Impact of Nanofluid Flow over an Elongated Moving Surface with a Uniform Hydromagnetic Field and Nonlinear Heat Reservoir

Complexity 2021:1-9 (2021)
  Copy   BIBTEX

Abstract

The increasing global demand for energy necessitates devoted attention to the formulation and exploration of mechanisms of thermal heat exchangers to explore and save heat energy. Thus, innovative thermal transport fluids require to boost thermal conductivity and heat flow features to upsurge convection heat rate, and nanofluids have been effectively employed as standard heat transfer fluids. With such intention, herein, we formulated and developed the constitutive flow laws by utilizing the Rossland diffusion approximation and Stephen’s law along with the MHD effect. The mathematical formulation is based on boundary layer theory pioneered by Prandtl. Governing nonlinear partial differential flow equations are changed to ODEs via the implementation of the similarity variables. A well-known computational algorithm BVPh2 has been utilized for the solution of the nonlinear system of ODEs. The consequence of innumerable physical parameters on flow field, thermal distribution, and solutal field, such as magnetic field, Lewis number, velocity parameter, Prandtl number, drag force, Nusselt number, and Sherwood number, is plotted via graphs. Finally, numerical consequences are compared with the homotopic solution as a limiting case, and an exceptional agreement is found.

Links

PhilArchive



    Upload a copy of this work     Papers currently archived: 91,853

External links

Setup an account with your affiliations in order to access resources via your University's proxy server

Through your library

Similar books and articles

Heat flow in relativistic equilibrium thermodynamics.Peter L. Kellerman - 1980 - Foundations of Physics 10 (1-2):163-173.
Heat in Renaissance Philosophy.Filip Buyse - 2020 - Encyclopedia of Renaissance Philosophy.
Universal solutions of a nonlinear heat equation on $\mathbb{R}^N$.Thierry Cazenave, Flávio Dickstein & Fred B. Weissler - 2003 - Annali della Scuola Normale Superiore di Pisa- Classe di Scienze 2 (1):77-117.
What do our experiences of heat and cold represent?Richard Gray - 2013 - Philosophical Studies 166 (S1):131-151.
A Nonconventional Scenario for Thermal Equilibrium.Jorge Berger - 2007 - Foundations of Physics 37 (12):1738-1743.

Analytics

Added to PP
2021-05-25

Downloads
10 (#1,192,632)

6 months
7 (#428,584)

Historical graph of downloads
How can I increase my downloads?