;2:99–105.
2. Masuda H, Ebata A, Teramae K, Hishinuma N. Alteration of thermal conductivity and viscosity of liquid by dispersing ultra-fine particles. Netsu Bussei. 1993;7:227–33.
3. Buongiorno J, Hu W. Nanofluid coolants for advanced nuclear power plants. In :Proceedings of ICAPP-05 Seoul. 2005; 5705.
4. Aziz A, Khan WA. Natural convective boundary layer flow of a nanofluid past a convectively heated vertical plate. Int J Therm Sci. 2012;52:83–90.
5. Khan WA, Aziz A, Uddin N. Buongiorno model for nanofluid Blasius flow with surface heat and mass fluxes. J Therm Heat Trans. 2013;27:134–41.
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