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Dragisa Nikodijevic

Researcher at University of Niš

Publications -  19
Citations -  177

Dragisa Nikodijevic is an academic researcher from University of Niš. The author has contributed to research in topics: Boundary layer & Magnetohydrodynamics. The author has an hindex of 7, co-authored 17 publications receiving 144 citations. Previous affiliations of Dragisa Nikodijevic include University of Kragujevac.

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Flow and Heat Transfer of Two Immiscible Fluids in the Presence of Uniform Inclined Magnetic Field

TL;DR: In this article, the magnetohydrodynamic (MHD) Couette flow of two immiscible fluids in a horizontal channel with isothermal walls in the presence of an applied electric and inclined magnetic field was investigated.
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Mhd flow and heat transfer of two immiscible fluids between moving plates

TL;DR: In this article, the partial differential equations governing the flow and heat transfer are solved analytically with appropriate boundary conditions for each fluid and these solutions have been matched at the interface, and numerical results for various values of the Hartmann number, the angle of magnetic field inclination, load parameter and the ratio of electrical and thermal conductivities have been presented graphically.
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MHD Couette two-fluid flow and heat transfer in presence of uniform inclined magnetic field

TL;DR: In this article, the MHD Couette flow of two immiscible fluids in a parallel plate channel in the presence of an applied electric and inclined magnetic field is investigated, where one of the fluids is assumed to be electrically conducting, while the other fluid and the channel plates are electrically insulating.
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Process parameters effect on material removal mechanism and cut quality of abrasive water jet machining

TL;DR: Original contributions in the form of mathematical models of the quantity of the cut surface damage, expressed by the values of cut surface roughness are provided.
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Mhd flow and heat transfer of two immiscible fluids with induced magnetic field effects

TL;DR: In this paper, partial differential equations governing flow and heat transfer and magnetic field conservation are solved exactly in both fluid regions, under physically appropriate boundary and interface conditions, and closed-form expressions are obtained for the nondimensional velocity, non-dimensional====== induced magnetic field and nondimensional temperature.