Time-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusion

The time-fractional free convection flow of an incompressible viscous fluid near a vertical plate with Newtonian heating and mass diffusion is investigated in presence of first order chemical reaction. The dimensionless temperature, concentration, and velocity fields, as well as the skin...

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Main Authors: Vieru Dumitru, Fetecau Constantin, Fetecau Corina
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2015-01-01
Series:Thermal Science
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-983615085V .pdf
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spelling doaj-900e834934144ab08f07f42d7d063e342021-01-02T02:42:51ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632015-01-0119suppl. 1859810.2298/TSCI15S1S85V0354-983615085VTime-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusionVieru Dumitru0Fetecau Constantin1Fetecau Corina2Technical University of Iasi, Department of Theoretical Mechanics, Iasi, RomaniaTechnical University of Iasi, Department of Mathematics, Iasi, Romania + Academy of Romanian Scientists, Bucuresti, RomaniaTechnical University of Iasi, Department of Theoretical Mechanics, Iasi, RomaniaThe time-fractional free convection flow of an incompressible viscous fluid near a vertical plate with Newtonian heating and mass diffusion is investigated in presence of first order chemical reaction. The dimensionless temperature, concentration, and velocity fields, as well as the skin friction and the rates of heat and mass transfer from the plate to the fluid, are determined using the Laplace transform technique. Closed form expressions are established in terms of Robotnov-Hartley and Wright functions. The similar solutions for ordinary fluids are also determined. Finally, the influence of fractional parameter on the temperature, concentration and velocity fields is graphically underlined and discussed.http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-983615085V .pdftime-fractional free convection flowNewtonian heatingmass diffusionchemical reaction
collection DOAJ
language English
format Article
sources DOAJ
author Vieru Dumitru
Fetecau Constantin
Fetecau Corina
spellingShingle Vieru Dumitru
Fetecau Constantin
Fetecau Corina
Time-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusion
Thermal Science
time-fractional free convection flow
Newtonian heating
mass diffusion
chemical reaction
author_facet Vieru Dumitru
Fetecau Constantin
Fetecau Corina
author_sort Vieru Dumitru
title Time-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusion
title_short Time-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusion
title_full Time-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusion
title_fullStr Time-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusion
title_full_unstemmed Time-fractional free convection flow near a vertical plate with Newtonian heating and mass diffusion
title_sort time-fractional free convection flow near a vertical plate with newtonian heating and mass diffusion
publisher VINCA Institute of Nuclear Sciences
series Thermal Science
issn 0354-9836
2334-7163
publishDate 2015-01-01
description The time-fractional free convection flow of an incompressible viscous fluid near a vertical plate with Newtonian heating and mass diffusion is investigated in presence of first order chemical reaction. The dimensionless temperature, concentration, and velocity fields, as well as the skin friction and the rates of heat and mass transfer from the plate to the fluid, are determined using the Laplace transform technique. Closed form expressions are established in terms of Robotnov-Hartley and Wright functions. The similar solutions for ordinary fluids are also determined. Finally, the influence of fractional parameter on the temperature, concentration and velocity fields is graphically underlined and discussed.
topic time-fractional free convection flow
Newtonian heating
mass diffusion
chemical reaction
url http://www.doiserbia.nb.rs/img/doi/0354-9836/2015/0354-983615085V .pdf
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