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In this book, the heat transfer of nanofluids in the presence of thermal radiation, heat source and non-Newtonian effects is investigated. When the nanoparticles are added to the pure fluid, the mixture which is called "Nanofluid" causes larger thermal conductivity compared to the base fluid. Most of engineering problems, especially some heat transfer equations are nonlinear, therefore some of them are solved using numerical solution such as the Fourth order Runge-Kutta Method, and some are solved using the different analytic method such as the Homotopy Perturbation Method (HPM), Homotopy…mehr

Produktbeschreibung
In this book, the heat transfer of nanofluids in the presence of thermal radiation, heat source and non-Newtonian effects is investigated. When the nanoparticles are added to the pure fluid, the mixture which is called "Nanofluid" causes larger thermal conductivity compared to the base fluid. Most of engineering problems, especially some heat transfer equations are nonlinear, therefore some of them are solved using numerical solution such as the Fourth order Runge-Kutta Method, and some are solved using the different analytic method such as the Homotopy Perturbation Method (HPM), Homotopy Analysis Method (HAM), Optimal Homotopy Analysis Method (OHAM), Adomian decomposition method (ADM).
Autorenporträt
Milad Alizadeh and Abdul Sattar Dogonchi are young researchers in Mechanical Engineering from Iran and their research interests are Nonlinear Heat Transfer, Analytical Methods and Nanofluids. Prof. D.D. Ganji has been selected as a Web of Science Highly Cited Researcher (Top 0.01%) in 2016, according to the reports of Thomson Reuters.