Electromagnetic steady motion of Casson fluid with heat and mass transfer through porous medium past a shrinking surface
Autor: | Nabil T. M. Eldabe, O. H. El-Kalaawy, Mohamed Y. Abou-zeid, S.M. Moawad, Ola S. Ahmed |
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Rok vydání: | 2021 |
Předmět: |
Physics
Partial differential equation Renewable Energy Sustainability and the Environment lcsh:Mechanical engineering and machinery 020209 energy Prandtl number porous medium 02 engineering and technology Mechanics Thermal diffusivity Physics::Fluid Dynamics Momentum Nonlinear system symbols.namesake electromagnetichydrodynamic Eckert number Flow velocity casson fluid Heat generation 0202 electrical engineering electronic engineering information engineering symbols lcsh:TJ1-1570 heat and mass transfer |
Zdroj: | Thermal Science, Vol 25, Iss 1 Part A, Pp 257-265 (2021) |
ISSN: | 2334-7163 0354-9836 |
DOI: | 10.2298/tsci190418416e |
Popis: | The motion of non-Newtonian fluid with heat and mass transfer through porous medium past a shrinking plate is discussed. The fluid obeys Casion model, heat generation, viscous dissipation, thermal diffusion and chemical reaction are taken in our considered. The motion is modulated mathematically by a system of non liner partial differential equations which describe the continuity, momentum, heat and mass equations. These system of non linear equations are transformed into ordinary differential equations by using a suitable transformations. These equations are solved numerically by using Mathematica package. The numerical distributions of the velocity, temperature and concentration are obtained as a functions of the physical parameters of the problem. Moreover the effects of these parameters on these solutions are discussed numerically and illustrated graphically through some figures. It is clear that these parameters play an important role to control the velocity, temperature and concentration of the fluid motion. It’s found that the fluid velocity deceases with the increasing of electric parameter while it increases as the magnetic hartman parameter increases, these results is good agreement with the physical situation. Also, the fluid temperature decreases and increases as the Prandtl number and Eckert number increases respectively. At least the fluid concentration decreases with both of soret and schimdt numbers. |
Databáze: | OpenAIRE |
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