Kishan Naikoti | Osmania University (original) (raw)

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Papers by Kishan Naikoti

Research paper thumbnail of Quasi-linearization Approach to MHD Effects on Boundary Layer Flow of Power-Law Fluids Past A Semi Infinite Flat Plate with Thermal Dispersion

The momentum and heat transfer in laminar boundary layer flow of non-Newtonian fluids past a semi... more The momentum and heat transfer in laminar boundary layer flow of non-Newtonian fluids past a semi-infinite flat plate with the thermal dispersion in the presence of a uniform magnetic field are analyzed. Both the cases of static plate and continuous moving plate were considered. The resulting governing equations are transformed into non-linear ordinary differential equations using appropriate transformations. The system of coupled non-linear ordinary equations was linearized using Quasi-linearization technique and then solved numerically based on finite difference scheme. The effects of various physical parameters such as power-law fluid index , heat transfer index , Prandtl number and magnetic field parameter , which determine the velocity profiles and temperature profiles are shown graphically. The generalized local Nusselt number is tabulated for various parameters such as power-law fluid index , heat transfer index and stream wise coordinate .

Research paper thumbnail of Quasi-linearization Approach to MHD Effects on Boundary Layer Flow of Power-Law Fluids Past A Semi Infinite Flat Plate with Thermal Dispersion

The momentum and heat transfer in laminar boundary layer flow of non-Newtonian fluids past a semi... more The momentum and heat transfer in laminar boundary layer flow of non-Newtonian fluids past a semi-infinite flat plate with the thermal dispersion in the presence of a uniform magnetic field are analyzed. Both the cases of static plate and continuous moving plate were considered. The resulting governing equations are transformed into non-linear ordinary differential equations using appropriate transformations. The system of coupled non-linear ordinary equations was linearized using Quasi-linearization technique and then solved numerically based on finite difference scheme. The effects of various physical parameters such as power-law fluid index , heat transfer index , Prandtl number and magnetic field parameter , which determine the velocity profiles and temperature profiles are shown graphically. The generalized local Nusselt number is tabulated for various parameters such as power-law fluid index , heat transfer index and stream wise coordinate .

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