Magnetohydrodynamic Mixed Convection Flow of Jeffery Fluid With Thermophoresis, Soret and Dufour Effects and Convective Condition
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Date
2019
Journal Title
Journal ISSN
Volume Title
Publisher
Amer inst Physics
Open Access Color
GOLD
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
The aim of this paper is to investigate heat and mass transfer of Jeffery fluid on a stretching sheet. Moreover, the influence of magnetic field with mixed convection, convective boundary condition and Soret and Dufour effects is also brought into the consideration along with chemical reaction and thermophoresis condition. The problem is modeled by system of partial differential equations and solutions are obtained by optimal homotopy analysis method. In addition, for comprehensive interpretation of the influence of the system parameters results are shown by graphs and tables. (C) 2019 Author(s).
Description
Keywords
Heat Transfer Enhancement in Nanofluids, Thermophoresis, QC1-999, Turbulent Flows and Vortex Dynamics, Biomedical Engineering, Computational Mechanics, FOS: Mechanical engineering, Nanofluid, FOS: Medical engineering, Convection, Mechanics, Convective heat transfer, Quantum mechanics, Magnetohydrodynamics, Engineering, Heat transfer, Solar Air Heater Heat Transfer Analysis, Thermomagnetic convection, Mass transfer, Mechanical Engineering, Combined forced and natural convection, Physics, Partial differential equation, Heat Transfer, Magnetohydrodynamic drive, Materials science, Homotopy analysis method, Magnetic field, Natural convection, Physical Sciences, Nonlinear system, Thermodynamics, Flow (mathematics)
Fields of Science
01 natural sciences, 0103 physical sciences
Citation
Iftikhar, Nazish...et al. (2019). "Magnetohydrodynamic mixed convection flow of Jeffery fluid with thermophoresis, Soret and Dufour effects and convective condition", AIP Advanced, Vol. 9, No. 3.
WoS Q
Q4
Scopus Q
Q3

OpenCitations Citation Count
13
Source
AIP Advances
Volume
9
Issue
3
Start Page
End Page
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Citations
CrossRef : 13
Scopus : 12
Captures
Mendeley Readers : 9
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