Thermophoresis effects on non-Darcy MHD mixed convective heat and mass transfer past a porous wedge in the presence of suction/injection
Theoretical and applied mechanics, Tome 37 (2010) no. 3, p. 203 Cet article a éte moissonné depuis la source eLibrary of Mathematical Institute of the Serbian Academy of Sciences and Arts

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An analysis is presented to investigate the effect of thermophoresis particle deposition and variable viscosity on non-Darcy MHD mixed convective heat and mass transfer of a viscous, incompressible and electrically conducting fluid past a porous wedge in the presence of suction/injection. The wall of the wedge is embedded in a uniform non-Darcian porous medium in order to allow for possible fluid wall suction or injection. The governing partial differential equations of the problem, subjected to their boundary conditions, are solved numerically by applying an efficient solution scheme for local nonsimilarity boundary layer analysis. Numerical calculations are carried out for different values of dimensionless parameter in the problem and an analysis of the results obtained show that the flow field is influenced appreciably by the applied magnetic field. The results are compared with those known from the literature and excellent agreement between the results is obtained.
DOI : 10.2298/TAM1003203L
Classification : 76W05 76S05
Keywords: Non similarity transformation, thermophoresis, non-Darcy flow, Forchheimer number, mixed convection and magnetic effect.
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     author = {P. Loganathan and P. Puvi Arasu},
     title = {Thermophoresis effects on {non-Darcy} {MHD} mixed convective heat and mass transfer past a porous wedge in the presence of suction/injection},
     journal = {Theoretical and applied mechanics},
     pages = {203 },
     year = {2010},
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P. Loganathan; P. Puvi Arasu. Thermophoresis effects on non-Darcy MHD mixed convective heat and mass transfer past a porous wedge in the presence of suction/injection. Theoretical and applied mechanics, Tome 37 (2010) no. 3, p. 203 . doi: 10.2298/TAM1003203L

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